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Microbubble enhanced ozonation process for advanced treatment of wastewater produced in acrylic fiber manufacturing industry

机译:微泡增强臭氧处理工艺,用于处理腈纶制造业中产生的废水

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摘要

This work investigated microbubble-ozonation for the treatment of a refractory wet-spun acrylic fiber wastewater in comparison to macrobubble-ozonation. CODcr, NH3-N, and UV254 of the wastewater were removed by 42%, 21%, and 42%, respectively in the microbubble-ozonation, being 25%, 9%, and 35% higher than the removal rates achieved by macrobubble-ozonation at the same ozone dose. The microbubbles (with average diameter of 45μm) had a high concentration of 3.9×105 counts/mL at a gas flow rate of 0.5L/min. The gas holdup, total ozone mass-transfer coefficient, and average ozone utilization efficiency in the microbubble-ozonation were 6.6, 2.2, and 1.5 times higher than those of the macrobubble-ozonation. Greater generation of hydroxyl radicals and a higher zeta potential of the bubbles were also observed in the microbubble ozonation process. The biodegradability of the wastewater was also significantly improved by microbubble-ozonation, which was ascribed to the enhanced degradation of alkanes, aromatic compounds, and the many other bio-refractory organic compounds in the wastewater. Microbubble-ozonation can thus be a more effective treatment process than traditional macrobubble-ozonation for refractory wastewater produced by the acrylic fiber manufacturing industry.
机译:与大气泡臭氧化相比,这项工作研究了微气泡臭氧化处理难处理湿纺丙烯酸纤维废水的方法。在微气泡臭氧化处理中,废水中的CODcr,NH3-N和UV254分别去除了42%,21%和42%,分别比通过大气泡去除所获得的去除率高25%,9%和35%。在相同的臭氧剂量下进行臭氧化。微气泡(平均直径为45μm)在0.5L / min的气体流速下具有3.9×105个计数/ mL的高浓度。微气泡臭氧化中的气体滞留率,总臭氧传质系数和平均臭氧利用效率分别是大气泡臭氧化中的6.6倍,2.2倍和1.5倍。在微泡臭氧化过程中还观察到更大的羟基自由基产生和更高的气泡ζ电势。微泡臭氧化也显着改善了废水的生物降解性,这归因于废水中烷烃,芳族化合物和许多其他生物难降解有机化合物的降解增强。因此,对于由丙烯酸纤维制造工业产生的耐火废水,微泡臭氧化可以是比传统的大泡臭氧化更有效的处理方法。

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