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评估工业垃圾填埋场附近土壤中潜在有毒金属(类)的污染及其对人类健康的影响:风险评估。

Assessment of potentially toxic metal(loid)s contamination in soil near the industrial landfill and impact on human health: an evaluation of risk.

机构信息

Department of Chemistry, University of Gujrat, Gujrat, Pakistan.

Department of Chemistry, Division of Science and Technology, University of Education, College Road, Lahore, Pakistan.

出版信息

Environ Geochem Health. 2023 Jul;45(7):4353-4369. doi: 10.1007/s10653-023-01499-7. Epub 2023 Feb 15.

Abstract

The generation of solid waste is increasing with each passing day due to rapid urbanization and industrialization and has become a matter of concern for the international community. Leachate leakages from landfills pollute the soil and can potentially harm the human health. In this paper, inductively coupled plasma-optical emission spectrometric studies were employed to assess and analyze the composition of metals (Ba, Cd, Pb, Hg, Cu, Cr and Mn) and metalloid (As) in soil samples. Results of Cr, Mn, Cu, As, Ba, Cd, Pb and Hg from CRM (certified reference material, SRM 2709a) of San Joaquin soil were evaluated and reported in terms of percent recoveries which were in the range of 97.6-102.9% and show outstanding extraction efficiency. Other than copper, where the permitted limit set by the EU is specified as 50-140 mg/kg in soil, the average amount of all the metals in soil was found within the permissible limits provided by WHO, the European Community (EU) and US EPA. Soil contaminated with Hg (PERI = 100) and Cd (PERI = 145.50) posed an ecological risk significantly. Pollution load index (PLI) value is greater than 1, while degree of contamination (C) value is less than 32 which indicated that the soil is polluted and considerably contaminated with metals and metalloid, respectively. In terms of the average daily dosage (ADD) of soil, children received the highest doses of all metals (ADD = 1.315 × 10- 2.470 × 10 and ADD = 9.939 × 10- 5.292 × 10), whereas ADD (1.409 × 10- 2.646 × 10) was found greater in adults. For all metals except for Ba, the hazard quotient (HQ) trend in both children and adults was observed to be HQ > HQ > HQ of soil. Children who are at the lower edge of cancer risk had a lifetime cancer risk (LCR) of 2.039 × 10 for Cr from various paths of soil exposure.

摘要

由于城市化和工业化的快速发展,固体废物的产生日益增加,这已成为国际社会关注的问题。垃圾填埋场的渗滤液会污染土壤,并可能对人类健康造成危害。在本文中,采用电感耦合等离子体-光学发射光谱法研究了土壤样品中金属(Ba、Cd、Pb、Hg、Cu、Cr 和 Mn)和类金属(As)的组成。评估并报告了来自圣华金土壤 CRM(认证参考物质,SRM 2709a)的 Cr、Mn、Cu、As、Ba、Cd、Pb 和 Hg 的结果,回收率在 97.6-102.9%范围内,显示出出色的提取效率。除了铜,欧盟规定的土壤中允许的限量为 50-140mg/kg,所有金属在土壤中的平均含量都在世界卫生组织、欧洲共同体(欧盟)和美国环保署规定的允许范围内。受 Hg(PERI=100)和 Cd(PERI=145.50)污染的土壤具有显著的生态风险。污染负荷指数(PLI)值大于 1,而污染程度(C)值小于 32,这表明土壤受到金属和类金属的污染,分别。就土壤的平均日剂量(ADD)而言,儿童摄入了所有金属的最高剂量(ADD=1.315×10-2.470×10 和 ADD=9.939×10-5.292×10),而成年人的 ADD(1.409×10-2.646×10)更高。对于除 Ba 之外的所有金属,儿童和成年人的危害商(HQ)趋势均为 HQ>HQ>HQ。通过各种土壤暴露途径,处于癌症风险低端的儿童终生癌症风险(LCR)为 Cr 的 2.039×10。

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