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The Role of Urban Green Spaces in Mitigating the Urban Heat Island Effect: A Systematic Review from the Perspective of Types and Mechanisms

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  • Haoqiu Lin

    (Department of Life Sciences, Beijing Normal-Hong Kong Baptist University, Zhuhai 519087, China)

  • Xun Li

    (Department of Life Sciences, Beijing Normal-Hong Kong Baptist University, Zhuhai 519087, China)

Abstract

Due to rising temperatures, energy use, and thermal discomfort, urban heat islands (UHIs) pose a serious environmental threat to urban sustainability. This systematic review synthesizes peer-reviewed literature on various forms of green infrastructure and their mechanisms for mitigating UHI effects, and the function of urban green spaces (UGSs) in reducing the impact of UHI. In connection with urban parks, green roofs, street trees, vertical greenery systems, and community gardens, important mechanisms, including shade, evapotranspiration, albedo change, and ventilation, are investigated. This study emphasizes how well these strategies work to lower city temperatures, enhance air quality, and encourage thermal comfort. For instance, the findings show that green areas, including parks, green roofs, and street trees, can lower air and surface temperatures by as much as 5 °C. However, the efficiency of cooling varies depending on plant density and spatial distribution. While green roofs and vertical greenery systems offer localized cooling in high-density urban settings, urban forests and green corridors offer thermal benefits on a larger scale. To maximize their cooling capacity and improve urban resilience to climate change, the assessment emphasizes the necessity of integrating UGS solutions into urban planning. To improve the implementation and efficacy of green spaces, future research should concentrate on policy frameworks and cutting-edge technology such as remote sensing.

Suggested Citation

  • Haoqiu Lin & Xun Li, 2025. "The Role of Urban Green Spaces in Mitigating the Urban Heat Island Effect: A Systematic Review from the Perspective of Types and Mechanisms," Sustainability, MDPI, vol. 17(13), pages 1-26, July.
  • Handle: RePEc:gam:jsusta:v:17:y:2025:i:13:p:6132-:d:1694507
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    References listed on IDEAS

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    1. Lawrence A. Palinkas & Michael S. Hurlburt & Cecilia Fernandez & Jessenia De Leon & Kexin Yu & Erika Salinas & Erika Garcia & Jill Johnston & Md. Mostafijur Rahman & Sam J. Silva & Rob S. McConnell, 2022. "Vulnerable, Resilient, or Both? A Qualitative Study of Adaptation Resources and Behaviors to Heat Waves and Health Outcomes of Low-Income Residents of Urban Heat Islands," IJERPH, MDPI, vol. 19(17), pages 1-19, September.
    2. Wang, Zhi-Hua & Zhao, Xiaoxi & Yang, Jiachuan & Song, Jiyun, 2016. "Cooling and energy saving potentials of shade trees and urban lawns in a desert city," Applied Energy, Elsevier, vol. 161(C), pages 437-444.
    3. Rong Huang & Mei Yang & Guohua Lin & Xiaoyan Ma & Xuan Wang & Qian Huang & Tian Zhang, 2022. "Cooling Effect of Green Space and Water on Urban Heat Island and the Perception of Residents: A Case Study of Xi’an City," IJERPH, MDPI, vol. 19(22), pages 1-19, November.
    4. Kong, Gaowen & Wang, Shuai & Wang, Yanan, 2022. "Fostering firm productivity through green finance: Evidence from a quasi-natural experiment in China," Economic Modelling, Elsevier, vol. 115(C).
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