雖然全球各國(guó)不斷增加對(duì)可再生能源(Renewable Energy)的投資,但是風(fēng)能發(fā)電和太陽(yáng)能發(fā)電的入網(wǎng)卻面臨諸多困惑,因?yàn)樘?yáng)能系統(tǒng)不能再在晚間發(fā)電,沒(méi)有風(fēng)吹風(fēng)力發(fā)電就沒(méi)有輸出。由于電網(wǎng)是不能應(yīng)對(duì)非預(yù)期電源的,電力的存儲(chǔ)技術(shù)日益受到業(yè)界的關(guān)注,市場(chǎng)前景樂(lè)觀。詳情請(qǐng)參考最新報(bào)告《Renewable Energy Storage: Batteries, Flywheels, Molten Salt, Pumped Hydro, and Other Technologies that Help Manage Intermittency in the Power Grid》:
Number of Pages: 82
Number of Charts: 8
Number of Tables: 24
Number of Figures: 7
Release Date: 2Q 2010
Report Contents
Executive Brief: Top-Line Forecast
Executive Brief: Drivers
Executive Brief: Inhibitors
Executive Brief: Market Share
Executive Brief: Summary and Strategic Recommendations
Section 1. Executive Summary
1.1. The "Holy Grail"
1.2. Current State of Utility-Scale Energy Storage
1.2.1. Power-Oriented Storage
1.2.2. Energy-Oriented Storage
1.3. Global Forecast Highlights
1.4. Regional Forecast Highlights
1.4.1. North America
1.4.2. Europe
1.4.3. Asia-Pacific
1.4.4. Rest of World
Section 2. Technology Overview
2.1. Current Renewable Energy Resources
2.1.1. Solar Photovoltaic Power
2.1.1.1. How It Works
2.1.1.2. How Storage Can Help
2.1.2. Wind Power
2.1.2.1. How It Works
2.1.2.2. How Storage Can Help
2.1.3. Hydroelectric Power
2.1.3.1. How It Works
2.1.3.2. How Storage Can Help
2.1.4. Geothermal Power
2.1.4.1. How It Works
2.1.4.2. How Storage Can Help
2.2. Smart Grid
2.2.1. How It Works
2.2.2. Implementation Costs
2.2.3. Challenges
2.2.4. Smart Grid Status
2.3. Energy Storage
2.3.1. How It Will Work with the Smart Grid
2.3.1.1. Community Energy Storage (CES)
2.3.1.2. Bulk Storage
2.4. Varieties of Utility-Scale Energy Storage
2.4.1. Pumped Hydroelectric Energy Storage
2.4.1.1. Challenges
2.4.2. Compressed Air Energy Storage
2.4.2.1. Challenges
2.4.3. Thermal Energy Storage
2.4.3.1. Ice
2.4.3.2. Molten Salt
2.4.3.3. Challenges
2.4.4. Batteries
2.4.4.1. Lithium-Ion Batteries
2.4.4.2. Lead-Acid and Lead-Carbon Batteries
2.4.4.3. Sodium-Sulfur Batteries
2.4.4.4. Flow Battery
2.4.5. Supercapacitors
2.4.6. Flywheels
Section 3. Business and Regulatory Issues
3.1. Market Challenges
3.1.1. Implementation Costs
3.1.2. Technology Adoption
3.1.3. Business Climate
3.1.4. Regulations
3.2. Market Drivers
3.2.1. Government Incentives
3.2.1.1. North America
3.2.1.1.1. Canada
3.2.1.1.2. United States
3.2.1.2. Asia-Pacific
3.2.1.2.1. Australia
3.2.1.2.2. China
3.2.1.2.3. New Zealand
3.2.1.2.4. Philippines
3.2.1.2.5. India
3.2.1.3. Europe
3.2.2. United Nations Initiatives
Section 4. Market Outlook
4.1. Forecast Methodology
4.1.1. Primary and Secondary Sources of Information
4.2. Forecasts by Region
4.2.1. North America
4.2.2. Europe
4.2.3. Asia-Pacific
4.2.4. Rest of World
4.3. Forecasts by Technology
4.3.1. Pumped Hydroelectric Energy Storage
4.3.2. Compressed Air Energy Storage (CAES)
4.3.3. Thermal Energy Storage
4.3.3.1. Molten Salt
4.3.3.2. Ice
4.3.4. Batteries
4.3.4.1. Lithium-Ion Batteries
4.3.4.2. Other Battery Technologies
4.3.5. Supercapacitors
4.3.6. Flywheel Energy Storage
Section 5. Company Profiles
5.1. A123 Systems Inc
5.2. American Electric Power Company, Inc
5.3. Altair Nanotechnologies
5.4. Axion Power
5.5. Beacon Power
5.6. CALMAC Manufacturing Corp
5.7. General Electric
5.8. NGK Insulators
5.9. Saft Group
5.10. SolarReserve
5.11. SolRayo
5.12. SustainX
5.13. ZBB Energy
Section 6. Industry Directory
Section 7. Acronyms
Tables
Cumulative Utility-Scale Energy Storage Capacity, World Market, Forecast: 2009 to 2015
Cumulative Photovoltaic Installations, World Market, Forecast: 2008 to 2015
Wind Power Installations and Cumulative Capacity, World Market, Forecast: 2008 to 2015
Electric Power Generation by Source, United States, 2008
Cumulative Investment in Smart Grids, World Market, Forecast: 2008 to 2015
Energy Storage Technologies Compared
Strengths and Weaknesses of Energy Storage Technologies
US States with Renewable Portfolio Standards
US DOE Project Funding for Energy Storage ,October 2009
Asia-Pacific Nations with Renewable Portfolio Standards
2020 Renewable Energy Goals, European Nations
Cumulative Utility-Scale Energy Storage Capacity, World Market, Forecast: 2009 to 2015
Cumulative Utility-Scale Energy Storage Capacity, North America, Forecast: 2009 to 2015
Cumulative Utility-Scale Energy Storage Capacity, Europe, Forecast: 2009 to 2015
Cumulative Utility-Scale Energy Storage Capacity, Asia-Pacific, Forecast: 2009 to 2015
Cumulative Utility-Scale Energy Storage Capacity, Rest of World, Forecast: 2009 to 2015
Pumped Hydroelectric Energy Storage Cumulative Capacity, World Market, Forecast: 2010 to 2015
Compressed Air Energy Storage Cumulative Capacity, World Market, Forecast: 2010 to 2015
Thermal Energy Storage (Molten Salt) Cumulative Capacity, World Market, Forecast: 2010 to 2015
Thermal Energy Storage (Cooling) Cumulative Capacity, World Market, Forecast: 2009 to 2015
Lithium-Ion Battery Revenue by Application, World Market, Forecast: 2009 to 2015
Other Battery Technology Utility Energy Storage Revenue, World Market, Forecast: 2009 to 2015
Supercapacitor Revenue by Application, World Market, Forecast: 2009 to 2015
Flywheel Utility Energy Storage Revenue, World Market, Forecast: 2009 to 2015
Charts
Cumulative Utility-Scale Energy Storage Capacity World Market, Forecast: 2009 to 2015
Pumped Hydroelectric Energy Storage Cumulative Capacity World Market, Forecast: 2010 to 2015
Cumulative Utility-Scale Energy Storage Capacity, World Market, Forecast: 2009 to 2015
Pumped Hydroelectric Energy Storage Cumulative Capacity, World Market, Forecast: 2010 to 2015
Compressed Air Energy Storage Cumulative Capacity, World Market, Forecast: 2010 to 2015
Thermal Energy Storage (Cooling) Cumulative Capacity, World Market, Forecast: 2009 to 2015
Lithium-Ion Battery Revenue by Application World Market, Forecast: 2009 to 2015
Other Battery Technology Utility Energy Storage Revenue, World Market, Forecast: 2009 to 2015
Supercapacitor Revenue by Application, World Market, Forecast: 2009 to 2015
Flywheel Utility Energy Storage Revenue, World Market, Forecast: 2009 to 2015
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