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Decarbonization Strategies and Drivers to Achieve Carbon Neutrality for Sustainability

Paperback Engels 2024 9780443136078
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Decarbonization Strategies and Drivers to Achieve Carbon Neutrality for Sustainability emphasizes the significance of various decarbonization strategies. Sections cover contributions of bioenergy to decarbonization, non-fossil energy targets, the role of wind energy, hydrogen energy, potential of geothermal energy, nuclear energy, wind to energy, role of electrification and carbon capture, utilization and storage (CCUS) technologies, and more. The book aims to explain how reducing petroleum consumption and supplementing alternate sources of renewable fuels is vital and would strengthen decarbonization.

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ISBN13:9780443136078
Taal:Engels
Bindwijze:Paperback

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<p>Section a) Strategies for Decarbonization<br>1. The contribution of Bioenergy to the decarbonization<br>2. Non-fossil energy targets for environmental sustainability<br>3. Role of Wind energy to the decarbonization<br>4. Hydrogen and Ammonia Energy for Decarbonization<br>5. Potential of Geothermal energy for decarbonization<br>6. Nuclear energy and its role in decarbonization<br>7. Si-based agrochemicals for mitigation of greenhouse gases<br>8. Reducing arable green-house gas emission for sustainability<br><br>Section b) Role of Electrification in the Decarbonization<br>9. Electric vehicles for environmental sustainability<br>10. Internet of things [IoT] for charging of Electrical Vehicles<br><br>Section c) Carbon capture, utilization and storage (CCUS) technologies<br>11. Carbon Dioxide Capture Technologies for the Conventional Energy Sector<br>12. Biological carbon sequestration for environmental sustainability<br>13. Policy Planning and Implementation for Carbon Capture Technologies<br>14. E-fuels: Pathway Towards Cleaner Future<br>15. CO2 Sequestration for Conventional Utilization and Industrial Application<br><br>Section d) Waste to Energy<br>16. The Significant Role of Waste to Energy on Decarbonisation<br>17. Green energy from waste to promote decarbonization<br>18. Involvement of The Informal Plastic Recycler in Reducing Carbon Emission<br><br>Section e) Case studies of Successful Energy Transition<br>19. Successful Energy Transition – Case study in Indonesia<br>20. Harnessing landfill gas (LFG) for electricity: A strategy to mitigate greenhouse gas (GHG) emissions in Jakarta (Indonesia)<br>21. Production of bioenergy from industrial crops for Decarbonization of environment<br>22. Agronomic management strategies for storing soil carbon and reducing greenhouse gas emission in the Mediterranean region<br>23. Agroforestry: a promising approach to reducing green-house gas emission<br>24. Nanomaterials and Novel Solvents for Carbon Capture Technologies<br>25. Landfill Gas as a source of energy to promote decarbonization<br>26. Waste to promote decarbonization<br>27. Decarbonizing Iron and Steel Sector in India</p>

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€ 157,00
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        Decarbonization Strategies and Drivers to Achieve Carbon Neutrality for Sustainability