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危地马拉奇马尔特南戈的地下水砷含量

Groundwater arsenic in Chimaltenango, Guatemala.

作者信息

Lotter Jason T, Lacey Steven E, Lopez Ramon, Socoy Set Genaro, Khodadoust Amid P, Erdal Serap

机构信息

School of Public Health, Environmental and Occupational Health Sciences Division, University of Illinois at Chicago, 2121 W Taylor Street, Chicago, IL 60612, USA.

Fairbanks School of Public Health, Department of Environmental Health Science, Indiana University, 714 N Senate Avenue, Indianapolis, IN 46202, USA E-mail:

出版信息

J Water Health. 2014 Sep;12(3):533-42. doi: 10.2166/wh.2013.100.

Abstract

In the Municipality of Chimaltenango, Guatemala, we sampled groundwater for total inorganic arsenic. In total, 42 samples were collected from 27 (43.5%) of the 62 wells in the municipality, with sites chosen to achieve spatial representation throughout the municipality. Samples were collected from household faucets used for drinking water, and sent to the USA for analysis. The only site found to have a concentration above the 10 μg/L World Health Organization provisional guideline for arsenic in drinking water was Cerro Alto, where the average concentration was 47.5 μg/L. A health risk assessment based on the arsenic levels found in Cerro Alto showed an increase in noncarcinogenic and carcinogenic risks for residents as a result of consuming groundwater as their primary drinking water source. Using data from the US Geological Survey and our global positioning system data of the sample locations, we found Cerro Alto to be the only site sampled within the tertiary volcanic rock layer, a known source of naturally occurring arsenic. Recommendations were made to reduce the levels of arsenic found in the community's drinking water so that the health risks can be managed.

摘要

在危地马拉的奇马尔特南戈市,我们采集了地下水样本以检测总无机砷含量。该市共有62口井,我们从其中27口井(占43.5%)采集了总共42个样本,采样地点的选择旨在实现全市范围内的空间代表性。样本取自用于饮用水的家庭水龙头,并送往美国进行分析。唯一一处砷浓度超过世界卫生组织10μg/L饮用水中砷临时准则的地点是塞罗阿尔托,那里的平均浓度为47.5μg/L。基于塞罗阿尔托发现的砷含量进行的健康风险评估表明,居民将地下水作为主要饮用水源会导致非致癌和致癌风险增加。利用美国地质调查局的数据以及我们样本地点的全球定位系统数据,我们发现塞罗阿尔托是三级火山岩层内唯一采样的地点,而三级火山岩层是天然砷的已知来源。我们提出了降低社区饮用水中砷含量的建议,以便管理健康风险。

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