Estimating Heat-Related Mortality Burden Changes under Type-Specific Green and Blue Space Scenarios in China

中国 环境科学 空格(标点符号) 环境卫生 自然资源经济学 医学 地理 计算机科学 经济 考古 操作系统
作者
Kejia Hu,Shi‐Yi Wang,Fangrong Fei,Jingqiao Fu,Yujie Shen,Feng Chen,Yunquan Zhang,Jian Cheng,Zutao Ouyang,Jieming Zhong,Yuming Guo,Jiayu Wu
出处
期刊:Environmental Health Perspectives [National Institute of Environmental Health Sciences]
卷期号:133 (5): 57012-57012 被引量:3
标识
DOI:10.1289/ehp14014
摘要

BACKGROUND: Green and blue spaces (GBS) are assumed to mitigate heat-induced health risks. However, few studies have explored the impact of type-specific GBS changes on heat-related mortality burden. OBJECTIVES: This study aimed to investigate the effect modifications of different GBS types on heat-related mortality risks, and to estimate the changes in mortality burden in multiple GBS scenarios. METHODS: A case time-series study design was utilized based on the daily data on all-cause mortality and temperatures from 2009 to 2020 in 1,085 subdistricts in China. Mortality count data were obtained from the Zhejiang Center for Disease Control and Prevention. Meteorological data on temperature and relative humidity were acquired from the Zhejiang Meteorological Bureau. GBS exposure was assessed by integrating fine-scale population density, GBS boundary from Baidu and OpenStreetMap, and street-view image data from Baidu. Conditional Poisson regression analyses were conducted with the distributed lag nonlinear model, incorporating modifiers of type-specific GBS exposure. Changes in heat-attributable mortality under different GBS scenarios were also assessed. RESULTS: ) to overall blue spaces, lakes, and rivers, rather than reservoirs, wetlands, or coasts. Increases of 10%, 20%, and 30% exposure to overall green spaces are expected to avoid heat-related mortality burden by 1.6% [95% empirical confidence interval (eCI): 1.4, 1.9, 3.2% (95% eCI: 2.5, 3.9), and 4.8% (95% eCI: 3.5, 6.2)], respectively, whereas corresponding estimates for overall blue spaces are 5.4% (95% eCI: 4.4, 6.4), 10.8% (95% eCI: 8.5, 13.3), and 16.2% (95% eCI: 12.3, 20.5), respectively. Conversely, a 30% decrease in overall green space exposure and overall blue space exposure will increase the heat-related mortality burden by 4.8% (95% eCI: 4.3, 5.2) and 15.9% (95% eCI: 15.2, 16.7), respectively. DISCUSSION: Our study revealed differences in the capacity of various GBS types to mitigate heat-related mortality risks. While the protective effects of GBS may be moderate, targeted planning strategies should prioritize their implementation for maximum benefits in mitigating heat-related health risks. The continuous shrinkage of the GBS would render other efforts futile, such as heat-health action plans. https://doi.org/10.1289/EHP14014.
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