首页> 外文期刊>Environmental Technology >THE DOSE AND RATIO EFFECTS OF FE(Ⅱ) AND H_2O_2 IN FENTON'S PROCESS ON THE REMOVAL OF ATRAZINE
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THE DOSE AND RATIO EFFECTS OF FE(Ⅱ) AND H_2O_2 IN FENTON'S PROCESS ON THE REMOVAL OF ATRAZINE

机译:Fenton过程中FE(Ⅱ)和H_2O_2的剂量和比例对阿特拉津去除的影响

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摘要

The degradation of pesticide, atrazine (ATZ), 2-chloro-4-(ethylamino)-6-(isopropylamino)-s-triazine, by Fenton's reagent (FR) was investigated as a function of reagents' concentrations and ratios in a batch reactor. The degradation of ATZ was effectively achieved by hydroxyl radicals, which were generated in the FR process. The decay rates of ATZ and the oxidation capacities of FR were found to depend on the concentrations of hydrogen peroxide and ferrous ion. The removal kinetics of ATZ are initiated by a rapid decay and then followed by a much slower one. After an extended reaction time (5 to 10 minutes), the reactions ceased because the Fe~(2+) and H_2O_2 were consumable and would be deactivated in the process. The oxidation capacity of FR was found to have a nonlinear correlation to the doses of [Fe~(2+)] and [H_2O_2] due to the involvement of some unwanted side reactions at both high and low FR ratios. In addition, it was also found that the FR ratio has little effect on the oxidation capacity at high [Fe~(2+)] concentration, but it becomes more critical at lower [Fe~(2+)], which is justified by the involvement of two parallel pathways for the oxidation of ATZ, i.e. the catalyzed oxidation of ATZ induced by FR and the direct oxidation of ATZ by H_2O_2.
机译:研究了芬顿试剂(FR)对农药阿特拉津(ATZ),2-氯-4-(乙基氨基)-6-(异丙基氨基)-s-三嗪的降解与试剂浓度和比例的关系反应堆。通过FR过程中产生的羟基自由基可以有效地实现ATZ的降解。发现ATZ的衰减速率和FR的氧化能力取决于过氧化氢和亚铁离子的浓度。 ATZ的去除动力学首先是快速衰减,然后是慢得多。在延长的反应时间(5至10分钟)后,反应停止,因为Fe〜(2+)和H_2O_2是可消耗的,并且会在此过程中失活。发现FR的氧化能力与[Fe〜(2+)]和[H_2O_2]的剂量具有非线性关系,这是由于在高FR比和低FR比下都发生了一些不需要的副反应。另外,还发现FR比对高[Fe〜(2+)]浓度下的氧化能力影响不大,但在较低的[Fe〜(2+)]浓度下则更为关键。 ATZ氧化的两个平行途径,即FR诱导的ATZ催化氧化和H_2O_2直接氧化ATZ。

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