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The Roles and Synergies of Actors in the Green Building Transition: Lessons from Singapore

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  • Danlei Zhang

    (School of Management, Guangdong University of Technology, Guangzhou 510520, China)

  • Yong He

    (School of Management, Guangdong University of Technology, Guangzhou 510520, China)

Abstract

Transforming the building sector toward sustainability based on green building (GB) technologies is a multi-faceted, multi-actor process of socio-technical transition. Understanding the different roles of primary actors in both technological and non-technological dimensions of GB transition is pivotal for effectively engaging multiple GB stakeholders during this process. However, relevant research is rare in the GB literature. This paper conducts an actor analysis based on a conceptual framework constructed on the actor and power relation typology from the multi-actor perspective approach and regime insights from the multi-level perspective theory. A qualitative case study of Singapore is adopted to exemplify the roles of the government, developers, citizens and NGOs, determined by their respective power and multi-actor power relations, and to evaluate their synergetic influence on the technological, social and governance dimensions of the GB transition. It was found that the government leads all three dimensions of GB transition and it has an indirect impact on promoting the technological transformation and social adaption by synergizing the other three actors. As the intermediary between government and non-government actors, NGOs indirectly influence GB transition by primarily assisting the government. Developers and citizens directly contribute to technological transformation and social adaption, respectively, and they have an indirect impact on the opposite dimensions through interacting with one another. We argue that a successful GB transition entails synergies from multi-actor interactions and the interplay of technical and non-technical development. This paper offers a heuristic framework for multi-actor analysis in the multi-faceted GB transition and generates policy lessons for other cities.

Suggested Citation

  • Danlei Zhang & Yong He, 2022. "The Roles and Synergies of Actors in the Green Building Transition: Lessons from Singapore," Sustainability, MDPI, vol. 14(20), pages 1-19, October.
  • Handle: RePEc:gam:jsusta:v:14:y:2022:i:20:p:13264-:d:943101
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    References listed on IDEAS

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    1. Geels, Frank W., 2012. "A socio-technical analysis of low-carbon transitions: introducing the multi-level perspective into transport studies," Journal of Transport Geography, Elsevier, vol. 24(C), pages 471-482.
    2. Zhang, Xiaoling, 2015. "Green real estate development in China: State of art and prospect agenda—A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 47(C), pages 1-13.
    3. Lisa-Britt Fischer & Jens Newig, 2016. "Importance of Actors and Agency in Sustainability Transitions: A Systematic Exploration of the Literature," Sustainability, MDPI, vol. 8(5), pages 1-21, May.
    4. Geels, Frank W., 2002. "Technological transitions as evolutionary reconfiguration processes: a multi-level perspective and a case-study," Research Policy, Elsevier, vol. 31(8-9), pages 1257-1274, December.
    5. Geels, Frank W., 2004. "From sectoral systems of innovation to socio-technical systems: Insights about dynamics and change from sociology and institutional theory," Research Policy, Elsevier, vol. 33(6-7), pages 897-920, September.
    6. Agarwal, Sumit & Rengarajan, Satyanarain & Sing, Tien Foo & Yang, Yang, 2017. "Nudges from school children and electricity conservation: Evidence from the “Project Carbon Zero” campaign in Singapore," Energy Economics, Elsevier, vol. 61(C), pages 29-41.
    7. Jain, Mansi & Siva, Vidushini & Hoppe, Thomas & Bressers, Hans, 2020. "Assessing governance of low energy green building innovation in the building sector: Insights from Singapore and Delhi," Energy Policy, Elsevier, vol. 145(C).
    8. Chan, Edwin H.W. & Qian, Queena K. & Lam, Patrick T.I., 2009. "The market for green building in developed Asian cities--the perspectives of building designers," Energy Policy, Elsevier, vol. 37(8), pages 3061-3070, August.
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