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Application of Advanced Oxidation Technologies for Decolorization and Mineralization of Textile Wastewaters

机译:先进氧化技术在纺织废水脱色矿化中的应用

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Reactive dyes are the most abundantly used in textile industry due to their high color fastness, wide color spectrum as well as low energy consumption. The presence of these dyes in effluent released into receiving waters has become a serious environmental problem not only related to their color but mainly because of the hazardous byproducts. An environmentally sustainable development policy in textile industry requires development of new technologies to reduce water consumption as well as negative environmental impact of discharged wastewater. Advanced oxidation processes (AOPs) are the most promising technology for decolorization and mineralization of wastewater contamination. This paper presents the results of ozonation, Fenton's oxidation and H2O2/UV treatment of simulated as well as industrial textile wastewater containing Reactive Black 5. The AOPs were carried out under varied process parameters such as: dye concentration, pH, oxidant and detergent doses and wide range concentration of NaCl. The decolorization was followed by absorbance while oxidation and mineralization progress by COD and TOC measurements respectively. The almost completely inhibition of decolorization in the presence of NaCl in concentration usually used in industry (60 - 80 g/L) was observed for Fenton reagent. The slight inhibition was observed for H2O2/UV system while for ozonation there was no influence of NaCl on the decolorization. The similar relationship of the influence of anionic detergent concentration was observed. The experiments indicated that ozonation is the best method from TOC and COD removal point of view. For the decolorization of real textile effluents two streams were used 1) containing C.I. Reactive Yellow 145, Red 195, Blue 221 and 2) Reactive Black 5. As a result of the treatment, almost complete decolorization of the wastewater was obtained. Considering both the experimental results and technological problems, it can be presumed that advanced oxidation with a application of ozone or hydrogen peroxide/UV are a very promising techniques for potential industrial implementation, however from economic point of view the more reasonable is the ozonation process.
机译:活性染料由于其高的色牢度,宽的光谱范围以及低的能耗而在纺织工业中使用最多。这些染料在释放到接收水中的废水中的存在已成为严重的环境问题,不仅与它们的颜色有关,而且主要是由于有害的副产物。纺织工业中一项环境可持续发展政策要求开发新技术以减少用水量以及排放废水的负面环境影响。先进的氧化工艺(AOP)是用于废水污染物脱色和矿化的最有前途的技术。本文介绍了模拟废水以及含有活性黑5的工业纺织废水的臭氧化,Fenton氧化和H2O2 / UV处理的结果。AOP在各种工艺参数下进行,例如:染料浓度,pH,氧化剂和洗涤剂用量以及NaCl的浓度范围广。脱色后是吸光度,而氧化和矿化分别通过COD和TOC测量进行。对于Fenton试剂,在工业上通常使用的浓度(60-80 g / L)的NaCl存在下,几乎完全抑制了脱色。对于H 2 O 2 / UV系统观察到轻微的抑制作用,而对于臭氧化,NaCl对脱色没有影响。观察到阴离子去污剂浓度影响的相似关系。实验表明,从TOC和COD去除的角度来看,臭氧化是最好的方法。为了使真实的纺织品流出物脱色,使用了两个含有1。活性黄145,红色195,蓝色221和2)活性黑5.作为处理的结果,废水几乎完全脱色。考虑到实验结果和技术问题,可以假定采用臭氧或过氧化氢/紫外线进行高级氧化是潜在的工业应用的非常有前途的技术,但是从经济的角度来看,臭氧化过程更为合理。

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