Showing posts with label Battery Technology. Show all posts
Showing posts with label Battery Technology. Show all posts

Thursday, 1 August 2019

Portable Battery-Powered Products Market : Global Industry Analysis And Forecast 2019-2024

ResearchMoz presents professional and in-depth study of "Portable Battery-Powered Products: Global Markets".

Portable Battery-Powered Products Market offers an five-year forecast for the global Portable Battery-Powered Products market between 2019 and 2024. In terms of value, the Portable Battery-Powered Products market is expected to register a single-digit CAGR during forecast period. In addition, this section includes an analysis of the key trends, drivers, and challenges from the supply, demand, and economy side, which are influencing the Portable Battery-Powered Products market.

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Battery-powered products and the batteries that power them grew spectacularly in the early 2000s. Now, after a nearly decade-long hiatus, battery market development is back and running strong. Major manufacturers and innovators are driving the market in significant new directions, thanks to an exceptionally strongand growingR&D base that is making batteries safer, lighter, more durable, more portable, longer-lasting, and higher-capacity than ever before. Even more exciting, these improved battery technologies, battery management systems, innovative form factors and improved charging capabilities are opening up vast new markets for battery-powered portable products. From tools to medical and scientific devices, lighting to toys and novelties, thousands of new battery-powered SKUs are being launched every month, driving up markets rapidly and changing the way that consumers interact with small, handheld products and gadgets.

Moreover, improvements in battery technology are now enabling technologies for important health and medical advances, including long-lasting and rechargeable implantables, and a proliferation of new handheld and battery-operated devices around medical offices that will soon begin to transition to home use. New developments in major markets, including those for computers and smartphones, are enabling longer, more reliable battery life. Finally, innovations such as wearable technologies and rapid charging promise to drive further innovation and market development in years to come.

While many market segments are showing exceptional growthsome nearing or exceeding REDACTED projected annual growth at the application or technology levelothers are phasing out. These aging technologies and systems, combined with select innovations that have failed to take off, or have gone down in flames (sometimes literally gone down in flames), drag on battery and battery-powered product markets. Wrapped in the middle are internal transitions within the industry, including an increased focus on secondary (rechargeable) batteries over primary (single use), as rechargeable technologies continue to become more convenient. Additionally, with the proliferation of smartphones and mobile computing, consumers are primed to accept rechargeable devices as the norm, rather than the exception. Lastly, new battery chemistries and configurations, along with improved battery management systems, are further influencing markets, helping to drive transition toward new and more promising battery technologies as they are fully commercialized and readied for widespread use.

The key objectives of this report are to provide accurate market evaluations for portable batterypowered products and the batteries that serve them; disclose reasonable and realistic market projections based on founded and comprehensive trends analysis; summarize key industry players as well as industry trends and product trends; provide an overview of relevant technologies; and most importantly, help you and your team to identify market hot spots, cold spots, points of entry, niches that can be tapped and pitfalls to avoid."

Report Scope:

This study reviews key battery technology categories, along with relevant market and production information, technological descriptions and issues, and key applications and market factors in major worldwide markets. This study will be of interest to current and potential manufacturers and suppliers of batteries for portable battery-powered products, as well as entrepreneurs and entrepreneurial companies interested in entering or expanding into this sector.

This report organizes battery technologies into the segments listed below. Detailed market data are presented for each of the following categories:

Rechargeable Battery Technologies
- Nickel-Cadmium.
- Nickel-Metal Hydride.
- Lithium-Ion.
- Lithium-Polymer.
- Specialty rechargeable batteries.

Single Use Batteries
- Alkaline and Zinc-Carbon.
- Lithium (primary).
- Other primary batteries.

The following battery applications (i.e., product categories) are also considered within the global market for battery-powered consumer productsthat is, the study provides market information for batteries used in the following applications -
- Cellular phones and smartphones.
- Audio equipment.
- Portable computers and tablets.
- Navigation, cameras and timepieces (includes smartwatches).
- Portable tools.
- Lighting.
- Toys and novelties.
- Medical and scientific products.
- Military products.
- Personal transportation.

The following battery-powered portable product categories are also considered. These categories mirror battery applications, and include the following battery powered product categoriesthat is, the study provides market information for the following products (i.e., the total market value of each product including battery) -
- Cellular phones and smartphones.
- Audio equipment.
- Portable computers and tablets.
- Navigation, cameras and timepieces (includes smartwatches).
- Portable tools.
- Lighting.
- Toys and novelties.
- Medical and scientific products.
- Military products.
- Personal transportation.

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Report Includes:

- 121 data tables
- An overview of the global market for portable battery powered products
- Analyses of global market trends, with data from 2018, estimates for 2019, and projections of compound annual growth rates (CAGRs) through 2024
- Coverage of historic and future economic significance of portable battery-powered products
- Description of battery-powered product categories, their characteristics and technology lifecycle
- Assessment of government regulation and legislation that impact specific portable product market elements
- Detailed profiles of key competitors of the market, including A123 Systems Llc, Cadex Electronics Inc., LG Chem Ltd., MaxPower Inc., Panasonic and Samsung SDI

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Wednesday, 17 July 2019

Analysis Of Lead Acid Battery Market In Global Industry : Technology, Applications, Growth And Status 2019-2026

ResearchMoz presents professional and in-depth study of "Lead Acid Battery Market - Global Industry Analysis, Size, Share, Growth, Trends, and Forecast 2018 - 2026".

This global Lead Acid Battery market report provides data for the estimated year (2018) and forecast year (2026) in terms of both, volume (MT) and value (US$ Mn). The report also consists of macroeconomic factors, forecast factors, and a market outlook of the global Lead Acid Battery market. The report includes a porter five force analysis of Lead Acid Battery, and drivers, restraints, and trends of the global Lead Acid Battery market.

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Lead acid battery is a type of secondary energy storage battery where chemical energy is converted into electrical energy and vice versa. The conversion of electrical energy to chemical energy is termed as charging of a battery, while conversion of chemical energy to electrical energy is termed as discharging of a battery. Lead acid battery consists of a lead-dioxide cathode, sulfuric acid solution electrolyte, and sponge metallic lead anode. Lead acid batteries are less expensive, robust, and tolerant to overcharging. They also have low internal impedance, indefinite shelf life, and can deliver high currents.
Flooded lead acid batteries are the commonly utilized batteries. They are widely employed in the automotive sector. They have the least cost per ampere hour vis-à-vis other lead acid batteries. Flooded batteries are wet cells. AGM lead acid batteries employ an absorbed glass matt process, wherein highly porous and fine microfiber glass separators engross the electrolyte, thereby increasing the efficiency by dropping internal resistance. This, in turn, increases the capacity. AGM sealed lead acid batteries are tolerant to a wide variety of temperature. They are less expensive than gel sealed lead acid batteries. Li-ion is expanding at a rapid pace in the lead acid market; however, demand for lead acid batteries is still rising due to their low cost and high performance. The trend of using stationary batteries for power backup and deep-cycle batteries for wheeled mobility such as golf cars, wheelchairs, and scissor lifts has been rising. This is driving the lead acid battery market.

In terms of product type, the flooded segment accounted for more than 60% share of the market in 2017. Market share of the segment is likely to rise significantly by the end of the forecast period owing to high demand from automotive and motorcycles segments. In terms of application, the automotive segment holds the major share of the lead acid battery market. It is followed by the motorcycle segment. This trend is likely to continue throughout the forecast period. Lead acid batteries are primarily employed for starting, lighting, and ignition purposes in automotive and motorcycles.

 Asia Pacific held significant share of the market in 2016 in terms of value and volume. The region is expected to continue its dominance throughout the forecast period. The market in Europe and North America is likely to expand at a significant pace in the near future.

This report analyzes and forecasts the market for lead acid battery at the global and regional level. The market has been forecast based on revenue (US$ Mn) and volume (thousand units) from 2017 to 2026, considering 2017 as the base year. The study includes drivers and restraints of the global lead acid battery market. It also covers impact of these drivers and restraints on demand for lead acid batteries during the forecast period. The report also highlights opportunities in the lead acid battery market at the global and regional level.

The report includes detailed value chain analysis, which provides a comprehensive view of the global lead acid battery market. Porter’s Five Forces model for the lead acid battery market has also been included to help understand the competitive landscape. The study encompasses market attractiveness analysis, wherein product type and application are benchmarked based on their market size, growth rate, and general attractiveness.
The study provides a decisive view of the global lead acid battery market by segmenting it in terms of product type and application. In terms of product type, the lead acid battery market has been classified into flooded and sealed. The sealed product type segment has been sub-segmented into AGM and gel. In terms of application type, the lead acid battery market has been segregated into automotive, motorcycles, motive power, renewable power, UPS & telecom, and others. These segments have been analyzed based on present and future trends. Regional segmentation includes current and forecast demand for lead acid battery in North America, Europe, Asia Pacific, Latin America, and Middle East & Africa.

The report provides the actual market size of lead acid battery for 2017 and estimated market size for 2018 with forecast for the next eight years. The global lead acid battery market has been provided in terms of revenue in US$ Mn and in terms of volume in thousand units. Market size has been provided in terms of global, regional, and country level market.

The report comprises profiles of major companies operating in the global lead acid battery market. Key players operating in the lead acid battery market include EnerSys, EXIDE INDUSTRIES LTD., JOHNSON CONTROLS INTERNATIONAL PLC, and GS Yuasa Corporation. Other players include First National Battery, NorthStar, Amar Raja Batteries Ltd, HOPPECKE, Exide Technologies, HBL Power Systems Limited, C&D Technologies, Inc., East Penn Manufacturing Co., FIAMM Energy Technology S.p.A., Crown Battery Manufacturing Co., and Trojan Battery Company.

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Lead Acid Battery Market, by Product Type
  • Flooded
  • Sealed
    • AGM
    • Gel
Lead Acid Battery Market, by Application
  • Automotive
  • Motorcycles
  • Motive Power
  • Renewable Power
  • UPS & Telecom
  • Others (Wheelchairs, etc.)
Key Takeaways
  • The market for sealed lead acid battery products is smaller as compared to the market for flooded lead acid battery products, due to the high demand from automotive and motorcycle application segments.
  • Lead acid batteries are majorly employed for starting, lighting, and ignition in automotive application. Flooded lead acid battery is more suitable due to its quick surge of energy for automotive application.
  • On a global scale, 80% of the lead acid batteries produced are recycled. Lead acid battery is the most recycled product.
  • The flooded segment is anticipated to expand at a fast pace during the forecast period.
  • AGM sealed lead acid batteries are less expensive than gel sealed lead acid batteries. Therefore, these are gaining popularity due to their high performance in varied temperatures.
  • Automotive and motorcycle application segments held more than 60% share of the market in 2017. This trend is expected to continue throughout the forecast period.
  • In terms of region, Asia Pacific is anticipated to dominate the lead acid battery market during the forecast period.
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Thursday, 20 June 2019

Latest Change : Global Automotive Battery Management System Market 2018-2023

ResearchMoz presents professional and in-depth study of "Automotive Battery Management System: Global Markets".

Automotive battery management systems have become an inseparable part of the hybrid and battery electric vehicles. All these battery driven vehicle types depend partially or completely on the power support from battery packs. Modern day battery packs mostly use lithium ion battery chemistry apart from NiMH, and advanced lead acid batteries. Over the last decade the miles covered per charge for hybrid and electric vehicles has grown continuously in proportion to the energy density of the batteries they utilize. While at the same time the prices of battery packs have been declining continuously.

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Hybrid and electric vehicles are becoming well established as an alternative to conventional IC engines. Current worldwide sales figures support this trend and suggest that the hybrid and electric vehicle market will grow strongly during the coming years. Forecasts of actual market volumes predict sales of more than REDACTED hybrid and electric vehicles combined by 2023. In 2017, Toyota sold more than one million hybrid vehicles worldwide. Hybrid technology has been most successful in Japan and the U.S. but is likely to gain popularity in Europe and China, among others. Electric vehicles have seen maximum growth in China and Europe along with the U.S.

Hybrid and electric vehicles can be divided into four major types of vehicles: mild hybrid, full hybrid, plug-in hybrid electric and battery electric that runs on battery alone. The differences are dictated by the performance of the electric motor, the size of the battery, the charging of the battery and presence or absence of the IC engine. In a mild hybrid system, the electric motor can provide support from 5 kWh to up to 20 kWh and is primarily used to start or accelerate at low engine speeds. The full hybrid system has a much stronger electric engine of 20 kWh to 60 kWh and can function at high speeds for short periods of time. Plug-in hybrid vehicles are similar to full hybrids but differ in their battery packs. A plugin hybrid has a much stronger engine of 60 kWh to 100 kWh and has larger batteries to support longer distance travel. The battery electric vehicle too uses a battery output from 22 kWh in smaller cars to more than 100 kWh in the largest battery used in Tesla cars. Unlike on-board charging for mild and full hybrids, a plug-in hybrid vehicle and electric vehicle can be charged externally and can act as a pure electric vehicle. In full hybrids and plug-in hybrids, the electric motor can be used to drive the vehicle without the aid of a conventional IC engine for a limited distance.

The evolution of large sized battery packs has led to a shift from conventional lead acid batteries and NiMH batteries to lithium ion batteries which have a higher energy density (i.e., three times as much as a lead acid battery and 40% more than a NiMH battery). This shift has further boosted the demand for battery management systems because lithium ion battery is prone to overheating and overcharging and can damage and decay as a result of mismanagement. A battery management system is necessary to control the cell charge discharge, cell balancing, temperature control and other specifications within a battery pack. For example, the 100-kWh battery pack in top model of Tesla S has 16 modules with 516 cells, making 8,256 cells per pack. The battery management system plays a pivotal role in maintaining health of the many cells in a battery pack. Other battery types such as NiMH batteries or advanced lead acid batteries use a battery management system that is fairly simple and less costly as compared to complex lithium ion batteries. Research is being conducted to find new battery chemistries that have higher energy density than lithium ion batteries such as the solid-state batteries, lithium air batteries, lithium sulfur batteries etc. Until new batteries are commercially available, the market trend will shift towards the usage of lithium ion batteries across all vehicle types. These new batteries will still require battery management systems because the batteries will be exposed to very dynamic and demanding operating conditions as battery sizes grow for a longer driving range for EVs.

Report Scope:

The scope of the report includes sizing of the automotive battery management system market and an analysis of global market trends, with market data for 2017, considering as the base year, 2018 as the estimate year and forecast for 2023 with projection of CAGR during 2018 to 2023. Market data is provided in terms of number of units and value at global and regional levels as well as select countries for battery management systems by major battery types and type of automobile. Estimated units are number of battery management systems installed by automotive manufacturers in a particular year; estimated values are values of installed units calculated from estimated number of units and price. Projected and forecasted values are in constant United States dollars, unadjusted for inflation.

The report focuses on assessment of automotive battery management systems and a detailed analysis of original equipment manufacturers and the related system providers. Market dynamics such as drivers, restraints, opportunities and challenges are also discussed in the report. The study forecasts the market value of the automotive battery management system market for key battery types like lithium ion, nickel metal hydride and other battery types including types of lead acid battery. The report also forecasts the market value of the automotive battery management system market for major automobile types like hybrid electric vehicles, plug-in hybrid electric vehicles and battery electric vehicles. With this report, automakers, tier-one suppliers, battery management solution providers, battery management system integrators and existing established suppliers will be guided when adopting suitable business strategies to retain their market positions. This data will also prove useful when planning actions to take advantage of opportunities to increase revenues and profitability by capitalizing on the growing automotive battery management system market. Values presented in the forecast tables represent the values of automotive battery management systems as purchased from suppliers by OEM companies, excluding the cost of marketing, assembling and distribution. In this report, the term revenue is equivalent to and is used interchangeably with purchase, demand and sales.

Micro hybrid vehicles that typically use 12V to 24V lead acid battery for the start/stop function are excluded from the report scope. As these vehicles use simple lead acid batteries that do not require a complex battery management system. Also, the automobiles considered in the report are passenger cars and SUVs, along with light commercial vehicles such as vans. Hybrid and electric buses, trucks and heavy commercial vehicles are excluded from the report scope as they are highly concentrated in a few select countries.

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Report Includes:

- 60 data tables and 45 additional tables
- An overview of the global market and technologies for automotive battery management system
- Analyses of market trends, with data from 2017, 2018, and projections of compound annual growth rates (CAGRs) through 2023
- Description of properties of battery management system such as battery status supervision, battery operating parameter control, cell balancing in battery pack and damage protection
- Insights of advancements in battery technology and government targets to include green vehicles in state fleets and public transport
- Information on stringent safety norms for battery management system
- Comprehensive company profiles of major market players of the industry, including A123 Systems LLC, Analog Devices, Inc. (Linear Technology Corp.), Continental AG, Denso Corp., and Infineon Technologies AG

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Sunday, 2 June 2019

Lithium Ion Battery Cathodes Market - Global Industry Analysis And Forecast Till 2024

ResearchMoz presents professional and in-depth study of "Lithium Ion Battery Cathodes: Market Shares, Strategies, and Forecasts, Worldwide, 2018 to 2024".

The research study offers information related to historical information of the global Lithium Ion Battery Cathodes market, along with the forecast figures from 2018 to 2024 in terms of volume and revenue. Additionally, the expected statistics, market size, and share of each segment studied in the research study have been discussed at length in a scope of the research report.

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Worldwide markets are poised to achieve continuing growth as the advantages brought by using new materials are used to decrease the cost of producing lithium ion batteries.  The customization achieved by reducing the quantity of cobalt proportionally inside the cathode is a significant market growth driver.  

Lithium-ion Batteries at $100/kWh Make EVs Cheaper Than Traditional Gas-Powered Vehicles.  As the new cathode technologies are applied to lithium ion batteries, the cost of lithium ion batteries will continue to decrease.  Lithium-ion batteries aim to cost $100/kWh, – a cost that makes EVs cheaper than traditional gas-powered vehicles.  Companies are targeting between $80/kWh and $100/kWh.  Realistically companies will likely approach $100/kWh.

NMC lithium battery cathode materials are used for electric vehicles.   As the cathode markets develop toward NMC, it is clear the LFP favored by Chinese manufacturers, not suitable for electric vehicles will lose market share.  Current NMC ternary lithium-ion batteries from South Korean and Japanese makers typically employ a ratio of 60% nickel to 20% manganese, and 20% cobalt (6:2:2), but as that ratio moves to 8:1:1 in 2018 and beyond, the cathode is a key element in achieve vast cost efficiencies.

On the basis of product, the market is primarily split into

    Cobalt
    Manganese
    Nickel Cobalt Manganese (NMC)
    Lithium Iron Phosphate (LFP)

Worldwide Lithium Ion Battery cathodes have many applications.  On the basis on the end users/application, this report covers

    Electric Vehicles
    Drones, UAV, UUV
    Power Tools
    Smart Phone Equipment
    Consumer Electronics Products
    Other

Worldwide Lithium Ion Battery cathode market at $5.1 billion market in 2017, is expected to reach $58.8 billion by 2024.

Companies Profiled

Market Leaders

    Sumitomo Metal Mining (SMM)
    Panasonic
    BASF
    Umicore
    NEI Corporation
    LG
    Argonne National Labs
    Easpring
    Mitsubishi Chemical
    Reshine
    Long Power Systems
    Targray
    Toda Kogyo
    Fujitsu
    Pulead
    JFE Chemical
    Samsung
    Hitachi Chemical

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Key Topics

    Cathode
    Cobalt
    Lithium Ion Battery
    EV
    Electric Vehicle
    Electric Vehicles
    Drones
    UAV
    UUV
    Power Tools
    Smart Phone Equipment
    Consumer Electronics
    Manganesem
    Nickel Cobalt Manganesem (NMC)
    NMC 811
    NMC 632
    Lithium Iron PhospNMC 632hate (LFP Manganese
    Nickel Cobalt Aluminium (NMA)

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Monday, 20 May 2019

Battery Energy Storage Systems Market; In-Depth Analysis And Forecast On Market Dynamics, Emerging Trends, Growth Factors 2018-2026

ResearchMoz presents professional and in-depth study of "Battery Energy Storage Systems Market - Global Industry Analysis, Size, Share, Growth, Trends, and Forecast 2018-2026".

The competitive scenario of the global Battery Energy Storage Systems market is comprehensively discussed in the report, taking into account different geographical regions, with a view to help market players to establish groundbreaking strategies for managing their sustenance in the industry. In terms of market attractiveness, the analysts have predicted the prevalence of the rising segments in the Battery Energy Storage Systems market while considering their different growth factors.

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Battery Energy Storage Systems Market - Overview

Battery energy storage systems can be defined as systems used for storage of electricity generated by power plants. These especially include renewable power plants. The electricity stored is then used for ensuring smooth power supply to consumers when power supply from renewable power plants fluctuates due to weather conditions. These systems are also employed for providing energy to the people living off-grid as well as to the automotive sector.

This report analyzes and forecasts the market for battery energy storage systems at the global and regional levels. The market has been forecast based on revenue (US$ Mn) from 2017 to 2026. The study includes drivers and restraints for the global battery energy storage systems market. It also covers the anticipated impact of these drivers and restraints on the demand for battery energy storage systems during the forecast period. The report also highlights opportunities in the battery energy storage systems market at the global and regional levels.

The report comprises a detailed value chain analysis, which provides a comprehensive view of the global battery energy storage systems market. Porter’s five forces model for the battery energy storage systems market has also been included to help understand the competition landscape of the market. The study encompasses market attractiveness analysis, wherein application segments have been benchmarked based on their market size, growth rate, and general attractiveness.

The study provides a decisive view of the global battery energy storage systems market by segmenting it in terms of technology, application, and region. These segments have been analyzed based on present and future trends. Regional segmentation includes the current and forecast demand for battery energy storage systems in North America, Europe, Asia Pacific, Latin America, and Middle East & Africa. The report also covers individual segments in all regions.

The study includes profiles of major companies operating in the global battery energy storage systems market. These include ABB Limited, Maxwell Technologies, LG Chem, NEC Corporation, Samsung SDI Ltd., Contemporary Amperex Technology co. Limited (CATL), Gildemeister, Primus Power, Tesla, Hitachi Ltd., Panasonic, and General Electric Company. Market players have been profiled in terms of attributes such as company overview, financial overview, business strategies, and recent developments.

The report provides the estimated market size of the global battery energy storage systems market for 2017 and forecast for the next nine years. The market size has been provided in terms of revenue. Market numbers have been estimated based on technology, application, and regional segments of the battery energy storage systems market. Market size and forecast for each major segment has been provided in terms of global and regional/country-level markets.

Key takeaways of study

•  The report provides an extensive analysis of the battery energy storage systems market trends and shares from 2017 to 2026 to identify market growth opportunities and market developments

•  The report provides consumption and production of battery energy storage systems by technology, application, region, and country in order to help understand market growth opportunities and developments

•  The report also provides key developments within various manufacturing companies operating in the global battery energy storage systems market

•  The report identifies key factors in order to build a roadmap for upcoming opportunities for the battery energy storage systems market at the global, regional, and country levels

•  The report offers a comprehensive analysis with respect to investments, regulatory scenario, and price trend that would subsequently impact the market outlook and forecast of the global battery energy storage systems market between 2016 and 2026

•  The report provides details of various stakeholders in the value chain of the market to help understand growth opportunities for them as well as their role in the market

•  The report offers a detailed competition landscape for key players in the market to help understand the competition level and leading players in the global market

•  Porters’ five forces analysis and SWOT analysis highlight the potency of buyers and suppliers to enable stakeholders to make profit-oriented business decisions and analyze their strengths and weaknesses to gain a leading position in the market.

The global battery energy storage systems market has been segmented as follows:

Battery Energy Storage Systems Market, by Technology

    Lithium-ion Batteries [Lithium Cobalt Oxide, Lithium Manganese Oxide, Lithium Nickel Manganese Cobalt Oxide (NMC), Lithium Iron Phosphate (LFP), Lithium Nickel Cobalt Aluminum Oxide, and Lithium Titanate]
    Nickel Cadmium Batteries
    Sodium Sulfur Batteries
    Sodium-ion Batteries
    Flow Batteries [Redox Flow Batteries, Iron Chromium Flow Batteries, Vanadium Redox Batteries, Hybrid Flow Batteries (Zinc Hybrid Cathode, Other Hybrid Batteries), and Others]
    Others

Battery Energy Storage Systems Market, by Application

    On-grid Connected Systems
    Off-grid Connected Systems
    Automotive
    Others

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Battery Energy Storage Systems Market, by Region

    North America
        U.S.
        Canada
    Latin America
        Chile
        Rest of Latin America
    Europe
        Germany
        U.K.
        France
        Italy
        Spain
        Russia & CIS
        Rest of Europe
    Asia Pacific
        China
        Japan
        India
        Australia
        ASEAN
        Rest of Asia Pacific
    Middle East & Africa (MEA)
        Israel
        Rest of Middle East & Africa

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Monday, 22 April 2019

Global Automotive Battery Management System Market Shares, Strategies And Forecast Worldwide To 2023

ResearchMoz presents professional and in-depth study of "Automotive Battery Management System: Global Markets".

Automotive battery management systems have become an inseparable part of the hybrid and battery electric vehicles. All these battery driven vehicle types depend partially or completely on the power support from battery packs. Modern day battery packs mostly use lithium ion battery chemistry apart from NiMH, and advanced lead acid batteries. Over the last decade the miles covered per charge for hybrid and electric vehicles has grown continuously in proportion to the energy density of the batteries they utilize. While at the same time the prices of battery packs have been declining continuously.

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Hybrid and electric vehicles are becoming well established as an alternative to conventional IC engines. Current worldwide sales figures support this trend and suggest that the hybrid and electric vehicle market will grow strongly during the coming years. Forecasts of actual market volumes predict sales of more than REDACTED hybrid and electric vehicles combined by 2023. In 2017, Toyota sold more than one million hybrid vehicles worldwide. Hybrid technology has been most successful in Japan and the U.S. but is likely to gain popularity in Europe and China, among others. Electric vehicles have seen maximum growth in China and Europe along with the U.S.

Hybrid and electric vehicles can be divided into four major types of vehicles: mild hybrid, full hybrid, plug-in hybrid electric and battery electric that runs on battery alone. The differences are dictated by the performance of the electric motor, the size of the battery, the charging of the battery and presence or absence of the IC engine. In a mild hybrid system, the electric motor can provide support from 5 kWh to up to 20 kWh and is primarily used to start or accelerate at low engine speeds. The full hybrid system has a much stronger electric engine of 20 kWh to 60 kWh and can function at high speeds for short periods of time. Plug-in hybrid vehicles are similar to full hybrids but differ in their battery packs. A plugin hybrid has a much stronger engine of 60 kWh to 100 kWh and has larger batteries to support longer distance travel. The battery electric vehicle too uses a battery output from 22 kWh in smaller cars to more than 100 kWh in the largest battery used in Tesla cars. Unlike on-board charging for mild and full hybrids, a plug-in hybrid vehicle and electric vehicle can be charged externally and can act as a pure electric vehicle. In full hybrids and plug-in hybrids, the electric motor can be used to drive the vehicle without the aid of a conventional IC engine for a limited distance.

The evolution of large sized battery packs has led to a shift from conventional lead acid batteries and NiMH batteries to lithium ion batteries which have a higher energy density (i.e., three times as much as a lead acid battery and 40% more than a NiMH battery). This shift has further boosted the demand for battery management systems because lithium ion battery is prone to overheating and overcharging and can damage and decay as a result of mismanagement. A battery management system is necessary to control the cell charge discharge, cell balancing, temperature control and other specifications within a battery pack. For example, the 100-kWh battery pack in top model of Tesla S has 16 modules with 516 cells, making 8,256 cells per pack. The battery management system plays a pivotal role in maintaining health of the many cells in a battery pack. Other battery types such as NiMH batteries or advanced lead acid batteries use a battery management system that is fairly simple and less costly as compared to complex lithium ion batteries. Research is being conducted to find new battery chemistries that have higher energy density than lithium ion batteries such as the solid-state batteries, lithium air batteries, lithium sulfur batteries etc. Until new batteries are commercially available, the market trend will shift towards the usage of lithium ion batteries across all vehicle types. These new batteries will still require battery management systems because the batteries will be exposed to very dynamic and demanding operating conditions as battery sizes grow for a longer driving range for EVs.

Report Scope:

The scope of the report includes sizing of the automotive battery management system market and an analysis of global market trends, with market data for 2017, considering as the base year, 2018 as the estimate year and forecast for 2023 with projection of CAGR during 2018 to 2023. Market data is provided in terms of number of units and value at global and regional levels as well as select countries for battery management systems by major battery types and type of automobile. Estimated units are number of battery management systems installed by automotive manufacturers in a particular year; estimated values are values of installed units calculated from estimated number of units and price. Projected and forecasted values are in constant United States dollars, unadjusted for inflation.

The report focuses on assessment of automotive battery management systems and a detailed analysis of original equipment manufacturers and the related system providers. Market dynamics such as drivers, restraints, opportunities and challenges are also discussed in the report. The study forecasts the market value of the automotive battery management system market for key battery types like lithium ion, nickel metal hydride and other battery types including types of lead acid battery. The report also forecasts the market value of the automotive battery management system market for major automobile types like hybrid electric vehicles, plug-in hybrid electric vehicles and battery electric vehicles. With this report, automakers, tier-one suppliers, battery management solution providers, battery management system integrators and existing established suppliers will be guided when adopting suitable business strategies to retain their market positions. This data will also prove useful when planning actions to take advantage of opportunities to increase revenues and profitability by capitalizing on the growing automotive battery management system market. Values presented in the forecast tables represent the values of automotive battery management systems as purchased from suppliers by OEM companies, excluding the cost of marketing, assembling and distribution. In this report, the term revenue is equivalent to and is used interchangeably with purchase, demand and sales.

Micro hybrid vehicles that typically use 12V to 24V lead acid battery for the start/stop function are excluded from the report scope. As these vehicles use simple lead acid batteries that do not require a complex battery management system. Also, the automobiles considered in the report are passenger cars and SUVs, along with light commercial vehicles such as vans. Hybrid and electric buses, trucks and heavy commercial vehicles are excluded from the report scope as they are highly concentrated in a few select countries.

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Report Includes:

- 60 data tables and 45 additional tables
- An overview of the global market and technologies for automotive battery management system
- Analyses of market trends, with data from 2017, 2018, and projections of compound annual growth rates (CAGRs) through 2023
- Description of properties of battery management system such as battery status supervision, battery operating parameter control, cell balancing in battery pack and damage protection
- Insights of advancements in battery technology and government targets to include green vehicles in state fleets and public transport
- Information on stringent safety norms for battery management system
- Comprehensive company profiles of major market players of the industry, including A123 Systems LLC, Analog Devices, Inc. (Linear Technology Corp.), Continental AG, Denso Corp., and Infineon Technologies AG

For More Information Kindly Contact:

ResearchMoz
Mr. Nachiket Ghumare,
90 State Street, Albany NY, United States - 12207
Tel: +1-518-621-2074
USA-Canada Toll Free: 866-997-4948
Email: sales@researchmoz.us
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Sunday, 24 March 2019

Battery Recycling Market : Pin-Point Analysis For Changing Competitive Dynamics 2018 To 2026

ResearchMoz presents professional and in-depth study of "Battery Recycling Market - Global Industry Analysis, Size, Share, Growth, Trends and Forecast 2018-2026".

Battery Recycling Market - Overview

Battery recycling involves the recycling of used batteries from various sources such as household batteries; car batteries; and batteries from laptops, mobile phones, power tools, etc.. This activity prevents batteries from ending up in municipal waste and landfills and prevents hazardous materials such as lead, cadmium, mercury, and nickel from entering the environment. These materials are highly toxic and can leach into the soil from landfills. They not only contaminate soil but also underground and surface water sources. Therefore, battery recycling not only protects the environment from potential hazards but also prevents possible health ailments due to these hazardous materials.

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This report analyzes and forecasts the market for battery recycling at the global and regional level. The market has been forecast based on revenue (US$ Mn) from 2018 to 2026, considering 2017 as the base year. The study includes drivers and restraints of the global battery recycling market. It also covers the impact of these drivers and restraints on demand for battery recycling during the forecast period. The report also highlights opportunities in the battery recycling market at the global and regional level.

The report includes a detailed value chain analysis, which provides a comprehensive view of the global battery recycling market. Porter’s Five Forces model for the battery recycling market has also been included to help understand the competitive landscape in the market. The study encompasses market attractiveness analysis, in which battery chemistry, spent battery source, and end-use are benchmarked based on their market size, growth rate, and general attractiveness.

The study provides a decisive view of the global battery recycling market by segmenting it in terms of battery chemistry, spent battery source, and end-use. In terms of battery chemistry, the battery recycling market has been classified into lithium-ion, lead-acid, nickel-cadmium, and others. Based on spent battery source, the battery recycling market has been categorized into automotive, electronic appliances, and others. In terms of end-use, the battery recycling market has been segmented into extraction of material; repackaging, reuse, & second life; and disposal. These segments have been analyzed based on present and future trends. Regional segmentation includes current and forecast demand for battery recycling in North America, Europe, Asia Pacific, Latin America, and Middle East & Africa.

The report provides the actual size of the battery recycling market for 2017 and estimated market size for 2018 with forecast for the next eight years. The global market for battery recycling has been provided in terms of revenue. Market revenue has been defined in US$ Mn. Market numbers have been estimated based on battery chemistry, spent battery source, and end-use of battery recycling. Market size has been provided in terms of global, regional, and country level markets.

The report comprises profiles of major companies operating in the global battery recycling market. Key players in the battery recycling market are Battery Solutions LLC, Call2Recycle, Inc., Exide Technologies, Retriev Technologies, Inc., East Penn Manufacturing Company, EnerSys, G & P Batteries, Gravita India Ltd., Johnson Controls, Inc., and Umicore N.V. Market players have been profiled in terms of attributes such as company overview, financial overview, business strategies, regional presence, and recent developments.

View Complete TOC with tables & Figures @ https://www.researchmoz.us/battery-recycling-market-global-industry-analysis-size-share-growth-trends-and-forecast-20182026-report.html/toc

The global battery recycling market has been segmented as follows:

Battery Recycling Market, by Battery Chemistry

    Lithium-ion
    Lead-acid
    Nickel-cadmium
    Others

Battery Recycling Market, by Spent Battery Source

    Automotive
    Electronic Appliances
    Others

Battery Recycling Market, by End-use

    Extraction of Material
    Repackaging, Reuse, & Second Life
    Disposal

Battery Recycling Market, by Region

    North America
        U.S.
        Canada
    Europe
        Germany
        U.K.
        France
        Spain
        Italy
        Russia & CIS
        Rest of Europe
    Asia Pacific
        China
        India
        Japan
        ASEAN
        Rest of Asia Pacific
    Latin America
        Brazil
        Mexico
        Rest of Latin America
    Middle East & Africa (MEA)
        GCC
        South Africa
        Rest of Middle East & Africa

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Key Takeaways

    An extensive analysis of the battery recycling market trends and shares from 2017 to 2026 to identify market opportunities and analyze industry developments
    In terms of end-use, the extraction of material segment is anticipated to expand at a significant rate during the forecast period
    Lead-acid is the major battery chemistry segment of the battery recycling market
    A list of key factors responsible for building the upcoming opportunistic roadmap for the battery recycling market at a global, regional, and country level
    Insights into market opportunities for various stakeholders in the value chain and a detailed competition landscape for key players dominating the industry to understand competition level

For More Information Kindly Contact:

ResearchMoz
Mr. Nachiket Ghumare,
90 State Street, Albany NY, United States - 12207
Tel: +1-518-621-2074
USA-Canada Toll Free: 866-997-4948
Email: sales@researchmoz.us
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Wednesday, 27 February 2019

AUTOMOTIVE BATTERY MANAGEMENT SYSTEM MARKET DESCRIPTION AND MARKET DYNAMICS 2019

ResearchMoz presents professional and in-depth study of "Automotive Battery Management System: Global Markets".

The automotive battery management system comes under an electronic system, which aids in the maintenance of optimum health of the rechargeable batteries of the automobiles. Automotive battery management system aids to the automobile batteries by actuating the control on the load scenario, focusing the condition of battery of the vehicle and, as a result, manages the charging.

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There are many benefits of automotive battery management system in the automobile industry. It helps in prevention of battery damage because of overcharging and voltage fluctuation, supports the increase in battery life, maintains the state of battery by enhancing battery health, and gives real time results over battery health. Safety and protection, cell balancing, cell monitoring, power saver mode, data recording, temperature control, and keeping a track of charging function are some more features propelling the growth in global automotive battery management system. Recently a novel report is published by researchmoz.us, titled, “Automotive Battery Management System: Global Markets.”

Rising demand regarding electric automobiles, particularly in the developing economies of Asia Pacific, for example, China and India is boosting the demand for automotive battery management systems. Moreover, the requirement of electric four wheelers fitted with lithium ion batteries have surged at a notable pace in the recent past. India also has a similar market situation regarding electric vehicle, that as China.  Usage of automotive battery management systems in the hybrid automobiles, golf carts, battery electric vehicles, commercial vehicles, and so on are growing at a high speed. This is also foreseen to contribute in the growth of the global automotive battery management system market in the forecast period.

Electric vehicles are further classified as commercial cars and passenger cars. Among these, the segment of passenger cars are estimated to project high adoption rate for automotive battery management system. The passenger car segment is likely to grow at an increased pace in future, and is foreseen to project a high market value due to growth in sales of automotive battery management system for passenger cars. There are various types of passenger cars for example, PHEVs (Plug-In Hybrid Electric Vehicles), HEVs (Hybrid Electric Vehicles), and BEVs (Battery Electric Vehicles). There is a prominent usage of automotive battery management system in hybrid electric vehicles.

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This research report provides an in-dpeth analysis of the key players in the market, for example, Analog Devices, Inc., Johnson Matthey Plc., Continental AG, Robert Bosch GmbH, NXP Semiconductors NV, Renesas Electronics Corporation, Texas Instruments Inc., Toshiba Corporation, Intel Corporation, AVL LIST GmbH, LG Chem, Ltd., Lithium Balance A/S, Preh GmbH, MIDTRONICS, Inc., and HORIBA MIRA Ltd.

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ResearchMoz
Mr. Nachiket Ghumare,
90 State Street, Albany NY, United States - 12207
Tel: +1-518-621-2074
USA-Canada Toll Free: 866-997-4948
Email: sales@researchmoz.us
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Friday, 15 February 2019

Growth of Automotive Battery Management System Market in Global Industry : Overview, Size and Share 2019-2023

ResearchMoz presents professional and in-depth study of "Automotive Battery Management System: Global Markets".

Summary

Automotive battery management systems have become an inseparable part of the hybrid and battery electric vehicles. All these battery driven vehicle types depend partially or completely on the power support from battery packs. Modern day battery packs mostly use lithium ion battery chemistry apart from NiMH, and advanced lead acid batteries.

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Over the last decade the miles covered per charge for hybrid and electric vehicles has grown continuously in proportion to the energy density of the batteries they utilize. While at the same time the prices of battery packs have been declining continuously.

Hybrid and electric vehicles are becoming well established as an alternative to conventional IC engines. Current worldwide sales figures support this trend and suggest that the hybrid and electric vehicle market will grow strongly during the coming years. Forecasts of actual market volumes predict sales of more than REDACTED hybrid and electric vehicles combined by 2023. In 2017, Toyota sold more than one million hybrid vehicles worldwide. Hybrid technology has been most successful in Japan and the U.S. but is likely to gain popularity in Europe and China, among others. Electric vehicles have seen maximum growth in China and Europe along with the U.S.

Hybrid and electric vehicles can be divided into four major types of vehicles: mild hybrid, full hybrid, plug-in hybrid electric and battery electric that runs on battery alone. The differences are dictated by the performance of the electric motor, the size of the battery, the charging of the battery and presence or absence of the IC engine. In a mild hybrid system, the electric motor can provide support from 5 kWh to up to 20 kWh and is primarily used to start or accelerate at low engine speeds. The full hybrid system has a much stronger electric engine of 20 kWh to 60 kWh and can function at high speeds for short periods of time. Plug-in hybrid vehicles are similar to full hybrids but differ in their battery packs. A plugin hybrid has a much stronger engine of 60 kWh to 100 kWh and has larger batteries to support longer distance travel. The battery electric vehicle too uses a battery output from 22 kWh in smaller cars to more than 100 kWh in the largest battery used in Tesla cars. Unlike on-board charging for mild and full hybrids, a plug-in hybrid vehicle and electric vehicle can be charged externally and can act as a pure electric vehicle. In full hybrids and plug-in hybrids, the electric motor can be used to drive the vehicle without the aid of a conventional IC engine for a limited distance.

View Complete TOC with tables & Figures @ https://www.researchmoz.us/automotive-battery-management-system-global-markets-report.html/toc

The evolution of large sized battery packs has led to a shift from conventional lead acid batteries and NiMH batteries to lithium ion batteries which have a higher energy density (i.e., three times as much as a lead acid battery and 40% more than a NiMH battery). This shift has further boosted the demand for battery management systems because lithium ion battery is prone to overheating and overcharging and can damage and decay as a result of mismanagement. A battery management system is necessary to control the cell charge discharge, cell balancing, temperature control and other specifications within a battery pack. For example, the 100-kWh battery pack in top model of Tesla S has 16 modules with 516 cells, making 8,256 cells per pack. The battery management system plays a pivotal role in maintaining health of the many cells in a battery pack. Other battery types such as NiMH batteries or advanced lead acid batteries use a battery management system that is fairly simple and less costly as compared to complex lithium ion batteries. Research is being conducted to find new battery chemistries that have higher energy density than lithium ion batteries such as the solid-state batteries, lithium air batteries, lithium sulfur batteries etc. Until new batteries are commercially available, the market trend will shift towards the usage of lithium ion batteries across all vehicle types. These new batteries will still require battery management systems because the batteries will be exposed to very dynamic and demanding operating conditions as battery sizes grow for a longer driving range for EVs.

Report Scope:

The scope of the report includes sizing of the automotive battery management system market and an analysis of global market trends, with market data for 2017, considering as the base year, 2018 as the estimate year and forecast for 2023 with projection of CAGR during 2018 to 2023. Market data is provided in terms of number of units and value at global and regional levels as well as select countries for battery management systems by major battery types and type of automobile. Estimated units are number of battery management systems installed by automotive manufacturers in a particular year; estimated values are values of installed units calculated from estimated number of units and price. Projected and forecasted values are in constant United States dollars, unadjusted for inflation.

The report focuses on assessment of automotive battery management systems and a detailed analysis of original equipment manufacturers and the related system providers. Market dynamics such as drivers, restraints, opportunities and challenges are also discussed in the report. The study forecasts the market value of the automotive battery management system market for key battery types like lithium ion, nickel metal hydride and other battery types including types of lead acid battery. The report also forecasts the market value of the automotive battery management system market for major automobile types like hybrid electric vehicles, plug-in hybrid electric vehicles and battery electric vehicles. With this report, automakers, tier-one suppliers, battery management solution providers, battery management system integrators and existing established suppliers will be guided when adopting suitable business strategies to retain their market positions. This data will also prove useful when planning actions to take advantage of opportunities to increase revenues and profitability by capitalizing on the growing automotive battery management system market. Values presented in the forecast tables represent the values of automotive battery management systems as purchased from suppliers by OEM companies, excluding the cost of marketing, assembling and distribution. In this report, the term revenue is equivalent to and is used interchangeably with purchase, demand and sales.

Micro hybrid vehicles that typically use 12V to 24V lead acid battery for the start/stop function are excluded from the report scope. As these vehicles use simple lead acid batteries that do not require a complex battery management system. Also, the automobiles considered in the report are passenger cars and SUVs, along with light commercial vehicles such as vans. Hybrid and electric buses, trucks and heavy commercial vehicles are excluded from the report scope as they are highly concentrated in a few select countries.

Report Includes:

- 60 data tables and 45 additional tables
- An overview of the global market and technologies for automotive battery management system
- Analyses of market trends, with data from 2017, 2018, and projections of compound annual growth rates (CAGRs) through 2023
- Description of properties of battery management system such as battery status supervision, battery operating parameter control, cell balancing in battery pack and damage protection

Make An Enquiry @ https://www.researchmoz.us/enquiry.php?type=E&repid=1988897

- Insights of advancements in battery technology and government targets to include green vehicles in state fleets and public transport
- Information on stringent safety norms for battery management system
- Comprehensive company profiles of major market players of the industry, including A123 Systems LLC, Analog Devices, Inc. (Linear Technology Corp.), Continental AG, Denso Corp., and Infineon Technologies AG

For More Information Kindly Contact:

ResearchMoz
Mr. Nachiket Ghumare,
90 State Street, Albany NY, United States - 12207
Tel: +1-518-621-2074
USA-Canada Toll Free: 866-997-4948
Email: sales@researchmoz.us
Follow us on LinkedIn @ http://bit.ly/1TBmnVG
Follow me on : https://marketinfo247.wordpress.com/

Wednesday, 12 December 2018

Market Size : Global Battery Market by Transport (Automotive, Marine, E-Bikes, Forklift), Regions, Battery Types (Lithium-ion, etc), Companies to 2024

ResearchMoz presents professional and in-depth study of "Global Battery Market by Transport (Automotive, Marine, E-Bikes, Forklift), Regions, Battery Types (Lithium-ion, etc), Companies".

Global battery market by transportation mode will surpass US$ 65 Billion by the end of year 2024. The demand of battery in automotive industry is growing at rapid pace due to government support clean energy and environmental friendly modes of transport. Many automotive battery manufacturers across the globe have been getting fair subsidies to enforce production capacity.

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Lithium-ion battery is one of the new discoveries which support large vehicle and gives sufficient power to run vehicle smoothly. Moreover the USP of the lithium-ion battery is fast charging that attracts e-vehicle manufacturers to adopt rapidly. The demand of lithium-ion battery will increase in coming future due to gradually decline in the prices of the battery. Lead acid battery market in automotive sector is matured although it is used in e-bikes and others automotive because of their low price compare to NiCD, NiMH and lithium-ion battery.

Renub Research latest report Global Battery Market by Transport (Automotive, Marine, E-Bikes, Forklift), Regions (North America, Western Europe, Eastern Europe, Asia Pacific, Latin America, Middle East) Battery Types (Lithium-ion, Lead Acid, NIMH, SLI), Companies (Continental AG, BYD Corporation Ltd, Exide Technology, Samsung SDI, SANYO-PANASONIC, LG Chem. Power Amperex Technology Limited) provides a detailed and comprehensive insight of the Global Battery Market.

By Mode of Transport – Automotive Battery Market has the highest Market share

This report categorized into four transportation mode: Automotive, Marine, E-Bike and Forklift. Automotive battery market is one of the biggest markets compared to rest of the categories. Marine battery market is a new discovery and involved various risk. So lot of research and development is required to ensure safety in marine industry. Adoption of battery in Automotive and E-bike is massive across the world due to government support for clean energy in transportation sector.

By Regions

This report also gives core insight and scalability of battery market on the parameter of significant regions such as North America, Western Europe, Eastern Europe, Asia Pacific, Latin America and Middle East. It is expected that, there is huge possibility of battery market in Asia Pacific regions.

View Complete TOC with tables & Figures @ https://www.researchmoz.us/global-battery-market-by-transport-automotive-marine-ebikes-forklift-regions-battery-types-lithiumion-etc-companies-report.html/toc

By Battery Type

In this report, there is comprehensive analysis of different kinds of battery and uses in transportation vehicle. In automotive sector the battery market is segmented into lithium-ion battery, nickel metal hydride battery and others where as in E-bike and Forklift battery market is categorized into lithium-ion and lead acid battery market.

Companies Analysis  

The key players in this industry include Continental AG, BYD Corporation, Exide Technology, Samsung SDI, Sanyo Panasonic, LG Chemical, Amperex Technology Limited (ATL). The company focuses on the development of new products, partnerships and acquisitions to maintain their positions in the market.

All the 7 companies studied in the report have been studied from 3 points

    Overview
    Business Strategy 
    Sales Value

This 141 page report with 76 Figures & Tables studies the Global Battery Market in Transport

By Mode of Transport – Global Battery Market

    Automotive
    Marine
    E-Bike
    Forklift

 By Regions – Global Battery Market

    North America  
    Western Europe
    Eastern Europe
    Asia Pacific
    Latin America
    Middle East

Types of Battery Market

    Lithium-ion Battery Market
    Nickel–Metal Hydride Battery (NIMH) Market
    Others Automotive Battery Market
    Lead Acid Battery Market
    SLI (Start, Light & Ignition) Battery Market

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Companies - Business Strategy, Sales Covered in the report    

    Continental AG
    BYD Corporation
    Exide Technology
    Samsung SDI
    Sanyo Panasonic
    LG Chemical
    Amperex Technology Limited (ATL)

For More Information Kindly Contact:

ResearchMoz
Mr. Nachiket Ghumare,
90 State Street, Albany NY, United States - 12207
Tel: +1-518-621-2074
USA-Canada Toll Free: 866-997-4948
Email: sales@researchmoz.us
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Tuesday, 11 December 2018

Future of Lithium-ion Battery Materials Market : Global Industry Attractiveness, Competitive Landscape and Forecasts to 2024

ResearchMoz presents professional and in-depth study of "Lithium-ion Battery Materials Market, Global Forecast by Cathode, Anode, Separator, Electrolyte & Companies".

Global Lithium-ion Battery Materials Market is expected to surpass more than US$ 15 Billion by the end of year 2024. This report covers key growth drivers and scientific challenges for lithium-ion battery market. Lithium-ion batteries are one and only preferred choice source for portable electronics.

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The manufacturer of lithium-ion battery consistently doing a lot of research & development work to peruse technological advancements and reduce the size and weight of batteries, cost of batteries, increase their power output and safety. Moreover government regulation or policies to create framework suitable for battery regulated transportation system will foster the growth of lithium-ion battery in anticipated year.

Cathode is one of the important materials of lithium-ion battery, whereas lithium cobalt oxide and lithium-iron phosphate together control more than 80% of market share in 2017. Lithium cobalt oxide mainly used in Smartphone applications and comparatively less in portable PCs applications. Lithium-nickel manganese cobalt oxide is more demanded in xEV applications. The demand of lithium-nickel manganese cobalt oxide started since 2015 and anticipated to grow faster in forecast period. Lithium-iron phosphate earlier used in power tools and industrial applications but since 2015 it massively used in E-bus and now many e-bus battery manufacturers signing contract with lithium-iron phosphate producer to meet the high demand of e-bus.
Renub Research latest study report “Lithium-ion Battery Materials Market, Global Forecast by Cathode [LCO (Lithium Cobalt Oxide), NMC (Lithium Nickel Manganese Cobalt Oxide), NCA (Lithium Nickel Cobalt Aluminium Oxide), LMO (Lithium Manganese Oxide) & LPF (Lithium Iron Phosphate)], Anode (Natural Graphite, Artificial Graphite & Other Anode Materials), Separator, Electrolyte, Companies (Samsung SDI., LG Chemical, SANYO-Panasonic and ATL)” provides a detailed and comprehensive insight of the Global Lithium-ion Battery by Material Market and Volume.

Cathode Captured more than Two Third of Market Share in Global Lithium-Ion Battery Material Market in 2017

In this report we have investigated the core key material required to make lithium-ion battery cells and battery packs. The most important material is cathode and we have further segmented Cathod into 5 parts LCO (Lithium Cobalt Oxide), NMC (Lithium Nickel Manganese Cobalt Oxide), NCA (Lithium Nickel Cobalt Aluminium Oxide), LMO (Lithium Manganese Oxide) and LFP (Lithium Iron Phosphate). This report also provides full market knowledge of anode, separator and electrolyte in terms value and volume both.

View Complete TOC with tables & Figures @ https://www.researchmoz.us/lithiumion-battery-materials-market-global-forecast-by-cathode-anode-separator-electrolyte-companies-report.html/toc

By Products

In this report, we have done deep study on lithium material and make assessment of every material in varieties of applications like smart phones, power tools, xEV, E-bus, portable PCs, e-bikes and several industrial applications. We have also done in-depth analysis of lithium materials in different applications in terms of volume and market and their future demand.

This market research report provides a complete analysis of the “Lithium-ion battery market by Material” Market, Volume, Growth Drivers, Challenges, and their projections for the upcoming years. This report contains fresh value chain analysis of lithium-ion battery from material to cell manufacturer and pack manufacture.

Lithium-ion Battery Market by Material

Cathode

    LCO (Lithium Cobalt Oxide)
    NMC (Lithium Nickel Manganese Cobalt Oxide)
    NCA (Lithium Nickel Cobalt Aluminium Oxide)
    LMO (Lithium Manganese Oxide)
    LPF (Lithium Iron Phosphate)

Anode

    Natural Graphite
    Artificial Graphite
    Other Anode Materials
    Separator
    Electrolyte

Products  

    Smart phones,
    Power tools,
    xEV,
    E-bus,
    Portable PCs,
    E-bikes
    Automotive & E-Bus Market  
    Several industrial applications

Key Player covered in the Report    

    Samsung SDI
    LG Chemical
    SANYO Panasonic
    ATL

Scope of the Report

Global Lithium-ion Battery Market by Material: We have segmented the market into four parts by materials which are Cathode, Anode, Separator and Electrolyte. Moreover we have also fragmented most important key material Cathode into 5 parts and Anode into three parts.

Global Lithium-ion Battery Volume by Materials: We have segmented the volume sales into four parts by materials which are Cathode, Anode, Separator and Electrolyte. Moreover we have also fragmented most important key material Cathode into 5 parts and Anode into three parts. We have taken volume sales of each segment in Tons.

Key Growth Drivers & Challenges: It studies the multi-dimensional factors which help to grow global lithium-ion battery market. The report also mentions key factors that will hinder the market growth.

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Key Players Analysis: We have covered four key players and their global lithium-ion battery revenue. Apart from sales analysis, we have also covered overview of the company and business strategies.

Value Chain Analysis:  In this report we have examined value chain analysis of lithium-ion battery from material to cell manufacturer and pack manufacture and finally it goes to OEM.

For More Information Kindly Contact:

ResearchMoz
Mr. Nachiket Ghumare,
90 State Street, Albany NY, United States - 12207
Tel: +1-518-621-2074
USA-Canada Toll Free: 866-997-4948
Email: sales@researchmoz.us
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Tuesday, 20 November 2018

Global Battery Market : Technological Advancements, Evolving Industry Trends and Insights 2018 – 2024

ResearchMoz presents professional and in-depth study of "Global Battery Market by Transport (Automotive, Marine, E-Bikes, Forklift), Regions, Battery Types (Lithium-ion, etc), Companies".

Global battery market by transportation mode will surpass US$ 65 Billion by the end of year 2024. The demand of battery in automotive industry is growing at rapid pace due to government support clean energy and environmental friendly modes of transport. Many automotive battery manufacturers across the globe have been getting fair subsidies to enforce production capacity.

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Lithium-ion battery is one of the new discoveries which support large vehicle and gives sufficient power to run vehicle smoothly. Moreover the USP of the lithium-ion battery is fast charging that attracts e-vehicle manufacturers to adopt rapidly. The demand of lithium-ion battery will increase in coming future due to gradually decline in the prices of the battery. Lead acid battery market in automotive sector is matured although it is used in e-bikes and others automotive because of their low price compare to NiCD, NiMH and lithium-ion battery.

Renub Research latest report Global Battery Market by Transport (Automotive, Marine, E-Bikes, Forklift), Regions (North America, Western Europe, Eastern Europe, Asia Pacific, Latin America, Middle East) Battery Types (Lithium-ion, Lead Acid, NIMH, SLI), Companies (Continental AG, BYD Corporation Ltd, Exide Technology, Samsung SDI, SANYO-PANASONIC, LG Chem. Power Amperex Technology Limited) provides a detailed and comprehensive insight of the Global Battery Market.

By Mode of Transport – Automotive Battery Market has the highest Market share

This report categorized into four transportation mode: Automotive, Marine, E-Bike and Forklift. Automotive battery market is one of the biggest markets compared to rest of the categories. Marine battery market is a new discovery and involved various risk. So lot of research and development is required to ensure safety in marine industry. Adoption of battery in Automotive and E-bike is massive across the world due to government support for clean energy in transportation sector.

By Regions

This report also gives core insight and scalability of battery market on the parameter of significant regions such as North America, Western Europe, Eastern Europe, Asia Pacific, Latin America and Middle East. It is expected that, there is huge possibility of battery market in Asia Pacific regions.

View Complete TOC with tables & Figures @ https://www.researchmoz.us/global-battery-market-by-transport-automotive-marine-ebikes-forklift-regions-battery-types-lithiumion-etc-companies-report.html/toc

By Battery Type

In this report, there is comprehensive analysis of different kinds of battery and uses in transportation vehicle. In automotive sector the battery market is segmented into lithium-ion battery, nickel metal hydride battery and others where as in E-bike and Forklift battery market is categorized into lithium-ion and lead acid battery market.

Companies Analysis  

The key players in this industry include Continental AG, BYD Corporation, Exide Technology, Samsung SDI, Sanyo Panasonic, LG Chemical, Amperex Technology Limited (ATL). The company focuses on the development of new products, partnerships and acquisitions to maintain their positions in the market.

All the 7 companies studied in the report have been studied from 3 points

    Overview
    Business Strategy 
    Sales Value

This 141 page report with 76 Figures & Tables studies the Global Battery Market in Transport

By Mode of Transport – Global Battery Market

    Automotive
    Marine
    E-Bike
    Forklift

 By Regions – Global Battery Market

    North America  
    Western Europe
    Eastern Europe
    Asia Pacific
    Latin America
    Middle East

Types of Battery Market

    Lithium-ion Battery Market
    Nickel–Metal Hydride Battery (NIMH) Market
    Others Automotive Battery Market
    Lead Acid Battery Market
    SLI (Start, Light & Ignition) Battery Market

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Companies - Business Strategy, Sales Covered in the report    

    Continental AG
    BYD Corporation
    Exide Technology
    Samsung SDI
    Sanyo Panasonic
    LG Chemical
    Amperex Technology Limited (ATL)

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ResearchMoz
Mr. Nachiket Ghumare,
90 State Street, Albany NY, United States - 12207
Tel: +1-518-621-2074
USA-Canada Toll Free: 866-997-4948
Email: sales@researchmoz.us
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Monday, 19 November 2018

Demand of Lithium-ion Battery Materials Market in Global Industry : Technology, Applications, Growth and Status 2017-2024

ResearchMoz presents professional and in-depth study of "Lithium-ion Battery Materials Market, Global Forecast by Cathode, Anode, Separator, Electrolyte & Companies".

Global Lithium-ion Battery Materials Market is expected to surpass more than US$ 15 Billion by the end of year 2024. This report covers key growth drivers and scientific challenges for lithium-ion battery market. Lithium-ion batteries are one and only preferred choice source for portable electronics.

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The manufacturer of lithium-ion battery consistently doing a lot of research & development work to peruse technological advancements and reduce the size and weight of batteries, cost of batteries, increase their power output and safety. Moreover government regulation or policies to create framework suitable for battery regulated transportation system will foster the growth of lithium-ion battery in anticipated year.

Cathode is one of the important materials of lithium-ion battery, whereas lithium cobalt oxide and lithium-iron phosphate together control more than 80% of market share in 2017. Lithium cobalt oxide mainly used in Smartphone applications and comparatively less in portable PCs applications. Lithium-nickel manganese cobalt oxide is more demanded in xEV applications. The demand of lithium-nickel manganese cobalt oxide started since 2015 and anticipated to grow faster in forecast period. Lithium-iron phosphate earlier used in power tools and industrial applications but since 2015 it massively used in E-bus and now many e-bus battery manufacturers signing contract with lithium-iron phosphate producer to meet the high demand of e-bus.
Renub Research latest study report “Lithium-ion Battery Materials Market, Global Forecast by Cathode [LCO (Lithium Cobalt Oxide), NMC (Lithium Nickel Manganese Cobalt Oxide), NCA (Lithium Nickel Cobalt Aluminium Oxide), LMO (Lithium Manganese Oxide) & LPF (Lithium Iron Phosphate)], Anode (Natural Graphite, Artificial Graphite & Other Anode Materials), Separator, Electrolyte, Companies (Samsung SDI., LG Chemical, SANYO-Panasonic and ATL)” provides a detailed and comprehensive insight of the Global Lithium-ion Battery by Material Market and Volume.

Cathode Captured more than Two Third of Market Share in Global Lithium-Ion Battery Material Market in 2017

In this report we have investigated the core key material required to make lithium-ion battery cells and battery packs. The most important material is cathode and we have further segmented Cathod into 5 parts LCO (Lithium Cobalt Oxide), NMC (Lithium Nickel Manganese Cobalt Oxide), NCA (Lithium Nickel Cobalt Aluminium Oxide), LMO (Lithium Manganese Oxide) and LFP (Lithium Iron Phosphate). This report also provides full market knowledge of anode, separator and electrolyte in terms value and volume both.

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By Products

In this report, we have done deep study on lithium material and make assessment of every material in varieties of applications like smart phones, power tools, xEV, E-bus, portable PCs, e-bikes and several industrial applications. We have also done in-depth analysis of lithium materials in different applications in terms of volume and market and their future demand.

This market research report provides a complete analysis of the “Lithium-ion battery market by Material” Market, Volume, Growth Drivers, Challenges, and their projections for the upcoming years. This report contains fresh value chain analysis of lithium-ion battery from material to cell manufacturer and pack manufacture.

Lithium-ion Battery Market by Material

Cathode

    LCO (Lithium Cobalt Oxide)
    NMC (Lithium Nickel Manganese Cobalt Oxide)
    NCA (Lithium Nickel Cobalt Aluminium Oxide)
    LMO (Lithium Manganese Oxide)
    LPF (Lithium Iron Phosphate)

Anode

    Natural Graphite
    Artificial Graphite
    Other Anode Materials
    Separator
    Electrolyte

Products

    Smart phones,
    Power tools,
    xEV,
    E-bus,
    Portable PCs,
    E-bikes
    Automotive & E-Bus Market  
    Several industrial applications

Key Player covered in the Report    

    Samsung SDI
    LG Chemical
    SANYO Panasonic
    ATL

Scope of the Report

Global Lithium-ion Battery Market by Material: We have segmented the market into four parts by materials which are Cathode, Anode, Separator and Electrolyte. Moreover we have also fragmented most important key material Cathode into 5 parts and Anode into three parts.

Global Lithium-ion Battery Volume by Materials: We have segmented the volume sales into four parts by materials which are Cathode, Anode, Separator and Electrolyte. Moreover we have also fragmented most important key material Cathode into 5 parts and Anode into three parts. We have taken volume sales of each segment in Tons.

Key Growth Drivers & Challenges: It studies the multi-dimensional factors which help to grow global lithium-ion battery market. The report also mentions key factors that will hinder the market growth.

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Key Players Analysis: We have covered four key players and their global lithium-ion battery revenue. Apart from sales analysis, we have also covered overview of the company and business strategies.

Value Chain Analysis:  In this report we have examined value chain analysis of lithium-ion battery from material to cell manufacturer and pack manufacture and finally it goes to OEM.

For More Information Kindly Contact:

ResearchMoz
Mr. Nachiket Ghumare,
90 State Street, Albany NY, United States - 12207
Tel: +1-518-621-2074
USA-Canada Toll Free: 866-997-4948
Email: sales@researchmoz.us
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Wednesday, 3 October 2018

Future of Lithium Battery Recycling Market in Global Industry : Market Attractiveness, Competitive Landscape and Forecasts to 2023

ResearchMoz presents professional and in-depth study of "Lithium Battery Recycling: North America Markets".

Lithium battery recycling is gaining popularity due to the rise in the usage of lithium-ion batteries, which are employed in several industry applications including automobile, power, industrial and consumer electronics. Battery applications are moving toward larger power requirements and lower costs, meaning advancements in lithium-ion battery technology will be essential to meet consumer demand.

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These growing requirements of lithium batteries have helped in the increase of research and development activities that overall improve the lithium-ion battery systems, which are expected to offer numerous opportunities and to fuel the growth of the upcoming market.

The recycling for batteries consisting of lithium ions mainly occurs through metal refining and chemical synthesis processes that recover and reprocess partially processed feedstock. More than other industries, battery materials are also subject to post consumer recycling. This is usually accomplished by physically breaking up the battery, gravimetrically recovering the battery case, then smelting or chemically recovering electrodes and electrolytes, and finally refining and purifying the recovered battery compounds.

Report Scope

The reports scope spans the North American market for lithium battery recycling. The report analyzes regional market trends, using data from 2016 and 2017 as base years and providing estimates for 2018 to 2023 with projections of compound annual growth rates in the forecast period.

The report includes detailed discussion of technological and economic trends that are affecting the market. Furthermore, it explains the major drivers and regional dynamics of the lithium battery recycling market and the current trends within the industry.

The sale values within the report are presented in U.S. dollars, while the sales values in terms of actual product are presented in thousand units. The choice of using thousands as a denomination unit was dictated by the shipment volumes for specific categories, which would have otherwise appeared too insignificant. It is important to note that the lifespan of the lithium batteries varies depending upon the usage industry.

View Complete TOC with tables & Figures @ https://www.researchmoz.us/lithium-battery-recycling-north-america-markets-report.html/toc

The forecasts are further broken down by industry and region. The report covers the following chemistries of lithium:
- Lithium-Nickel Manganese Cobalt (Li-NMC).
- Lithium Iron Phosphate (LFP).
- Lithium-Manganese Oxide (LMO).
- Lithium-Titanate Oxide (LTO).
- Lithium-Nickel Cobalt Aluminum Oxide (NCA).
- Lithium-Cobalt Oxide (LCO).

The breakdown of end-use Industry includes:
- Automotive.
- Consumer Electronics.
- Energy.
- Others.

The regional breakdown focuses on the following countries:
- United States.
- Canada.
- Rest of the North America.

The report concludes with a special focus on the vendor landscape and includes profiles of the major vendors in the North American lithium battery recycling market.

Report Scope

The reports scope spans the North American market for lithium battery recycling. The report analyzes regional market trends, using data from 2016 and 2017 as base years and providing estimates for 2018 to 2023 with projections of compound annual growth rates in the forecast period.

The report includes detailed discussion of technological and economic trends that are affecting the market. Furthermore, it explains the major drivers and regional dynamics of the lithium battery recycling market and the current trends within the industry.

The sale values within the report are presented in U.S. dollars, while the sales values in terms of actual product are presented in thousand units. The choice of using thousands as a denomination unit was dictated by the shipment volumes for specific categories, which would have otherwise appeared too insignificant. It is important to note that the lifespan of the lithium batteries varies depending upon the usage industry.

The forecasts are further broken down by industry and region. The report covers the following chemistries of lithium:
- Lithium-Nickel Manganese Cobalt (Li-NMC).
- Lithium Iron Phosphate (LFP).
- Lithium-Manganese Oxide (LMO).
- Lithium-Titanate Oxide (LTO).
- Lithium-Nickel Cobalt Aluminum Oxide (NCA).
- Lithium-Cobalt Oxide (LCO).

The breakdown of end-use Industry includes:
- Automotive.
- Consumer Electronics.
- Energy.
- Others.

The regional breakdown focuses on the following countries:
- United States.
- Canada.
- Rest of the North America.

The report concludes with a special focus on the vendor landscape and includes profiles of the major vendors in the North American lithium battery recycling market.

Make An Enquiry @ https://www.researchmoz.us/enquiry.php?type=E&repid=1885539

Report Includes

- An overview of the North American market for the lithium battery recycling
- Discussion of technological and economic trends that are affecting the market
- Coverage of drivers and regional dynamics of the lithium battery recycling market and current trends within the industry
- Detailed description of recycling technologies, including hydrometallurgical process, pyrometallurgy process, physical/mechanical process and hydrometallurgical process
- Comprehensive profiles of the major players of the industry, including American Manganese (AMI) Inc., Li-Cycle Technology, Retriev Technologies, Raw Materials Company (RMC), Jiangxi Ganfeng Lithium Co. Ltd. and Lithium Americas

For More Information Kindly Contact:

ResearchMoz
Mr. Nachiket Ghumare,
90 State Street, Albany NY, United States - 12207
Tel: +1-518-621-2074
USA-Canada Toll Free: 866-997-4948
Email: sales@researchmoz.us
Follow us on LinkedIn @ http://bit.ly/1TBmnVG
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