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首页> 外文期刊>Chemical engineering journal >Enhancement of a solar photo-Fenton reaction by using ferrioxalate complexes for the treatment of a synthetic cotton-textile dyeing wastewater
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Enhancement of a solar photo-Fenton reaction by using ferrioxalate complexes for the treatment of a synthetic cotton-textile dyeing wastewater

机译:草酸铁配合物处理合成棉纺织印染废水可增强太阳光芬顿反应

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摘要

Biological, photo-Fenton (PF) and photo-Fenton mediated by ferrioxalate complexes (PF/Ferrioxalate) processes were examined for the degradation of a synthetic cotton-textile dyeing wastewater. Aerobic biological treatment had a negligible effect on discolouration whereas total organic content decreased mainly due to the biodegradation of acetic acid initially present in the wastewater. PF process yielded a fast and pronounced dissolved organic carbon concentration decay, mostly associated to the abrupt precipitation of Fe(III)organic complexes. The addition of oxalic acid limited iron precipitation, allowing mineralization of most organic contaminants. The influence of the different dyes and main dyeing auxiliary constituents of the synthetic textile wastewater on the PF and the PF/Ferrioxalate efficiency was systematically analysed. The suitability of combining PF/Ferrioxalate with conventional biological processes as a pre and/or post treatment was evaluated.
机译:检查了铁,草酸铁络合物(PF /草酸铁)过程介导的生物,光芬顿(PF)和光芬顿对合成棉纺织印染废水的降解。好氧生物处理对变色的影响可忽略不计,而总有机物含量下降的主要原因是废水中最初存在的乙酸被生物降解。 PF过程产生快速且明显的溶解有机碳浓度衰减,这主要与Fe(III)有机配合物的突然沉淀有关。草酸的添加限制了铁的沉淀,使大多数有机污染物矿化。系统分析了合成纺织废水中不同染料和主要染色助剂的组成对PF和PF /草酸根效率的影响。评估了将PF /草酸铁与常规生物工艺相结合作为预处理和/或后处理的适用性。

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