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中国上海土壤-灰尘-植物多介质中汞的赋存、分布及风险评估。

Occurrence, Distribution and Risk Assessment of Mercury in Multimedia of Soil-Dust-Plants in Shanghai, China.

机构信息

Key Laboratory of Geographic Information Science (Ministry of Education), East China Normal University, Shanghai 200241, China.

School of Geographic Sciences, East China Normal University, Shanghai 200241, China.

出版信息

Int J Environ Res Public Health. 2019 Aug 21;16(17):3028. doi: 10.3390/ijerph16173028.

Abstract

The urban environment is a complex ecosystem influenced by strong human disturbances in multi-environmental media, so it is necessary to analyze urban environmental pollutants through the comprehensive analysis of different media. Soil, road dust, foliar dust, and camphor leaves from 32 sample sites in Shanghai were collected for the analysis of mercury contamination in soil-road dust-leaves-foliar dust systems. Mercury concentrations in surface soils in Shanghai were the highest, followed by road dust, foliar dust, and leaves, successively. The spatial distribution of mercury in the four environmental media presented different distribution patterns. Except for the significant correlation between mercury concentrations in road dust and mercury concentrations in leaves (r = 0.56, < 0.001), there was no significant correlation between the other groups in the four media. Besides this, there was no significant correlation between mercury concentrations and land types. The LUR (Land use regression) model was used to assess the impact of urbanization factors on mercury distribution in the environment. The results showed that soil mercury was affected by factories and residential areas. Foliar dust mercury was affected by road density and power plants. Leaf mercury was affected by power plants and road dust mercury was affected by public service areas. The highest average HI (Hazard index) value of mercury in Shanghai was found in road dust, followed by surface soil and foliar dust. The HI values for children were much higher than those for adults. However, the HI values of mercury exposure in all sampling sites were less than one, suggesting a lower health risk level. The microscopic mechanism of mercury in different environmental media was suggested to be studied further in order to learn the quantitative effects of urbanization factors on mercury concentrations.

摘要

城市环境是一个受强烈人为干扰的复杂生态系统,在多环境介质中,因此有必要通过对不同介质的综合分析来分析城市环境污染物。本研究采集了上海市 32 个采样点的土壤、道路灰尘、叶尘和樟树叶,分析土壤-道路灰尘-叶尘系统中的汞污染。上海表层土壤中汞的浓度最高,其次是道路灰尘、叶尘和叶片。四种环境介质中汞的空间分布呈现出不同的分布模式。除了道路灰尘中的汞浓度与叶片中的汞浓度之间存在显著相关性(r=0.56,<0.001)外,其他三种介质之间均无显著相关性。此外,汞浓度与土地类型之间也无显著相关性。采用 LUR(土地利用回归)模型评估了城市化因素对环境中汞分布的影响。结果表明,土壤汞受工厂和居民区的影响,叶尘汞受道路密度和电厂的影响,叶片汞受电厂的影响,而道路灰尘汞受公共服务区的影响。上海汞的 HI(危害指数)平均值最高的是道路灰尘,其次是表层土壤和叶尘。儿童的 HI 值远高于成人。然而,所有采样点的汞暴露 HI 值均小于 1,表明健康风险水平较低。建议进一步研究不同环境介质中汞的微观机制,以了解城市化因素对汞浓度的定量影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/312c/6747141/2c1d2b7311b5/ijerph-16-03028-g001.jpg

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