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Electrochemical Energy Storage for Renewable Sources and Grid Balancing

Gebonden Engels 2014 9780444626165
Verwachte levertijd ongeveer 9 werkdagen

Samenvatting

Electricity from renewable sources of energy is plagued by fluctuations (due to variations in wind strength or the intensity of insolation) resulting in a lack of stability if the energy supplied from such sources is used in ‘real time’. An important solution to this problem is to store the energy electrochemically (in a secondary battery or in hydrogen and its derivatives) and to make use of it in a controlled fashion at some time after it has been initially gathered and stored. Electrochemical battery storage systems are the major technologies for decentralized storage systems and hydrogen is the only solution for long-term storage systems to provide energy during extended periods of low wind speeds or solar insolation. Future electricity grid design has to include storage systems as a major component for grid stability and for security of supply. The technology of systems designed to achieve this regulation of the supply of renewable energy, and a survey of the markets that they will serve, is the subject of this book. It includes economic aspects to guide the development of technology in the right direction.

Specificaties

ISBN13:9780444626165
Taal:Engels
Bindwijze:Gebonden

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Inhoudsopgave

<p>Introduction – Renewable energies, markets and storage technology classification<br>1. Renewable Energies for power generation – Technologies, potentials, needs for balancing power<br>2. Classification of technologies for balancing power in grids<br>3. Challenges for the power supply systems – grid restrictions, demand side management, conventional power plant operation<br>4. Existing markets and operation profiles for grid connected storage systems – Primary control, secondary control, minute reserve, energy trading, power plant scheduling, UPS systems, self-consumption<br>5. Existing markets for storage systems in off-grid applications<br>6. Review on the need of storage capacities depending on the share of renewable energies</p> <p>Storage Technologies<br>7. Overview about non-electrochemical storage technologies<br>8. Hydrogen production from renewable energies – electrolyser technologies<br>9. Hydrogen storage technologies<br>10. Hydrogen conversion into electricity and thermal use<br>11. Reversible fuel cell<br>12. Energy carriers made from hydrogen<br>13. Lead–Acid Battery Energy Storage<br>14. Nickel–cadmium Battery Energy Storage<br>15. Sodium High Temperature Batteries Energy Storage<br>16. Lithium-ion Battery Energy Storage<br>17. Redox Flow Battery Energy Storage<br>18. Metal storage / Metal air (Zn, Al, Mg, Li)<br>19. Electrochemical Double Layer Capacitors</p> <p>System Aspects<br>20. Battery management and battery diagnostics<br>21. Life cycle cost calculation and comparison for different reference cases and market segments<br>22. ‘Double use’ storage systems – ‘PV Self-Consumption’ and ‘Vehicle to Grid’ </p>

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        Electrochemical Energy Storage for Renewable Sources and Grid Balancing