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中国华北综合性工业城市道路细颗粒物中潜在有毒元素的来源特定风险判断和环境影响

Source-specific risk judgement and environmental impact of potentially toxic elements in fine road dust from an integrated industrial city, North China.

机构信息

Department of Environmental Science, School of Geography and Tourism, Shaanxi Normal University, Xi'an 710119, China.

Department of Environmental Science, School of Geography and Tourism, Shaanxi Normal University, Xi'an 710119, China.

出版信息

J Hazard Mater. 2023 Sep 15;458:131982. doi: 10.1016/j.jhazmat.2023.131982. Epub 2023 Jun 30.

DOI:10.1016/j.jhazmat.2023.131982
PMID:37413801
Abstract

The contamination of potentially toxic elements (PTEs) in road dust of large industrial cities is extremely serious. Determining the priority risk control factors of PTE contamination in road dust is critical to enhance the environmental quality of such cities and mitigate the risk of PTE pollution. The Monte Carlo simulation (MCS) method and geographical models were employed to assess the probabilistic pollution levels and eco-health risks of PTEs originating from different sources in fine road dust (FRD) of large industrial cities, and to identify key factors affecting the spatial variability of priority control sources and target PTEs. It was observed that in FRD of Shijiazhuang, a typical large industrial city in China, more than 97% of the samples had an INI > 1 (INI = 1.8), indicating moderately contaminated with PTEs. The eco-risk was at least considerable (NCRI >160) with more than 98% of the samples, mainly caused by Hg (E = 367.3). The coal-related industrial source (NCRI = 235.1) contributed 70.9% to the overall eco-risk (NCRI = 295.5) of source-oriented risks. The non-carcinogenic risk of children and adults are of less importance, but the carcinogenic risk deserves attention. The coal-related industry is a priority control pollution source for human health protection, with As corresponding to the target PTE. The major factors affecting the spatial changes of target PTEs (Hg and As) and coal-related industrial sources were plant distribution, population density, and gross domestic product. The hot spots of coal-related industrial sources in different regions were strongly interfered by various human activities. Our results illustrate spatial changes and key-influencing factors of priority source and target PTEs in Shijiazhuang FRD, which are helpful for environmental protection and control of environmental risks by PTEs.

摘要

道路灰尘中潜在有毒元素(PTEs)的污染极其严重。确定道路灰尘中 PTE 污染的优先风险控制因素对于提高这些城市的环境质量、减轻 PTE 污染风险至关重要。本研究采用蒙特卡罗模拟(MCS)方法和地理模型,评估了来自中国典型大型工业城市石家庄细道路灰尘(FRD)中不同来源 PTE 的概率污染水平和生态健康风险,并识别了影响优先控制源和目标 PTE 空间变异性的关键因素。结果表明,在中国典型的大型工业城市石家庄的 FRD 中,超过 97%的样本 INI>1(INI=1.8),表明 PTE 中度污染。超过 98%的样本生态风险至少是相当大的(NCRI>160),主要由 Hg(E=367.3)引起。与煤相关的工业源(NCRI=235.1)对源于源的风险的总生态风险(NCRI=295.5)的贡献为 70.9%。儿童和成人的非致癌风险并不重要,但致癌风险值得关注。与煤相关的工业是保护人类健康的优先控制污染源,目标 PTE 为 As。影响目标 PTE(Hg 和 As)和与煤相关的工业源空间变化的主要因素是植物分布、人口密度和国内生产总值。不同地区与煤相关的工业源热点受到各种人类活动的强烈干扰。本研究结果说明了石家庄 FRD 中优先源和目标 PTE 的空间变化和关键影响因素,有助于环境保护和 PTE 环境风险的控制。

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