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Arsenic in drinking water - problems and solutions

机译:饮用水中的砷-问题与解决方案

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The current United States maximum contaminant level for arsenic in drinking water is set at 50 #mu#g/l. Because of the cancer risks involved, Canada has already lowered the maximum contaminant level to 25 #mu#g/l; the United States Environmental Protection Agency is reviewing the current allowable level for arsenic with a view of lowering it significantly. Various treatment methods have been adopted to remove arsenic from drinking water. These methods include 1) adsorption-coprecipitation using iron and aluminum salts, 2) adsorption on activated alumina, activated carbon, and activated bauxite, 3) reverse osmosis, 4) ion exchange and 5) oxidation followed by filtration. Because of the promise of oxidation-filtration systems, column studies were conducted at the University of Regina to examine oxidation with KMnO_4 followed by filtration using manganese greensand and iron-oxide coated sand to examine the removal of arsenic from drinking water; these results were compared with the data from ion exchange studies. These studies demonstrated that As (III) could be reduced from 200 #mu#g/l to below 25 #mu#g/l by the manganese greensand system. In the case of manganese greensand filtration, addition of iron in the ratio of 20:1 was found necessary to achieve this removal.
机译:当前美国饮用水中砷的最大污染物水平设置为50#mu#g / l。由于涉及的癌症风险,加拿大已经将最大污染物水平降低到25#mu#g / l。美国环境保护局正在审查目前的砷允许水平,以期将其大大降低。已经采用了各种处理方法来从饮用水中去除砷。这些方法包括:1)使用铁盐和铝盐的吸附-共沉淀; 2)在活性氧化铝,活性炭和活性铝土矿上的吸附; 3)反渗透; 4)离子交换; 5)氧化,然后过滤。由于有望使用氧化过滤系统,因此在里贾纳大学进行了柱研究,以检查KMnO_4的氧化作用,然后使用锰绿砂和氧化铁涂层的沙子进行过滤,以检查饮用水中砷的去除情况;将这些结果与离子交换研究的数据进行了比较。这些研究表明,锰绿砂体系可以将砷(III)从200#mu#g / l降至25#mu#g / l以下。在锰砂过滤的情况下,发现必须以20:1的比例添加铁才能实现这种去除。

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