The report ” Liquid Metal Battery Market – Global Industry Analysis, Size, Share, Growth, Trends, and Forecast 2017 – 2025″, has been prepared based on an in-depth market analysis with inputs from industry experts.
The objectives of this study are as follows:
To define, describe, and forecast the “Liquid Metal Battery” market by type, application, component, delivery model, end user, and region
To provide detailed information regarding major factors influencing market growth (drivers, restraints, opportunities, and industry-specific challenges)
To analyze micromarkets with respect to individual growth trends, prospects, and contributions to the overall market
To analyze opportunities in the market for stakeholders and provide details of the competitive landscape for market leaders
To forecast the market size of market segments with respect to the four key regions: North America, Europe, Asia, and the Rest of the World (RoW)
To strategically profile the key players and comprehensively analyze their product portfolios, market positions, and core competencies
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Efficiency and reliability of energy transmission and storage is dependent on the storage capacity of the battery. This is applicable to all systems, ranging from small personal devices to power grids. Batteries are used to supply power to portable devices, to fuel vehicles, and to cause disruptions in the working of electric grids. However, despite the high applicability of batteries, technological advances in the battery industry in meeting the demand for power in the modern world have been slow-paced.
A noteworthy innovation in the battery industry is the pioneering research on liquid-metal rechargeable batteries conducted by Professor Donald Sadoway at the Massachusetts Institute of Technology. The research included application of magnesium-antimony (Mg-Sb) and lead-antimony (Pb-Sb) in the experiments at MIT. In the experiment, electrode and electrolyte layers are heated until they turn into liquid and segregate due to density and immiscibility. Liquid metal batteries have longer lifespans than conventional batteries.
The technology for liquid metal batteries was first proposed in 2009. It was based on the separation of magnesium and antimony by molten salt. The selection of magnesium and antimony at negative and positive electrodes, respectively, was done primarily due to their low cost. Moreover, magnesium exhibited low solubility in molten-salt electrolyte, whereas, antimony was anticipated to discharge higher voltage.
Based on metal composition in battery, the liquid metal battery market can be segmented into Mg-Sb battery, Pb-Sb battery, and Na-S battery. Sodium-sulfur (Na-S) batteries are partially molten-metal batteries. They can be used for storing energy for renewable applications, load leveling, or providing backup source. Raw materials required for producing Na-S batteries are relatively inexpensive; they are also abundantly available. However, the lifespan of Na-S battery is short due to degradation caused by the corrosive nature of its active ingredients viz. sodium and sulfur. Furthermore, usage of Na-S batteries has been limited to large-sized applications.
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In 2010, commercialization of the liquid metal battery technology invented at MIT was carried out through the Liquid Metal Battery Corporation (LMBC). The company was later renamed as Ambri in 2012. Ambri launched its commercialized liquid metal battery technology in 2016. Liquid metal batteries are projected to have a lifespan of more than 15 years with no degradation in performance. These batteries can be custom designed in order to meet specific needs.
Development of liquid metal battery is an innovative approach for solving problems in grid-scale electricity storage. Integration of renewable resources into power grid can be improved with the capabilities of liquid metal batteries. Moreover, liquid metal batteries are perceived to improve the reliability of an aging grid. They are also likely to counterbalance the requirement of additional transmission, generation, and distribution assets in a grid system. The end-user market of liquid metal battery is fairly competitive as constant innovations targeting utility-scale energy storage applications are underway.
The liquid metal battery utilizes three liquid layers as electroactive components. These components comprise liquid metal positive electrode, a fused salt electrolyte, and a liquid metal negative electrode. Due to the difference in their density and immiscible properties, these three liquid layers can float on top of each other. This characteristic, along with the usage of inexpensive materials, fosters low assembly cost of liquid metal batteries.
Liquid metal batteries can overcome mechanism failure generally faced by solid-state battery components. This has the potential to elongate the lifespan of the device. Ongoing research in this field comprises several engineering challenges and scientific topics such as computational thermal modeling, fundamental thermodynamic measurements of candidate electrode couples, electrochemical studies of molten salt electrolytes, long term corrosion and lifespan testing, and scaling up the design to build larger single-cells.
Key players operating in the liquid metal battery market include Ambri Inc., EnerVault, Aquion, and Pellion Technologies.
The report offers a comprehensive evaluation of the market. It does so via in-depth qualitative insights, historical data, and verifiable projections about market size. The projections featured in the report have been derived using proven research methodologies and assumptions. By doing so, the research report serves as a repository of analysis and information for every facet of the market, including but not limited to: Regional markets, technology, types, and applications.
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The study is a source of reliable data on:
Market segments and sub-segments
Market trends and dynamics
Supply and demand
Value chain and stakeholder analysis
The regional analysis covers:
North America (U.S. and Canada)
Latin America (Mexico, Brazil, Peru, Chile, and others)
Western Europe (Germany, U.K., France, Spain, Italy, Nordic countries, Belgium, Netherlands, and Luxembourg)
Eastern Europe (Poland and Russia)
Asia Pacific (China, India, Japan, ASEAN, Australia, and New Zealand)
Middle East and Africa (GCC, Southern Africa, and North Africa)
The report has been compiled through extensive primary research (through interviews, surveys, and observations of seasoned analysts) and secondary research (which entails reputable paid sources, trade journals, and industry body databases). The report also features a complete qualitative and quantitative assessment by analyzing data gathered from industry analysts and market participants across key points in the industry’s value chain.
A separate analysis of prevailing trends in the parent market, macro- and micro-economic indicators, and regulations and mandates is included under the purview of the study. By doing so, the report projects the attractiveness of each major segment over the forecast period.
Highlights of the report:
A complete backdrop analysis, which includes an assessment of the parent market
Important changes in market dynamics
Market segmentation up to the second or third level
Historical, current, and projected size of the market from the standpoint of both value and volume
Reporting and evaluation of recent industry developments
Market shares and strategies of key players
Emerging niche segments and regional markets
An objective assessment of the trajectory of the market
Recommendations to companies for strengthening their foothold in the market
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