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Pickling Waste as an Inexpensive Iron Source for Fenton Oxidation of Synthetic Dye Bath Waste

机译:酸洗废料作为芬顿氧化合成染料浴废料的廉价铁源

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摘要

A simple, low cost, highly effective, and useful Fenton oxidation treatment of synthetic dye bath waste with pickling liquor as a source of iron (Fe~(2+) catalyst) is reported. Optimizations of contact time, Fe~(2+) and H_2O_2 doses are carried out. Oxidative de-colorization and degradation of Reactive Blue 4 and Reactive Orange 16 was measured in terms of decrease in absorbance at their wavelength of maximum absorption (RB4, 599 nm; and RO16, 493 nm) and also as reduction in chemical oxygen demand (COD). Approximately, 62% COD was removed in 2 h at optimized doses of Fe~(2+) (8.95 mM) and H_2O_2 (61.8mM) by using pickling waste as a source of Fe~(2+) catalyst. Similar performance efficiency was observed when neat FeSO_4 was used as a source of Fe~(2+), indicating that pickling liquor can be a low cost source of Fe~(2+) to treat synthetic dye bath waste by Fenton method.
机译:报道了一种以酸洗液为铁(Fe〜(2+)催化剂)的合成染料浴废料的简单,低成本,高效,有用的芬顿氧化处理方法。进行了接触时间,Fe〜(2+)和H_2O_2剂量的优化。活性蓝4和活性橙16的氧化脱色和降解是根据最大吸收波长(RB4,599 nm; RO16,493 nm)处吸光度的降低以及化学需氧量的降低(COD)进行的)。通过使用酸洗废料作为Fe〜(2+)催化剂的来源,在2h内以最佳剂量的Fe〜(2+)(8.95 mM)和H_2O_2(61.8mM)去除了62%的COD。当使用纯FeSO_4作为Fe〜(2+)的来源时,观察到相似的性能效率,这表明酸洗液可以作为Fe〜(2+)的低成本来源,用于通过Fenton方法处理合成染料浴废料。

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