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Optimized treatment conditions for textile wastewater reuse using photocatalytic processes under UV and visible light sources

机译:紫外线和可见光源下使用光催化过程的纺织废水再利用优化的处理条件

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In this study, photo-Fenton systems using visible light sources with iron and ferrioxalate were tested for the DOC degradation and decolorization of textile wastewater. Textile wastewaters originated after the dyeing stage of dark-colored tissue in the textile industry, and the optimization of treatment processes was studied to produce water suitable for reuse. Dissolved organic carbon, absorbance, turbidity, anionic concentrations, carboxylic acids, and preliminary cost analysis were performed for the proposed treatments. Conventional photo-Fenton process achieved near 99 % DOC degradation rates and complete absorbance removal, and no carboxylic acids were found as products of degradation. Ferrioxalate photo-Fenton system achieved 82 % of DOC degradation and showed complete absorbance removal, and oxalic acid has been detected through HPLC analysis in the treated sample. In contrast, photo-peroxidation with UV light was proved effective only for absorbance removal, with DOC degradation efficiency near 50 %. Treated wastewater was compared with reclaimed water and had a similar quality, indicating that these processes can be effectively applied for textile wastewater reuse. The results of the preliminary cost analysis indicated costs of 0.91 to 1.07 US$ m(-3) for the conventional and ferrioxalate photo-Fenton systems, respectively.
机译:在这项研究中,测试了使用具有熨斗和丁基甲酸盐的可见光源的光芬系统,用于DOC降解和纺织废水的脱色。纺织废水起源于纺织工业中深色组织的染色阶段,研究了处理过程的优化,生产适合重用的水。溶解的有机碳,吸光度,浊度,阴离子浓度,羧酸和初步成本分析对拟议治疗进行。传统的光芬工艺在99%的DOC降解速率附近实现,并完全吸收除去,并且没有羧酸作为降解产物。铁氧化物光芬系统实现了82%的DOC降解,并显示出完全吸光度去除,并通过处理样品中的HPLC分析检测到完全吸光度去除。相比之下,有效仅用于吸光度去除,具有UV光的光过氧化,DOC降解效率接近50%。将处理的废水与再生水进行比较,具有类似的质量,表明这些方法可以有效地应用于纺织废水再利用。初步成本分析的结果分别表明常规和铁氧化物光芬系统的成本为0.91至1.07美元以上(-3)。

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