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采矿区的砷:环境污染物的传播途径。

Arsenic in Mining Areas: Environmental Contamination Routes.

机构信息

Instituto de Ciência, Engenharia e Tecnologia (ICET), Universidade Federal dos Vales do Jequitinhonha e Mucuri (UFVJM), Teófilo Otoni 39803-371, MG, Brazil.

Analytical and System Toxicology Laboratory, Department of Clinical Analyses, Toxicology and Food Sciences, School of Pharmaceutical Sciences of Ribeirao Preto, University of Sao Paulo, Ribeirao Preto 14040-903, SP, Brazil.

出版信息

Int J Environ Res Public Health. 2023 Feb 28;20(5):4291. doi: 10.3390/ijerph20054291.

Abstract

The emission and accumulation of toxic elements such as arsenic in various environmental compartments have become increasingly frequent primarily due to anthropogenic actions such as those observed in agricultural, industrial, and mining activities. An example of environmental arsenic contamination in Brazil exists in the city of Paracatu, MG, due to the operation of a gold mine. The aim of this work is to evaluate the routes and effects of arsenic contamination in environmental compartments (air, water, and soil) and environmental organisms (fish and vegetables) from mining regions as well as the trophic transfer of the element for a risk assessment of the population. In this study, high levels of arsenic were found in the waters of the Rico stream ranging from 4.05 µg/L during the summer season to 72.4 µg/L during the winter season. Moreover, the highest As concentration was 1.668 mg kg in soil samples, which are influenced by seasonal variation and by proximity to the gold mine. Inorganic and organic arsenic species were found above the allowed limit in biological samples, indicating the transfer of arsenic found in the environment and demonstrating a great risk to the population exposed to this area. This study demonstrates the importance of environmental monitoring to diagnose contamination and encourage the search for new interventions and risk assessments for the population.

摘要

由于农业、工业和采矿等人类活动的影响,砷等有毒元素在各种环境介质中的排放和积累变得越来越频繁。巴西帕拉卡图市(MG)由于金矿的开采而受到环境砷污染,就是一个典型的例子。本研究的目的是评估采矿区环境介质(空气、水和土壤)和环境生物(鱼类和蔬菜)中砷污染的途径和影响,以及该元素的营养转移,以评估人群的风险。在这项研究中,里科溪(Rico stream)的水中发现了高水平的砷,其范围从夏季的 4.05 µg/L 到冬季的 72.4 µg/L。此外,土壤样本中的砷浓度最高为 1.668 mg/kg,这受到季节性变化和靠近金矿的影响。生物样本中的无机和有机砷含量超过了允许的限度,表明环境中砷的转移,并表明暴露在该地区的人群面临着巨大的风险。这项研究表明了环境监测在诊断污染和鼓励寻找新的干预措施和风险评估方面的重要性。

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