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印度西孟加拉邦地下水中的砷:对人类健康风险的评估及可能干预方案的回顾。

Arsenic in groundwater of West Bengal, India: A review of human health risks and assessment of possible intervention options.

机构信息

Kolkata Zonal Center, CSIR-National Environmental Engineering Research Institute (NEERI), Kolkata, West Bengal 700107, India.

Kolkata Zonal Center, CSIR-National Environmental Engineering Research Institute (NEERI), Kolkata, West Bengal 700107, India.

出版信息

Sci Total Environ. 2018 Jan 15;612:148-169. doi: 10.1016/j.scitotenv.2017.08.216. Epub 2017 Sep 1.

Abstract

This paper reviews how active research in West Bengal has unmasked the endemic arsenism that has detrimental effects on the health of millions of people and their offspring. It documents how the pathways of exposure to this toxin/poison have been greatly expanded through intensive application of groundwater in agriculture in the region within the Green Revolution framework. A goal of this paper is to compare and contrast the similarities and differences in arsenic occurrence in West Bengal with those of other parts of the world and assess the unique socio-cultural factors that determine the risks of exposure to arsenic in local groundwater. Successful intervention options are also critically reviewed with emphasis on integrative strategies that ensure safe water to the population, proper nutrition, and effective ways to reduce the transfer of arsenic from soil to crops. While no universal model may be suited for the vast areas of the world affected with by natural contamination of groundwater with arsenic, we have emphasized community-specific sustainable options that can be adapted. Disseminating scientifically correct information among the population coupled with increased community level participation and education are recognized as necessary adjuncts for an engineering intervention to be successful and sustainable.

摘要

本文回顾了西孟加拉邦的积极研究如何揭示了地方性砷中毒,这对数百万人及其后代的健康造成了不利影响。本文记录了在绿色革命框架内,该地区通过地下水在农业中的密集应用,接触这种毒素/毒物的途径如何大大扩大。本文的目标之一是比较和对比西孟加拉邦砷的发生情况与世界其他地区的相似之处和不同之处,并评估决定当地地下水砷暴露风险的独特社会文化因素。本文还批判性地审查了成功的干预选择,重点是确保人口安全用水、适当营养以及有效减少砷从土壤向作物转移的综合策略。虽然没有一种普遍适用的模式可能适合受地下水自然砷污染影响的世界广大地区,但我们强调了可以适应的特定于社区的可持续选择。在人群中传播科学正确的信息,以及增加社区一级的参与和教育,被认为是成功和可持续的工程干预的必要辅助手段。

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