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Degradation of aldrin in adsorbed system using advanced oxidation processes: comparison of the treatment methods

机译:使用先进的氧化工艺降解吸附系统中的艾氏剂:比较处理方法

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In this study, Fenton, UV/Fenton, UV/H_2O_2, UV/Fe~(2+) advanced oxidation processes have been applied for degradation of aldrin adsorbed on Na-montmorillonitte and activated carbon. Aldrin adsorbed on Na-montmorillonitte was degraded more efficiently than that of on activated carbon. For example, in UV/Fenton technique 95% of aldrin was removed from Na-montmorillonitte while 50% degradation was observed on activated carbon. Degradation of aldrin adsorbed on Na-montmorillonitte has also been achieved effectively using UV/Fe~(2+) technique despite the absence of H_2O_2. All AOPs but Fenton have been observed nearly equally effective for degradation of aldrin on Na-montmorillonitte sorbent. Fenton reaction exhibited least activity in degradation aldrin adsorbed on Na-montmorillonitte. The experiments with activated carbon sorbent indicated that phenyl groups in activated carbon structure and aldrin molecules exhibited competitive behavior on reaction with OH radicals. The results of infrared spectroscopy support this assumption. The degradation efficiency of aldrin using activated carbon sorbent was determined in the following order: UV/Fenton > UV/ H_2O_2 > Fenton > UV7Fe~(2+).
机译:在这项研究中,Fenton,UV / Fenton,UV / H_2O_2,UV / Fe〜(2+)高级氧化工艺已用于降解吸附在钠-蒙脱土和活性炭上的艾氏剂。与吸附在活性炭上相比,吸附在钠-蒙脱土上的艾氏剂的降解效率更高。例如,在UV / Fenton技术中,从蒙脱土中除去了95%的艾氏剂,而在活性炭上观察到了50%的降解。尽管没有H_2O_2,但使用UV / Fe〜(2+)技术也可以有效地实现吸附在钠蒙脱土上的艾氏剂的降解。已观察到除Fenton以外的所有AOP对Na-montmorillonitte吸附剂上的艾氏剂的降解几乎同样有效。 Fenton反应在降解吸附在Na-montmorillonitte上的艾氏剂中表现出最小的活性。用活性炭吸附剂进行的实验表明,活性炭结构中的苯基和艾氏剂分子在与OH自由基反应时表现出竞争行为。红外光谱的结果支持这一假设。使用活性炭吸附剂按以下顺序测定艾氏剂的降解效率:UV / Fenton> UV / H_2O_2> Fenton> UV7Fe〜(2+)。

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