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Are Renewables as Friendly to Humans as to the Environment?: A Social Life Cycle Assessment of Renewable Electricity

Author

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  • Shutaro Takeda

    (Graduate School of Advanced Integrated Studies in Human Survivability, Kyoto University, Kyoto 606-8306, Japan)

  • Alexander Ryota Keeley

    (Department of Urban and Environmental Engineering, Kyushu University, Fukuoka 819-0395, Japan)

  • Shigeki Sakurai

    (Graduate School of Advanced Integrated Studies in Human Survivability, Kyoto University, Kyoto 606-8306, Japan)

  • Shunsuke Managi

    (Department of Urban and Environmental Engineering, Kyushu University, Fukuoka 819-0395, Japan)

  • Catherine Benoît Norris

    (Extension School, Harvard University, Cambridge, MA 02138, USA)

Abstract

The adoption of renewable energy technologies in developing nations is recognized to have positive environmental impacts; however, what are their effects on the electricity supply chain workers? This article provides a quantitative analysis on this question through a relatively new framework called social life cycle assessment, taking Malaysia as a case example. Impact assessments by the authors show that electricity from renewables has greater adverse impacts on supply chain workers than the conventional electricity mix: Electricity production with biomass requires 127% longer labor hours per unit-electricity under the risk of human rights violations, while the solar photovoltaic requires 95% longer labor hours per unit-electricity. However, our assessment also indicates that renewables have less impacts per dollar-spent. In fact, the impact of solar photovoltaic would be 60% less than the conventional mix when it attains grid parity. The answer of “ are renewables as friendly to humans as to the environment? ” is “ not-yet, but eventually .”

Suggested Citation

  • Shutaro Takeda & Alexander Ryota Keeley & Shigeki Sakurai & Shunsuke Managi & Catherine Benoît Norris, 2019. "Are Renewables as Friendly to Humans as to the Environment?: A Social Life Cycle Assessment of Renewable Electricity," Sustainability, MDPI, vol. 11(5), pages 1-16, March.
  • Handle: RePEc:gam:jsusta:v:11:y:2019:i:5:p:1370-:d:211207
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    References listed on IDEAS

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    5. Mario Martín-Gamboa & Paula Quinteiro & Ana Cláudia Dias & Diego Iribarren, 2021. "Comparative Social Life Cycle Assessment of Two Biomass-to-Electricity Systems," IJERPH, MDPI, vol. 18(9), pages 1-15, May.
    6. Batara Surya & Seri Suriani & Firman Menne & Herminawaty Abubakar & Muhammad Idris & Emil Salim Rasyidi & Hasanuddin Remmang, 2021. "Community Empowerment and Utilization of Renewable Energy: Entrepreneurial Perspective for Community Resilience Based on Sustainable Management of Slum Settlements in Makassar City, Indonesia," Sustainability, MDPI, vol. 13(6), pages 1-36, March.
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    8. Pasan Dunuwila & V. H. L. Rodrigo & Ichiro Daigo & Naohiro Goto, 2023. "Social Sustainability of Raw Rubber Production: A Supply Chain Analysis under Sri Lankan Scenario," Sustainability, MDPI, vol. 15(15), pages 1-21, July.
    9. Rebolledo-Leiva, Ricardo & Moreira, María Teresa & González-García, Sara, 2023. "Progress of social assessment in the framework of bioeconomy under a life cycle perspective," Renewable and Sustainable Energy Reviews, Elsevier, vol. 175(C).
    10. Nur Izzah Hamna A. Aziz & Marlia M. Hanafiah & Shabbir H. Gheewala & Haikal Ismail, 2020. "Bioenergy for a Cleaner Future: A Case Study of Sustainable Biogas Supply Chain in the Malaysian Energy Sector," Sustainability, MDPI, vol. 12(8), pages 1-24, April.
    11. Begum Erten & Zafer Utlu, 2020. "Photovoltaic system configurations: an occupational health and safety assessment," Greenhouse Gases: Science and Technology, Blackwell Publishing, vol. 10(4), pages 809-828, August.
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    13. Matevz Obrecht & Yigit Kazancoglu & Matjaz Denac, 2020. "Integrating Social Dimensions into Future Sustainable Energy Supply Networks," IJERPH, MDPI, vol. 17(17), pages 1-18, August.

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