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Efficient Degradation of Refractory Organics Using Sulfate Radicals Generated Directly from WO 3 Photoelectrode and the Catalytic Reaction of Sulfate

机译:使用直接从WO 3光电电极产生的硫酸盐基团和硫酸盐的催化反应有效降解耐火物质

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An environment-friendly method of efficiently degrading refractory organics using SO 4 ?¢???? ?¢???¢ generated directly from a WO 3 photoelectrode and a catalytic reaction of sulfate was proposed, in which the cycling process of SO 4 2?¢???? ?¢???? SO 4 ?¢???? ?¢???¢ ?¢???? SO 4 2?¢???? was achieved in the treatment of organic pollutants without any other activator and without the continuous addition of sulfate. The results show that the removal efficiency for a typical refractory organics of methyl orange (MO) with 5 mg/L was up to 95% within 80 min, and merely 3% by photolysis and 19% by photocatalysis, respectively, under similar conditions. The rate constant for the disposal of MO at pH 2, in which SO 4 ?¢???? ?¢???¢ instead of HO?¢???¢ is the main oxidizer confirmed by radical scavenger experiment, is up to 5.21 ???? 10 ?¢????4 s ?¢????1 , which was ~6.6 times that (7.89 ???? 10 ?¢????5 s ?¢????1 ) under neutral condition, in which HO?¢???¢ is the main oxidizer. The concentration of active persulfate (S 2 O 8 2?¢???? , SO 5 2?¢???? , and SO 4 ?¢???? ?¢???¢) species at pH 2 was up to 0.38 mM, which was ~16-fold as much as that (0.023 mM) in neutral conditions. The method provides a new approach for the treatment and resource utilization of sulfate wastewater.
机译:使用SO 4有效地降解难治物体的环保方法,4 ???????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????? ????(直接从WO 3光电极生成,提出硫酸盐的催化反应,其中循环过程为SO 4 2 2 ?????? ?¢????所以4?¢???? ?????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????所以4 2?¢????在治疗有机污染物的情况下,没有任何其他活化剂,没有连续添加硫酸盐。结果表明,在80分钟内,甲基橙(Mo)甲基橙(Mo)的典型耐火物质的去除效率高达95%,并且仅通过光解和19%通过光催化在相似条件下的3%。在pH 2处处理Mo的速率常数,其中4 ????? ????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????? 10?¢???? 4 s ????? 1,这是〜6.6倍(7.89 ???? 10?¢???? 5)在中性状态下,其中ho ???¢是主要的氧化剂。活性过硫酸盐的浓度(S 2 O 8 2?¢????,所以5 2?¢??????????????????????¢)在pH 2时的物种提出至0.38毫米,其在中性条件下具有〜16倍(0.023mm)。该方法提供了一种新方法,用于硫酸盐废水的处理和资源利用。

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