Environmental Assessment of Renewable Energy Conversion Technologies
Editat de Paris A. Fokaides, Phoebe-Zoe Morsink-Georgali, Angeliki Kylilien Limba Engleză Paperback – 20 iun 2022
It offers readers a comprehensive overview of the entire energy supply chain, namely from production to storage, by allowing the consideration of different production and storage combinations, based on their environmental assessment.
- Provides an overview of the environmental assessment process of renewable energy conversion and storage technologies
- Includes state-of-the-art approaches and techniques for the comprehensive environmental assessment of individual sustainable energy conversion and storage technologies and their applications
- Features comparative assessments of different technologies
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Specificații
ISBN-13: 9780128171110
ISBN-10: 0128171111
Pagini: 330
Ilustrații: Approx. 200 illustrations
Dimensiuni: 152 x 229 x 27 mm
Greutate: 0.44 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128171111
Pagini: 330
Ilustrații: Approx. 200 illustrations
Dimensiuni: 152 x 229 x 27 mm
Greutate: 0.44 kg
Editura: ELSEVIER SCIENCE
Public țintă
Environmental scientists, professionals in the field of environmental assessment of renewable technologies, energy industry professionals and engineersCuprins
Part A: Introduction
1. State-of-the-art in Environmental Assessment Techniques
2. European and Global Legislative Framework of Energy Technologies Environmental Assessment
Part B: Environmental Assessment of Renewable Energy Conversion Technologies
3. Solar Energy - PV
4. Solar Energy - Low-Heat Solar Thermal Applications (for heating)
5. Solar Energy - High Temperature Solar Thermal Applications (CSPs) (for power)
6. Wind Technologies - Wind Turbines
7. Biomass to Biofuels - Thermochemical Conversion Routes (Torrefaction, Pyrolysis, Gasification)
8. Biomass to Biofuels - Biochemical Conversion Routes (Anaerobic Digestion, Fermentation)
9. Biomass to Biofuels - Mechanical Conversion Routes (Pelleting, Briquetting)
10. Geothermal Energy - Shallow Geothermal Applications (for heating)
11. Geothermal Energy - High Enthalpy Geothermal Applications (for power)
12. Hydro Energy - Hydropower stations
13. Hydro Energy - Tidal Power
14. Water to Hydrogen Conversion Routes
Part C: Environmental Assessment of Renewable Energy Storage Technologies
15. Heat Storage (Heat Capacity, Latent Heat)
16. Pumped Hydrostorage
17. Compressed Gas Storage
18. Battery Storage
Part D: Comparative Environmental Assessment of Renewable Energy Conversion and Storage Techniques
19. Environmental Assessment of Renewable Energy Conversion Techniques
20. Environmental Assessment of Renewable Energy Storage Techniques
1. State-of-the-art in Environmental Assessment Techniques
2. European and Global Legislative Framework of Energy Technologies Environmental Assessment
Part B: Environmental Assessment of Renewable Energy Conversion Technologies
3. Solar Energy - PV
4. Solar Energy - Low-Heat Solar Thermal Applications (for heating)
5. Solar Energy - High Temperature Solar Thermal Applications (CSPs) (for power)
6. Wind Technologies - Wind Turbines
7. Biomass to Biofuels - Thermochemical Conversion Routes (Torrefaction, Pyrolysis, Gasification)
8. Biomass to Biofuels - Biochemical Conversion Routes (Anaerobic Digestion, Fermentation)
9. Biomass to Biofuels - Mechanical Conversion Routes (Pelleting, Briquetting)
10. Geothermal Energy - Shallow Geothermal Applications (for heating)
11. Geothermal Energy - High Enthalpy Geothermal Applications (for power)
12. Hydro Energy - Hydropower stations
13. Hydro Energy - Tidal Power
14. Water to Hydrogen Conversion Routes
Part C: Environmental Assessment of Renewable Energy Storage Technologies
15. Heat Storage (Heat Capacity, Latent Heat)
16. Pumped Hydrostorage
17. Compressed Gas Storage
18. Battery Storage
Part D: Comparative Environmental Assessment of Renewable Energy Conversion and Storage Techniques
19. Environmental Assessment of Renewable Energy Conversion Techniques
20. Environmental Assessment of Renewable Energy Storage Techniques