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Arsenic Removal from Groundwater and Its Safe Containment in a Rural Environment: Validation of a Sustainable Approach

机译:在农村环境中去除地下水中的砷及其安全控制措施:一种可持续方法的验证

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摘要

Of all the naturally occurring groundwater contaminants, arsenic is by far the most toxic. Any large-scale treatment strategy to remove arsenic from groundwater must take into consideration safe containment of the arsenic removed with no adverse ecological impact. Currently, 175 well-head community-based arsenic removal units are in operation in remote villages of the Indian subcontinent. Approximately 150,000 villagers collect arsenic-safe potable water everyday from these units. The continued safe operation of these units has amply demonstrated that use of regenerable arsenic-selective adsorbents is quite viable in remote locations. Upon exhaustion, the adsorbents are regenerated in a central facility by a few trained villagers and reused. The process of regeneration reduces the volume of disposable arsenic-laden solids by nearly 2 orders of magnitude. Finally, the arsenic-laden solids are contained on well-aerated coarse-sand filters with minimum arsenic leaching. This disposal technique is scientifically more appropriate than dumping arsenic-loaded adsorbents in the reducing environment of landfills as currently practiced in developed countries including the United States.
机译:在所有自然产生的地下水污染物中,砷是迄今为止毒性最高的。任何从地下水中去除砷的大规模处理策略都必须考虑安全地控制去除的砷,并且不会对生态产生不利影响。目前,在印度次大陆的偏远村庄中,有175个井口社区除砷装置在运行。每天大约有15万村民从这些单位收集砷安全的饮用水。这些装置的持续安全运行充分证明,在偏远地区使用可再生的砷选择性吸附剂是非常可行的。精疲力尽后,一些训练有素的村民在中央设施中将吸附剂再生,然后再利用。再生过程将一次性含砷固体的体积减少了近2个数量级。最后,载有砷的固体被包含在通风良好的粗砂滤池中,砷的浸出最少。与目前在发达国家(包括美国)实行的减少垃圾掩埋的环境中相比,这种处理技术在科学上比将砷吸附剂倾倒在更合适的环境中更为合适。

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