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The Energy Storage Technologies (EST) Market 2010-2020
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The main benefits from purchasing this report: 132 seiten | |||||||||||
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Visiongain’s new report, The Energy Storage Technologies (EST) Market 2010-2020 explores this burgeoning new market which has huge potential for participating companies.
In the report, the rapidly.....
Visiongain’s new report, The Energy Storage Technologies (EST) Market 2010-2020 explores this burgeoning new market which has huge potential for participating companies. In the report, the rapidly growing EST market is fully analysed, identifying key trends across the sector. The report provides the most informed projection for the direction of the market over the coming ten years, outlining the strengths and weaknesses of regional markets with targeted sales forecasts. Based on our research, global spending in 2010 on Energy Storage Technologies (EST) will total just $371m. However, substantial growth in the market is expected from 2010-2020. We analyse, quantify and forecast the expected spending in the global and regional EST markets over the period 2010-2020. These forecasts are underpinned by Visiongain’s analysis of EST market drivers and restraints over the ten year period. This report offers in depth analysis of EST as one of the fastest growing markets in the world today as one of the key components of the rapidly modernising electrical power utility industry, EST is set to play a major role in the surge of renewable energy generation and smart grid adoption taking place around the world. The report analyses a wealth of data and introduces a clear analysis of where the market will develop based upon diverse factors and insight into the market, anticipating how and why the market will evolve from 2010 onwards. The report also describes the most important technological changes within the EST industry and assesses their importance for the growth of the market over the long term. The various drivers and restraints of the individual competing technologies are assessed in order to provide readers with specific insights into the future direction of the EST market. How much are individual regions planning to spend on new EST systems between 2010 and 2020? What technologies are being utilised or are showing the most potential for future growth? Who are the leading companies in the EST industry? Where are the growth opportunities over the next decade – and in which geographical region? These critical questions and many more are definitively answered in this comprehensive report. Comprehensive analysis of the global EST market The Energy Storage Technologies (EST) Market 2010-2020 report examines the EST sector critically with a comprehensive review of recent contracts, news reports, industry publications, market analysis and expert consultation. The report provides detailed sales forecasts for the global market, regional market forecasts; a strengths, weaknesses, opportunities and threats (SWOT) analysis; discussions of commercial and technological trends; and assessments of market drivers and restraints. This report also includes transcripts of in-depth interviews with industry experts. This package of analyses cannot be obtained anywhere else. The report draws on a rich combination of primary and secondary research, official corporate and governmental announcements, media reports, policy documents, industry statements and an extensive consultation of expert opinion. Report Highlights Companies Mentioned in this Report A123 Systems ABB Active Power ADFEC (Abu Dhabi Future Energy Company) AES Corporation AES Gener (Chile) Altairnano American Electric Power Axion Power Beacon Power Beta R&D ConocoPhillips Deeya Energy EEStor EDF Energy Electrosynthesis Company Electrovaya Ener1 EnerDel EnerFuel Energ2 Energy Storage & Power Enertech E.On Exide Technologies Federal Grid Company (FGC) of Russia General Electric (GE) General Compression Greensmith Energy Management Greta Energy HNU Energy Hydro One IBM International Battery InvestorsBank JSC (Kazakhstan) Isentropic Kazatomprom KT (South Korea) LG Maxwell Technologies Mey Golan (Israel) MGL (China) Mitsubishi Electric NanoEner NEC Nesscap NGK Insulators Nissan Pentadyne Energy Corporation Plug Power Premium Power Progress Energy Prudent Energy ReStore Energy Systems Rosnano RusHydro Rutronik S&C Electric Company Saft Batteries Saft Batteries – Industrial Battery Group Shanghai Municipal Electric Power Company Siemens SK Telecom State Grid Corporation of China Suntrof Mulk Energy Sun Catalytix SustainX Tokyo Electrical Power Company Toyota Ultralife Batteries Ultralife Corporation Valence Vesta VRB Power Systems ZBB Energy ZENN Motor Company Government Agencies and Other Organisations Mentioned in This Report Alabama Electric Cooperative Alternative Energy Sources Commission (Brazil) Brazilian Wind Energy Association (ABE Eolica) British Wind Energy Association (BWEA) Canada’s Centre for Energy Advancement through Technological Innovation (CEATI) Canadian Wind Energy Association (CanWEA) Chilean National Energy Commission (CNE) Desertec Foundation Electric Power Research Institute (EPRI) European Commission European DSO Association for Smart Grids (EDSO-SG) European Network of Transmission System Operators for Electricity (ENTSO-E) European Union (EU) Eurostat German Aerospace Centre (DLR) Global Wind Energy Council (GWEC) International Energy Agency (IEA) International Renewable Energy Agency (IRENA) Japanese Ministry of Economy, Trade and Industry King Abdullah University of Science and Technology (KAUST) Massachusetts Institute of Technology (MIT) National Aeronautics and Space Administration (NASA) National Solar Energy Centre (Israel) New York Power Authority (NYPA) New York State Energy Research & Development Authority Renewable Energy and Energy Efficiency Partnership (REEEP) Russian Wind Energy Association (RAWI) State University of New York (SUNY) Syrian Ministry of Higher Education The Canadian Institute The Transition Decade The University of Nottingham UN Conference of the Parties (COP) on climate change UN Environment Programme (UNEP) University of Maryland University of South Florida US Carbon Dioxide Information Analysis Center US Department of Energy (DOE) US Energy Information Administration (EIA) [Cerrar las informaciones del articulo de mercado] |
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1. Executive Summary 1.1 Introduction 1.2 The Global Energy Storage Technologies (EST) Market 1.3 Regional Energy Storage Technologies (EST) Markets 1.4 Drivers and Restraints in the Energy Storage Technologies (EST) Market 1.4.1 Drivers in the EST Market 1.4.2 Restraints in the EST Market 1.5 The Future Global Energy Storage Technologies (EST) Market 2. Introduction to the Energy Storage Technologies (EST) Market 2.1 Utility Energy Storage 2.2 The Growth of Renewables and Grid Reforms 2.3 Electrochemical Storage 2.4 Non-Electrochemical Storage 3. The Global Energy Storage Technologies (EST) Market 3.1 Global EST Market Size and Projected Growth 3.2 EST Market Drivers and Restraints 3.3 Energy Storage Technologies (EST) Drivers 3.3.1 World Population Growth 3.3.2 The Renewable Energy Boom 3.3.3 Smart Grids 3.3.4 Electric Vehicles (EV) 3.4 Energy Storage Technologies (EST) Restraints 3.4.1 Technological Performance 3.4.2 Cost of Technologies 3.4.3 Progressive Government Legislation 4. Regional Energy Storage Technologies (EST) Markets 4.1 North American Energy Storage Technologies (EST) Market 4.2 European Energy Storage Technologies (EST) Market 4.3 Asia Pacific Energy Storage Technologies (EST) Market 4.4 Russian and Central Asian Energy Storage Technologies (EST) Market 4.5 South American Energy Storage Technologies (EST) Market 4.6 Middle Eastern Energy Storage Technologies (EST) Market 4.7 African Energy Storage Technologies (EST) Market 4.8 Global Variations in the Energy Storage Technologies (EST) Market 5. SWOT Analysis of the Global Energy Storage Technologies (EST) Market 5.1 Strengths 5.1.1 Load Levelling and Energy Management 5.1.2 Intermittency of Solar and Wind Energy 5.1.3 Surges in Demand from EVs 5.1.4 Smart Grid Efficiency 5.2 Weaknesses 5.2.1 Cost of EST Systems 5.2.2 Geographically and Geologically Specific: CAES and Pumped-hydro 5.2.3 Technological Limitations 5.2.4 Hazardous and Polluting Materials 5.2.5 Safety Concerns 5.3 Opportunities 5.3.1 Wind and Solar Energy 5.3.2 Growth in the Electric Vehicle (EV) Market 5.3.3 Technological Improvements 5.4 Threats 5.4.1 Raw Material Cost 5.4.2 Nuclear and Gas Electricity Generation 5.4.3 Lack of Government Support 6. Energy Storage Technologies (EST) 6.1 Lead-Acid Batteries 6.2 NaS Batteries 6.3 Li-Ion Batteries 6.4 Flow Batteries 6.5 Pumped-hydro Systems 6.6 CAES Systems 6.7 Flywheel Systems 6.8 Ultracapacitors 6.9 SMES 6.10 Future Technological Trends 6.10.1 Nanotechnology 6.10.2 Breathing Batteries 6.10.3 Hydrogen Storage 6.10.4 Pumped-heat Storage 6.10.5 Battery Improvements 6.10.6 The EEStor Revolution 7. Expert Opinion 7.1 Prudent Energy 7.1.1 Commercially Viable Energy Storage Technologies (EST) in the Market 7.1.2 The Future of the EST Market 7.1.3 Future Electricity Demand Fuelled by EVs 7.2 General Compression 7.2.1 Market Drivers and Restraints for Energy Storage Technologies (EST) 7.2.2 General Compression’s CAES System 7.2.3 The Company Forecasts 7.2.4 Market Challenges Faced by General Compression 7.3 ZBB Energy 7.3.1 Key Trends in the EST Market 7.3.2 Barriers Stopping EST Solutions Getting to Market 7.4 Maxwell Technologies 7.4.1 The Role of Ultracapacitors 7.4.2 Future Growth and Challenges in the Market 8. Leading Companies in the Energy Storage Technologies (EST) Market 8.1 A123 Systems 8.2 Active Power 8.3 Altairnano 8.4 Axion Power 8.5 Beacon Power 8.6 Deeya Energy 8.7 Electrovaya 8.8 Ener1 8.9 Energ2 8.10 Energy Storage & Power 8.11 Exide Technologies 8.11.1 ReStore Energy Systems 8.12 General Electric (GE) 8.13 General Compression 8.14 Greensmith Energy Management 8.15 International Battery 8.16 Isentropic 8.17 Maxwell Technologies 8.18 Nesscap 8.19 NGK Insulators 8.20 Pentadyne Energy Corporation 8.21 Plug Power 8.22 Premium Power 8.23 Prudent Energy 8.24 Saft Batteries 8.25 SustainX 8.26 Ultralife batteries 8.27 Valence 8.28 ZBB 9. Conclusions 9.1 Factors Influencing the Growth of the Energy Storage Technologies (EST) Market 9.2 Technological Improvements 9.3 Strongest Growth Regions in the Energy Storage Technologies (EST) Market 9.4 Moderate Growth Regions in the Energy Storage Technologies (EST) Market 9.5 Regions with Minimal Growth in the Energy Storage Technologies (EST) Market 9.6 The Global Energy Storage Technologies(EST) Market [Cerrar la tabla de contenidos] |
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Table 1.1 Drivers and Restraints in the Global Energy Storage Technologies (EST) Market, 2010-2020 Table 2.1 Electrochemical Energy Storage Technologies (EST) and Performances Table 2.2 Non-Electrochemical Energy Storage Technologies (EST) and Performances Table 3.1 Global Energy Storage Technologies (EST) Market Forecast, 2010-2020, ($m, %AGR) Table 3.2 Global Energy Storage Technologies (EST) Market CAGR (%) 2010-2020, 2010-2015, and 2015-2020 Table 4.1 Regional Energy Storage Technologies (EST) Market Forecast, 2010-2020 ($m, % AGR) Table 4.2 North American Energy Storage Technologies (EST) Market Forecast, 2010-2020, ($m, %AGR) Table 4.3 North American Energy Storage Technologies (EST) Market CAGR (%) 2010-2020, 2010-2015, and 2015-2020 Table 4.4 European Energy Storage Technologies (EST) Market Forecast, 2010-2020, ($m, %AGR) Table 4.5 European Energy Storage Technologies (EST) Market CAGR (%) 2010-2020, 2010-2015, and 2015-2020 Table 4.6 Asia Pacific Energy Storage Technologies (EST) Market Forecast, 2010-2020, ($m, %AGR) Table 4.7 Asia Pacific Energy Storage Technologies (EST) Market CAGR (%) 2010-2020, 2010-2015, and 2015-2020 Table 4.8 Russian and Central Asian Energy Storage Technologies (EST) Market Forecast, 2010-2020, ($m, %AGR) Table 4.9 Russian and Central Asian Energy Storage Technologies (EST) Market CAGR (%) 2010-2020, 2010-2015, and 2015-2020 Table 4.10 South American Energy Storage Technologies (EST) Market Forecast, 2010-2020, ($m, %AGR) Table 4.11 South American Energy Storage Technologies (EST) Market CAGR (%) 2010-2020, 2010-2015, and 2015-2020 Table 4.12 Middle Eastern Energy Storage Technologies (EST) Market Forecast, 2010-2020, ($m, %AGR) Table 4.13 Middle Eastern Energy Storage Technologies (EST) Market CAGR (%) 2010-2020, 2010-2015, and 2015-2020 Table 4.14 African Energy Storage Technologies (EST) Market Forecast, 2010-2020, ($m, %AGR) Table 4.15 African Energy Storage Technologies (EST) Market CAGR (%) 2010-2020, 2010-2015, and 2015-2020 Table 5.1 SWOT Analysis of the Global Energy Storage Technologies (EST) Market, 2010-2020 Figure 2.1 Profile of Load Levelling via Utility-Scale Energy Storage Technologies Figure 3.1 Global Energy Storage Technologies (EST) Market Forecast 2010-2020 ($m) Figure 3.2 World Total Electricity Generation, 2010-2030 (Billion kWh) Figure 3.3 Total World Consumption of Renewable Energy, 2010-2030 (Quadrillion Btu) Figure 3.4 Global Electricity Generation by Technology, 2030 (450ppm Scenario) Figure 3.5 Total Worldwide Sales for EVs and PHEVs, 2012-2050 Figure 3.6 Estimated Cost of Energy Storage Technologies (EST) Technology per kWh Figure 3.7 Global Atmospheric Carbon Dioxide Measurements, 1960-2010 Figure 3.8 Comparison of National Carbon Dioxide Emission Levels (1000’s Tonnes) Figure 4.1 Total Electricity Generation by Region, 2006-2030 (Billion kWh) Figure 4.2 Renewable Energy Consumption by Region, 2006-2030 (Quadrillion Btu) Figure 4.3 Regional Energy Storage Technologies (EST) Market Forecast, 2010-2020 ($m) Figure 4.4 North American Energy Storage Technologies (EST) Market Forecast, 2010-2020 ($m) Figure 4.5 European Energy Storage Technologies (EST) Market Forecast 2010-2020 ($m) Figure 4.6 Asia Pacific Energy Storage Technologies (EST) Market Forecast, 2010-2020 ($m) Figure 4.7 Russian and Central Asian Energy Storage Technologies (EST) Market Forecast, 2010-2020 ($m) Figure 4.8 South American Energy Storage Technologies (EST) Market Forecast 2010-2020 ($m) Figure 4.9 Middle Eastern Energy Storage Technologies (EST) Market Forecast 2010-2020 ($m) Figure 4.10 African Energy Storage Technologies (EST) Market Forecast 2010-2020 ($m) Figure 4.11 Regional Energy Storage Technologies (EST) Market CAGR, 2010-2015 (%) Figure 4.12 Regional Energy Storage Technologies (EST) Market CAGR, 2015-2020 (%) Figure 4.13 Regional Energy Storage Technologies (EST) Market CAGR, 2010-2020 (%) Figure 4.14 Regional Energy Storage Technologies (EST) Market Share, 2010 (%) Figure 4.15 Regional Energy Storage Technologies (EST) Market Share, 2015 (%) Figure 4.16 Regional Energy Storage Technologies (EST) Market Share, 2020 (%) [Ocultar lista de tablas / figuras] |
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