Public health impacts of air pollution from the spatiotemporal heterogeneity perspective: 31 provinces and municipalities in China from 2013 to 2020.

Yizhong Ye, Qunshan Tao, Hua Wei
Author Information
  1. Yizhong Ye: School of Hospital Economics and Management, Anhui University of Chinese Medicine, Hefei, China.
  2. Qunshan Tao: School of Hospital Economics and Management, Anhui University of Chinese Medicine, Hefei, China.
  3. Hua Wei: School of Hospital Economics and Management, Anhui University of Chinese Medicine, Hefei, China.

Abstract

Air pollution has long been a significant environmental health issue. Previous studies have employed diverse methodologies to investigate the impacts of air pollution on public health, yet few have thoroughly examined its spatiotemporal heterogeneity. Based on this, this study investigated the spatiotemporal heterogeneity of the impacts of air pollution on public health in 31 provinces in China from 2013 to 2020 based on the theoretical framework of multifactorial health decision-making and combined with the spatial durbin model and the geographically and temporally weighted regression model. The findings indicate that: (1) Air pollution and public health as measured by the incidence of respiratory diseases (IRD) in China exhibit significant spatial positive correlation and local spatial aggregation. (2) Air pollution demonstrates noteworthy spatial spillover effects. After controlling for economic development and living environment factors, including disposable income, population density, and urbanization rate, the direct and indirect spatial impacts of air pollution on IRD are measured at 3.552 and 2.848, correspondingly. (3) China's IRD is primarily influenced by various factors such as air pollution, economic development, living conditions, and healthcare, and the degree of its influence demonstrates an uneven spatiotemporal distribution trend. The findings of this study hold considerable practical significance for mitigating air pollution and safeguarding public health.

Keywords

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MeSH Term

China
Air Pollution
Humans
Public Health
Spatio-Temporal Analysis
Cities
Respiratory Tract Diseases
Environmental Exposure

Word Cloud

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