首页> 外文期刊>Journal of Cleaner Production >A one-pot approach: Oxychloride radicals enhanced electrochemical oxidation for the treatment of textile dye wastewater trailed by mixed salts recycling
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A one-pot approach: Oxychloride radicals enhanced electrochemical oxidation for the treatment of textile dye wastewater trailed by mixed salts recycling

机译:一锅法:氯氧化物自由基增强电化学氧化处理混合盐循环后的纺织染料废水

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The efficacy of a photo-assisted electrochemical oxidation for the mineralization of real textile effluents (wash water and dye-bath effluent) was investigated by employing a non-photoactive dimensionally stable anode in a tubular flow cell. Under optimized conditions, the photo-assisted electrochemical oxidation was performed at a pH of 2, with a chloride concentration of 2 g L-1, a current density of 10 mA cm(-2), and a flow rate of 50 mL min(-1). The process efficiency was assessed through ultraviolet-visible spectroscopy, high performance liquid chromatography, Fourier transform-Infra red spectroscopy, nuclear magnetic resonance spectroscopy, chemical oxygen demand and total organic carbon analyses. The results obtained have shown that, in case of wash water effluent, 96% of chemical oxygen demand and 68% of total organic carbon were removed in 180 min of photo-assisted electrochemical oxidation, whereas a simple electrochemical oxidation removed only 70% of chemical oxygen demand and 27% of total organic carbon, in the same time. The energy consumptions were about to 29.8 and 39.5 Wh g(-1), of chemical oxygen demand in photo-assisted electrochemical oxidation and electrochemical oxidation. The higher efficiency of photo-assisted electrochemical oxidation is attributed to the formation of oxychloride radicals at acidic pH, as confirmed by electron paramagnetic resonance analysis. The analytical results revealed that the degradation mechanism of photo-assisted electrochemical oxidation is entirely different from that of electrochemical oxidation; in particular, the byproducts formed in the photo-assisted process are free from chlorinated organic compounds and exhibit zero toxicity towards Lemna minor. The photo-assisted electrochemical oxidation proved to be effective also in the case of dye bath effluents with a high organic load: about 90% of the chemical oxygen demand was removed within 5 h at 10 mA cm(-1). The recovered salts from the color-free dye-bath effluent were recycled for further dyeing purposes. (c) 2018 Elsevier Ltd. All rights reserved.
机译:通过在管状流通池中使用非光敏尺寸稳定的阳极,研究了光辅助电化学氧化对真实纺织品废水(洗涤水和染浴废水)矿化的功效。在最佳条件下,光辅助电化学氧化在pH为2的条件下进行,氯化物浓度为2 g L-1,电流密度为10 mA cm(-2),流速为50 mL min( -1)。通过紫外可见光谱,高效液相色谱,傅立叶变换红外光谱,核磁共振光谱,化学需氧量和总有机碳分析来评估工艺效率。获得的结果表明,在冲洗废水的情况下,在180分钟的光辅助电化学氧化过程中去除了96%的化学需氧量和68%的总有机碳,而简单的电化学氧化仅去除了70%的化学需氧量。同时需要氧气和占有机碳总量的27%。在光辅助电化学氧化和电化学氧化中,化学需氧量的能量消耗约为29.8和39.5 Wh g(-1)。如通过电子顺磁共振分析所证实的,光辅助电化学氧化的较高效率归因于在酸性pH下形成氯氧化物自由基。分析结果表明,光辅助电化学氧化的降解机理与电化学氧化完全不同。特别地,在光辅助过程中形成的副产物不含氯代有机化合物,并且对Lemna minor的毒性为零。在高有机负荷的染浴废水中,光辅助电化学氧化也被证明是有效的:在10 mA cm(-1)下的5小时内,去除了约90%的化学需氧量。从无色染浴废水中回收的盐被循环用于进一步的染色目的。 (c)2018 Elsevier Ltd.保留所有权利。

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