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Degradability of hexachlorocyclohexanes in water using ferrate (VI)

机译:使用高铁酸盐(VI)降解六氯环己烷

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摘要

Regarding environmental pollution, the greatest public and scientific concern is aimed at the pollutants listed under the Stockholm Convention. These pollutants are not only persistent but also highly toxic with a high bioaccumulation potential. One of these pollutants,gamma-hexachlorocyclohexane (gamma-HCH), has been widely used in agriculture, which has resulted in wide dispersion in the environment. Remediation of this persistent and hazardous pollutant is difficult and remains unresolved. Of the many different approaches tested, to date, none has used ferrates. This is unexpected as ferrates are generally believed to be an ideal chemical reagent for water treatment due to their strong oxidation potential and the absence of harmful by-products. In this paper, the degradation/transformation of HCHs by ferrates under laboratory conditions was studied. HCH was degraded during this reaction, producing trichlorobenzenes and pentachlorocyclohexenes as by-products. A detailed investigation of pH conditions during Fe(VI) application identified pH as the main factor affecting degradation. We conclude that ferrate itself is unreactive with HCH and that high pH values, produced by K2O impurity and the reaction of ferrate with water, are responsible for HCH transformation. Finally, a comparison of Fe(VI) with Fe(0) is provided in order to suggest their environmental applicability for HCH degradation.
机译:关于环境污染,最大的公共和科学关注点是针对《斯德哥尔摩公约》所列的污染物。这些污染物不仅具有持久性,而且具有很高的生物蓄积潜力,并且具有很高的毒性。 γ-六氯环己烷(γ-HCH)是其中一种污染物,已广泛用于农业中,导致其在环境中的广泛分散。这种持久性和有害污染物的修复非常困难,并且仍未解决。迄今为止,在测试的许多不同方法中,没有一个使用高铁酸盐。这是出乎意料的,因为通常认为高铁酸盐由于其强的氧化潜力和不存在有害的副产物而成为用于水处理的理想化学试剂。本文研究了高铁酸盐在实验室条件下对六氯环己烷的降解/转化。六氯环己烷在该反应过程中被降解,生成三氯苯和五氯环己烯作为副产物。 Fe(VI)施用过程中对pH条件的详细研究确定pH是影响降解的主要因素。我们得出的结论是,高铁酸盐本身与六氯环己烷没有反应,并且由K2O杂质和高铁酸盐与水的反应产生的高pH值是HCH转化的原因。最后,提供了Fe(VI)与Fe(0)的比较,以表明它们在环境中对六氯环己烷降解的适用性。

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