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Urban Vegetation Types are Not Perceived Equally in Providing Ecosystem Services and Disservices

Author

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  • Zuzana Drillet

    (ETH Zurich, Future Cities Laboratory, Singapore-ETH Centre, 1 Create Way, #06-01 CREATE Tower, Singapore 138602, Singapore
    The first and second author contribute equally.)

  • Tze Kwan Fung

    (ETH Zurich, Future Cities Laboratory, Singapore-ETH Centre, 1 Create Way, #06-01 CREATE Tower, Singapore 138602, Singapore
    The first and second author contribute equally.)

  • Rachel Ai Ting Leong

    (ETH Zurich, Future Cities Laboratory, Singapore-ETH Centre, 1 Create Way, #06-01 CREATE Tower, Singapore 138602, Singapore)

  • Uma Sachidhanandam

    (Republic Polytechnic, 9 Woodlands Ave 9, Singapore 738964, Singapore)

  • Peter Edwards

    (ETH Zurich, Future Cities Laboratory, Singapore-ETH Centre, 1 Create Way, #06-01 CREATE Tower, Singapore 138602, Singapore)

  • Daniel Richards

    (ETH Zurich, Future Cities Laboratory, Singapore-ETH Centre, 1 Create Way, #06-01 CREATE Tower, Singapore 138602, Singapore)

Abstract

Urban vegetation is important in providing ecosystem services to people. Different urban vegetation types provide contrasting suites of ecosystem services and disservices. Understanding public perceptions of the ecosystem services and disservices can therefore play an important role in shaping the planning and management of urban areas. We conducted an online survey (n = 1000) to understand how residents in the tropical city of Singapore perceived urban vegetation and the associated ecosystem services and disservices. The questionnaire was designed to explore whether different urban vegetation types (grass, shrubs, trees, trees over shrubs, and secondary forest) were perceived as equal in providing benefits. Respondents considered ecosystem services provided by urban vegetation to be more important than disservices. Among ecosystem services, regulating services were most highly rated, with more than 80% of the respondents appreciating urban vegetation for providing shade and improving air quality. Respondents recognized that different vegetation types provided different ecosystem services. For example, secondary forest was most commonly associated with education and wildlife, while trees were strongly associated with cooling and air quality. We conclude that in developing plans and designs for urban vegetation and ecosystem services, it is important to understand the perceptions, priorities, and concerns of residents.

Suggested Citation

  • Zuzana Drillet & Tze Kwan Fung & Rachel Ai Ting Leong & Uma Sachidhanandam & Peter Edwards & Daniel Richards, 2020. "Urban Vegetation Types are Not Perceived Equally in Providing Ecosystem Services and Disservices," Sustainability, MDPI, vol. 12(5), pages 1-14, March.
  • Handle: RePEc:gam:jsusta:v:12:y:2020:i:5:p:2076-:d:329930
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    Cited by:

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    3. Nanamhla Gwedla & Susanna Francina A. Cornelius & Marié J. Du Toit & Sarel S. Cilliers, 2022. "Stakeholder Perceptions of the Ecosystem Services of Health Clinic Gardens in Settlements and Small- to Medium-Sized Cities in the North-West Province, South Africa," Land, MDPI, vol. 11(11), pages 1-20, October.
    4. Kathryn Rodgman, Mary & Anguelovski, Isabelle & Pérez-del-Pulgar, Carmen & Shokry, Galia & Garcia-Lamarca, Melissa & Connolly, James J.T. & Baró, Francesc & Triguero-Mas, Margarita, 2024. "Perceived urban ecosystem services and disservices in gentrifying neighborhoods: Contrasting views between community members and state informants," Ecosystem Services, Elsevier, vol. 65(C).
    5. Hui, Ling Chui & Jim, C.Y., 2022. "Urban-greenery demands are affected by perceptions of ecosystem services and disservices, and socio-demographic and environmental-cultural factors," Land Use Policy, Elsevier, vol. 120(C).
    6. Nápoles-Vértiz, Sonia & Caro-Borrero, Angela, 2024. "Conceptual diversity and application of ecosystem services and disservices: A systematic review," Ecosystem Services, Elsevier, vol. 67(C).
    7. Corey Flude & Alexandra Ficht & Frydda Sandoval & Eric Lyons, 2022. "Development of an Urban Turfgrass and Tree Carbon Calculator for Northern Temperate Climates," Sustainability, MDPI, vol. 14(19), pages 1-14, September.

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