Sustainability and Future Trajectories: How is Prospectivity Integrated into Life Cycle Sustainability Assessment?

The energy transition and associated objectives like climate change mitigation, economic efficiency, social acceptance and security of supply require technologies that are sustainable. With the help of a Life Cycle Sustainability Assessment (LCSA), such a holistic evaluation of energy technologies c...

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Main Authors: Brand Urte, Papantoni Veatriki, Gómez Trillos Juan Camilo, Tippe Mareike, Lütkehaus Hauke, Oswald Matthias, Pade Christian, Vogt Thomas
Format: Article
Language:English
Published: EDP Sciences 2022-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2022/16/e3sconf_lcm2022_02006.pdf
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author Brand Urte
Papantoni Veatriki
Gómez Trillos Juan Camilo
Tippe Mareike
Lütkehaus Hauke
Oswald Matthias
Pade Christian
Vogt Thomas
author_facet Brand Urte
Papantoni Veatriki
Gómez Trillos Juan Camilo
Tippe Mareike
Lütkehaus Hauke
Oswald Matthias
Pade Christian
Vogt Thomas
author_sort Brand Urte
collection DOAJ
description The energy transition and associated objectives like climate change mitigation, economic efficiency, social acceptance and security of supply require technologies that are sustainable. With the help of a Life Cycle Sustainability Assessment (LCSA), such a holistic evaluation of energy technologies can be carried out. This in itself is very complex, since criteria of the different sustainability dimensions have to be compiled and integrated to give an overall result. However, LCSA often only considers the current development status of technologies and not their potential future developments. Particularly in the case of emerging technologies, possible future improvements or even negative impacts may occur in the course of technology development, which could significantly change the initial LCSA results. An early consideration of future developments of technologies in the context of so-called prospective LCSA is therefore highly relevant, but also of high complexity and associated with uncertainties. We evaluated how this complex topic of prospectivity has been dealt with in the LCSA community so far by conducting a literature review. Focusing on LCSA of energy technologies, we present our findings related to commonly used prospective methods and data, the underling motivation of their application as well as research gaps and potentials for further development.
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spelling doaj.art-98ada2a05cd142e4be104b6ad0d7dbf42022-12-22T02:34:38ZengEDP SciencesE3S Web of Conferences2267-12422022-01-013490200610.1051/e3sconf/202234902006e3sconf_lcm2022_02006Sustainability and Future Trajectories: How is Prospectivity Integrated into Life Cycle Sustainability Assessment?Brand Urte0Papantoni Veatriki1Gómez Trillos Juan Camilo2Tippe Mareike3Lütkehaus Hauke4Oswald Matthias5Pade Christian6Vogt Thomas7German Aerospace Center (DLR), Institute of Networked Energy SystemsGerman Aerospace Center (DLR), Institute of Networked Energy SystemsGerman Aerospace Center (DLR), Institute of Networked Energy SystemsGerman Aerospace Center (DLR), Institute of Networked Energy SystemsUniversity of OldenburgGerman Aerospace Center (DLR), Institute of Networked Energy SystemsGerman Aerospace Center (DLR), Institute of Networked Energy SystemsGerman Aerospace Center (DLR), Institute of Networked Energy SystemsThe energy transition and associated objectives like climate change mitigation, economic efficiency, social acceptance and security of supply require technologies that are sustainable. With the help of a Life Cycle Sustainability Assessment (LCSA), such a holistic evaluation of energy technologies can be carried out. This in itself is very complex, since criteria of the different sustainability dimensions have to be compiled and integrated to give an overall result. However, LCSA often only considers the current development status of technologies and not their potential future developments. Particularly in the case of emerging technologies, possible future improvements or even negative impacts may occur in the course of technology development, which could significantly change the initial LCSA results. An early consideration of future developments of technologies in the context of so-called prospective LCSA is therefore highly relevant, but also of high complexity and associated with uncertainties. We evaluated how this complex topic of prospectivity has been dealt with in the LCSA community so far by conducting a literature review. Focusing on LCSA of energy technologies, we present our findings related to commonly used prospective methods and data, the underling motivation of their application as well as research gaps and potentials for further development.https://www.e3s-conferences.org/articles/e3sconf/pdf/2022/16/e3sconf_lcm2022_02006.pdf
spellingShingle Brand Urte
Papantoni Veatriki
Gómez Trillos Juan Camilo
Tippe Mareike
Lütkehaus Hauke
Oswald Matthias
Pade Christian
Vogt Thomas
Sustainability and Future Trajectories: How is Prospectivity Integrated into Life Cycle Sustainability Assessment?
E3S Web of Conferences
title Sustainability and Future Trajectories: How is Prospectivity Integrated into Life Cycle Sustainability Assessment?
title_full Sustainability and Future Trajectories: How is Prospectivity Integrated into Life Cycle Sustainability Assessment?
title_fullStr Sustainability and Future Trajectories: How is Prospectivity Integrated into Life Cycle Sustainability Assessment?
title_full_unstemmed Sustainability and Future Trajectories: How is Prospectivity Integrated into Life Cycle Sustainability Assessment?
title_short Sustainability and Future Trajectories: How is Prospectivity Integrated into Life Cycle Sustainability Assessment?
title_sort sustainability and future trajectories how is prospectivity integrated into life cycle sustainability assessment
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2022/16/e3sconf_lcm2022_02006.pdf
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