Effects of street plants on atmospheric particulate dispersion in urban streets: A review

IF 5.7 3区 环境科学与生态学 Q1 Environmental Science
Xiaoshuang Wang, Zhixiang Zhou, Yang Xiang, Chucai Peng, Changhui Peng
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Abstract

Numerous empirical studies have demonstrated that street trees not only reduce dust pollution and absorb particulate matter (PM) but also improve microclimates, providing both ecological functions and aesthetic value. However, recent research has revealed that street tree canopy cover can impede the dispersion of atmospheric PM within street canyons, leading to the accumulation of street pollutants. Although many studies have investigated the impact of street trees on air pollutant dispersion within street canyons, the extent of their influence remains unclear and uncertain. Pollutant accumulation corresponds to the specific characteristics of individual street canyons, coupled with meteorological factors and pollution source strength. Notably, the characteristics of street tree canopy cover also exert a significant influence. There is still a quantitative research gap on street tree cover impacts with respect to pollution and dust reduction control measures within street spaces. To improve urban traffic environments, policymakers have mainly focused on scientifically based street vegetation deployment initiatives in building ecological garden cities and improving the living environment. To address uncertainties regarding the influence of street trees on the dispersion of atmospheric PM in urban streets, this study reviews dispersion mechanisms and key atmospheric PM factors in urban streets, summarizes the research approaches used to conceptualize atmospheric PM dispersion in urban street canyons, and examines urban plant efficiency in reducing atmospheric PM. Furthermore, we also address current challenges and future directions in this field to provide a more comprehensive understanding of atmospheric PM dispersion in urban streets and the role that street trees play in mitigating air pollution.
街道植物对城市街道大气颗粒物扩散的影响:综述
大量实证研究表明,行道树不仅能减少粉尘污染、吸收颗粒物质(PM),还能改善微气候,提供生态功能和美学价值。然而,最近的研究发现,行道树树冠覆盖会阻碍大气中可吸入颗粒物在街道峡谷内的扩散,从而导致街道污染物的积累。尽管许多研究都调查了行道树对街道峡谷内空气污染物扩散的影响,但其影响程度仍不明确、不确定。污染物的积累与各个街道峡谷的具体特征、气象因素和污染源强度有关。值得注意的是,行道树树冠覆盖的特征也会产生重要影响。关于行道树覆盖对街道空间内的污染和降尘控制措施的影响,目前仍存在定量研究方面的空白。为改善城市交通环境,政策制定者在建设生态园林城市和改善人居环境方面主要关注科学的街道植被部署举措。针对行道树对城市街道大气可吸入颗粒物扩散影响的不确定性,本研究回顾了城市街道大气可吸入颗粒物的扩散机制和关键因素,总结了城市街道峡谷大气可吸入颗粒物扩散概念的研究方法,并探讨了城市植物在减少大气可吸入颗粒物方面的效率。此外,我们还探讨了这一领域目前面临的挑战和未来的发展方向,以便更全面地了解城市街道大气中可吸入颗粒物的扩散情况以及行道树在减轻空气污染方面发挥的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Environmental Reviews
Environmental Reviews ENVIRONMENTAL SCIENCES-
CiteScore
9.80
自引率
3.50%
发文量
45
审稿时长
>12 weeks
期刊介绍: Published since 1993, Environmental Reviews is a quarterly journal that presents authoritative literature reviews on a wide range of environmental science and associated environmental studies topics, with emphasis on the effects on and response of both natural and manmade ecosystems to anthropogenic stress. The authorship and scope are international, with critical literature reviews submitted and invited on such topics as sustainability, water supply management, climate change, harvesting impacts, acid rain, pesticide use, lake acidification, air and marine pollution, oil and gas development, biological control, food chain biomagnification, rehabilitation of polluted aquatic systems, erosion, forestry, bio-indicators of environmental stress, conservation of biodiversity, and many other environmental issues.
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