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Advanced treatment of dyehouse effluents by Fe(II) and Mn(II)-catalyzed ozonation and the H2O2/O-3 process

机译:Fe(II)和Mn(II)催化臭氧化和H2O2 / O-3工艺对印染废水的深度处理

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Treatment of synthetic dyehouse effluent containing six reactive dyestuffs and their assisting chemicals by O-3/Fe(II), O-3/Mn(II), and O-3/H2O2 advanced oxidation processes was investigated. All oxidation processes were capable of completely decolourizing the wastewater within 30 min. Decolourization proceeded fastest by the O-3/Mn(II) process, whereas the O-3/H2O2 combination was more efficient in the removal of DOC (Dissolved Organic carbon) and UV254nm which were 11 and 53%, respectively, for one hour treatment time. Application of Fe(II)-catalyzed ozonation provided an effective means of removing colour and COD (Chemical Oxygen Demand) by a five- and nine-fold enhancement, respectively, compared with conventional coagulation applied at the same coagulant doses. Formation of toxic oxidation products was not observed during the course of treatment with all investigated advanced oxidation processes. [References: 16]
机译:研究了通过O-3 / Fe(II),O-3 / Mn(II)和O-3 / H2O2高级氧化工艺处理含有6种活性染料及其助剂的合成染料废水的方法。所有氧化过程均能够在30分钟内将废水完全脱色。通过O-3 / Mn(II)工艺进行脱色的速度最快,而O-3 / H2O2组合在一小时内分别去除11%和53%的DOC(溶解的有机碳)和UV254nm的效率更高。治疗时间。与在相同凝结剂量下进行常规凝结相比,Fe(II)催化的臭氧化的应用分别提供了五倍和九倍的增强来去除颜色和COD(化学需氧量)的有效方法。在所有研究过的高级氧化过程中,未观察到有毒氧化产物的形成。 [参考:16]

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