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Regenerating an Arsenic Removal Iron-Based Adsorptive Media System, Part 2: Performance and Cost

机译:再生除砷铁基吸附介质系统,第2部分:性能和成本

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Replacement of exhausted, adsorptive media used to remove arsenic from drinking water accounts for approximately 80% of total operational and maintenance costs of this commonly used small system technology. Results of three full-scale system studies of an onsite media regeneration process (discussed in the first article of this two-part series) showed it to be effective in stripping arsenic and other contaminants from a granular ferric oxide (GFO) exhausted adsorptive media. This second article details the performance of the regenerated media to remove arsenic through multiple regeneration cycles and the approximate cost savings of regeneration over media replacement. Results indicated that media regeneration did not appear to have a major detrimental effect on the performance of the GFO media, and the regeneration cost was potentially less than the media replacement cost. Therefore, onsite regeneration offers small systems a possible alternative to media replacement when removing arsenic from drinking water using iron-based adsorptive media technology.
机译:在这种常用的小型系统技术中,用于从饮用水中去除砷的耗尽的吸附性介质的更换约占总运营和维护成本的80%。对现场介质再生过程进行的三项全面系统研究的结果(在该两部分系列的第一篇文章中进行了讨论)表明,该方法可有效去除颗粒状三氧化二铁(GFO)吸附性介质中的砷和其他污染物。第二篇文章详细介绍了再生介质通过多个再生循环去除砷的性能,以及通过介质更换节省的再生成本。结果表明,介质再生对GFO介质的性能似乎没有重大不利影响,并且再生成本可能低于介质更换成本。因此,当使用铁基吸附介质技术从饮用水中去除砷时,现场再生为小型系统提供了一种替代介质的替代方法。

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