Details

Life Cycle Assessment of Energy Systems


Life Cycle Assessment of Energy Systems

Closing the Ethical Loophole of Social Sustainability
1. Aufl.

von: Nicholas Sakellariou

197,99 €

Verlag: Wiley
Format: EPUB
Veröffentl.: 04.05.2018
ISBN/EAN: 9781119418535
Sprache: englisch
Anzahl Seiten: 366

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Beschreibungen

<p><b>This groundbreaking work is the most in-depth and state-of-the-art study on the Life Cycle Assessment (LCA) of energy systems, the only volume available on this critical subject.</b></p> <p>Energy and sustainability are two of the most important and often most misunderstood subjects in our world today. As these two subjects have grown in importance over the last few decades, interest in the Life Cycle Assessment (LCA) model has grown as well, as a potentially crucial tool in understanding and striving towards sustainability in energy systems. Not just wind and solar systems, but all energy systems, need to be understood through this model.</p> <p>Wind and solar power have the potential to decentralize the U.S. energy system by offering local communities electricity and economic support, depending on the scale and design of projects. Nevertheless, every energy technology potentially faces environmental costs, lay and expert opposition, and risks to public health. Engineers play a central role as designers, builders, and operators in energy systems. As they extend their expertise into electrical, mechanical and chemical fields, from fossil fuel-based systems to renewable energy systems, "sustainability" is steadily becoming one of the key criteria engineers apply in their work. This groundbreaking new study argues that engineering cultures foster sustainability by adopting assumptions and problem-solving practices as part of their identities when designing and building engineering projects.</p> <p>This work examines the politics of creating, utilizing, and modifying Life Cycle Assessment (LCA) in the construction of renewable energy systems. The only volume of its kind ever written, it is a must-have for any engineer, scientist, manager, or other professional working in or interested in Life Cycle Assessment and its relation to energy systems and impact on environmental and economic sustainability.</p>
<p>Acknowledgements ix<br /><b><br />Part I Engineering and Sustainability 1<br /></b><br />1 Engineering Sustainability, Sustaining Engineering 3<br /><br />2 A Critical History of Sustainability Engineering 23<br /><br />3 Resisting Sustainability 77<br /><br /><b>Part II Life Cycle Analysis 111<br /></b><br />4 When Social Values Make an Entry 113<br /><br />5 Social Life Cycle Assessment (SLCA) Rationalities 149<br /><br /><b>Part III Case Studies 191<br /></b><br />6 Life Cycle Sustainability, Renewable Energy Project Development, and the Exclusion of Local Knowledge in California’s Western Antelope Valley (WAV) 193<br /><br />7 Through an Ethnographic Lens: Local-Regional Politics of Utility Solar and Wind Siting in California 235<br /><br />8 Epilogue 303<br /><br />Bibliography 317<br /><br />Appendix 1: Solar Ranch One Timeline (Siting, Permitting, Financing and Pre-Construction) 346<br /><br />Appendix 2: Sample of Community Concerns as Regards to the Solar Ranch One, Alpine, Wildflower and Blue<br /><br />Sky RE projects 349<br /><br />Index 355</p>
<p><b>Nicholas Sakellariou,</b> PhD, is a lecturer at California Polytechnic State University, San Luis Obispo, where he teaches engineering ethics and professional responsibilities classes. He received his doctorate in Environmental Science Policy and Management from the University of California at Berkeley in 2015. He holds postgraduate degrees from the National Technical University of Athens and Virginia Polytechnic Institute. Nicholas is a recipient of the National Academy of Engineering (NAE) Energy Ethics and Society Scholarship and was Hennebach Visiting Scholar at the Department of Humanitarian Engineering, Colorado School of Mines in 2012. His doctoral project on Energy Systems' Life Cycle Assessment (LCA) was supported by a National Science Foundation (NSF) book grant.
<p><b>This groundbreaking work is the most in-depth and state-of-the-art study on the Life Cycle Assessment (LCA) of energy systems, the only volume available on this critical subject.</b> <p>Energy and sustainability are two of the most important and often most misunderstood subjects in our world today. As these two subjects have grown in importance over the last few decades, interest in the Life Cycle Assessment (LCA) model has grown as well, as a potentially crucial tool in understanding and striving towards sustainability in energy systems. Not just wind and solar systems, but all energy systems, need to be understood through this model. <p>Wind and solar power have the potential to decentralize the U.S. energy system by offering local communities electricity and economic support, depending on the scale and design of projects. Nevertheless, every energy technology potentially faces environmental costs, lay and expert opposition, and risks to public health. Engineers play a central role as designers, builders, and operators in energy systems. As they extend their expertise into electrical, mechanical and chemical fields, from fossil fuel-based systems to renewable energy systems, "sustainability" is steadily becoming one of the key criteria engineers apply in their work. This groundbreaking new study argues that engineering cultures foster sustainability by adopting assumptions and problem-solving practices as part of their identities when designing and building engineering projects. <p>This work examines the politics of creating, utilizing, and modifying Life Cycle Assessment (LCA) in the construction of renewable energy systems. The only volume of its kind ever written, it is a must-have for any engineer, scientist, manager, or other professional working in or interested in Life Cycle Assessment and its relation to energy systems and impact on environmental and economic sustainability. <p><b>This groundbreaking new study:</b> <ul> <li>Analyzes the politics of engineering identity formation in relation to social, political, regulatory and community pressure to reshape the boundaries of LCA</li> <li>Offers a broad conceptual analysis of "sustainability engineering" in the U.S., outlining its history, epistemology and politics</li> <li>Focuses on two case studies of renewable energy system building, solar and wind project development in California and the decommissioning of wind turbine blades, to understand in more detail the politics of LCA in renewable technologies</li> <li>Proposes one of the first studies to focus on the politics of deciding what sustainability means in renewable energy systems</li> <li>Is a valuable contribution, not just to the energy industry and to LCA professionals, but also to teachers and their students</li> </ul>

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