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Decolorization of Acid Orange 7 with peroxymonosulfate oxidation catalyzed by granular activated carbon

机译:颗粒活性炭催化过氧单硫酸盐氧化制酸性橙7

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In this study, granular activated carbon (GAC) was used as a catalyst to activate peroxymonosulfate (PMS) to degrade azo dye Acid Orange 7 (AO7) in aqueous solution. A remarkable synergistic effect was found in the GAC/PMS combined system. The dye decolorization was much faster in the combined system than that in only GAC adsorption or PMS oxidation system. For the GAC/PMS system, the decolorization efficiency increased as the PMS concentration, the GAC dosage and the reaction temperature increased. The reaction followed a pseudo-first-order kinetic and a much lower activation energy was determined to be 25.13 kj mol~(-1).The recovery performance of GAC was also studied through the GAC-reuse experiment. It was found that GAC had no obvious deactivation after four times reusing, which implied that the catalysis ability of GAC can be regenerated by the GAC/PMS combined system. Although GAC has almost lost its adsorption capacity, the GAC/PMS combined system could still significantly degrade AO7 as before. The initial reaction mechanisms were also discussed in detail.
机译:在这项研究中,颗粒状活性炭(GAC)被用作催化剂来活化过氧单硫酸盐(PMS)以降解水溶液中的偶氮染料酸性橙7(AO7)。在GAC / PMS组合系统中发现了显着的协同效应。组合系统中的染料脱色比仅GAC吸附或PMS氧化系统快得多。对于GAC / PMS系统,脱色效率随PMS浓度,GAC用量和反应温度的升高而增加。该反应遵循拟一级动力学,测定的活化能低得多,为25.13 kj mol〜(-1)。还通过GAC重用实验研究了GAC的回收性能。结果发现,GAC重复使用4次后,GAC并没有明显的失活,这表明GAC / PMS组合体系可以再生GAC的催化能力。尽管GAC几乎失去了吸附能力,但GAC / PMS组合系统仍可以像以前一样显着降解AO7。还详细讨论了初始反应机理。

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