PM2.5-bound elements in Hebei Province, China: Pollution levels, source apportionment and health risks

冶炼 煤燃烧产物 分摊 燃烧 环境科学 环境化学 污染 健康风险评估 微粒 气溶胶 化学 环境卫生 健康风险 环境工程 废物管理 工程类 有机化学 法学 政治学 生物 医学 生态学
作者
Xing Li,Caiqing Yan,Chunying Wang,MA Jing-jin,Wanxin Li,Junyi Liu,Yue Liu
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:806 (Pt 1): 150440-150440 被引量:81
标识
DOI:10.1016/j.scitotenv.2021.150440
摘要

Particle-bound elements have attracted increasing attentions due to their health effects and atmospheric catalytic reactivity. However, elements in atmospheric fine particulate matter (PM2.5) have not been well investigated even in some highly polluted area. In this study, 22 elements in PM2.5 were measured by a multi-metal monitor in ten prefecture-level and county-level cities in Hebei province, one of the most polluted provinces in China, during the heating and non-heating seasons. Source apportionment of PM2.5-bound elements were conducted, and health risks of individual elements and different sources were assessed. The results showed that, total elements (TEs) measured contributed to 2%-7% of the PM2.5 mass, with potassium (K), calcium (Ca), iron (Fe), and zinc (Zn) as the most abundant elements, accounting for about 71%- 87% of TEs mass. Concentrations of chromium (Cr), arsenic (As), and cadmium (Cd) were more likely to exceed the World Health Organization (WHO) limits. Source apportionment results indicated that PM2.5-bound elements were primarily from coal combustion, dust, traffic, ferrous metal smelting and oil combustion, and other industrial related sources. Therein, ferrous metal smelting and oil combustion, coal combustion and industry were the predominant source of Cr, As and Cd, respectively. Health risk assessment indicated that the carcinogenic and non-carcinogenic risks of As for children could exceed the precautionary criteria, and coal combustion source had the highest carcinogenic and non-carcinogenic risks. This study suggested that attentions should be paid not only on PM2.5 mass but also PM2.5-bound compounds especially heavy metals and metalloids to reduce health risks in the future.
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