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Chlorite removal with granular activated carbon

机译:用颗粒活性炭去除亚氯酸盐

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摘要

Chlorite (ClO_2~-) is the dominant degradation by-product coming from chlorine dioxide reactions.Compliance to the maximum concentration of 200 mug/1,established by new Italian regulations for drinking water (D.Lgs.3172001),can be accomplished by reduction of chlorine dioxide dosage during water treatment or by chlorite removal.In this work granular activated carbon (GAC) as a technology for chlorite removal was investigated;particularly,the interference between chlorite and organic matter removal on GAC active sites and the applicability of a "chemical regeneration" process in order to improve GAC efficiency for organic matter and chlorite removal were studied.Different batch and column tests were performed,both on distilled and surface water spiked with chlorite;both on virgin,exhausted and thermally regenerated carbon;and on exhausted GAC after chemical regeneration by acid,basic and basic-acid solutions.The results demonstrate that GAC can be an efficient method for chlorite removal.
机译:亚氯酸盐(ClO_2~-)是来自二氧化氯反应的主要降解副产物。符合新的意大利饮用水法规 (D.Lgs.3172001) 规定的最大浓度 200 mug/1,可以通过在水处理过程中减少二氧化氯剂量或去除亚氯酸盐来实现。本文研究了颗粒活性炭(GAC)作为亚氯酸盐脱除技术;特别研究了亚氯酸盐和有机物去除对GAC活性位点的干扰,以及“化学再生”工艺对提高GAC有机物和亚氯酸盐去除效率的适用性。对蒸馏水和加绿泥石的地表水进行了不同的批次和塔测试;无论是在原始的、耗尽的还是热再生的碳上;以及用酸、碱和碱性酸溶液化学再生后耗尽的GAC。结果表明,GAC是一种有效的亚氯酸盐去除方法。

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