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臭氧氧化与传统好氧氧化联合用于酿酒厂废水处理

Combination of ozonation with conventional aerobic oxidation for distillery wastewater treatment.

作者信息

Sangave Preeti C, Gogate Parag R, Pandit Aniruddha B

机构信息

Chemical Engineering Department, University Institute of Chemical Technology, Matunga, Mumbai 400 019, India.

出版信息

Chemosphere. 2007 May;68(1):32-41. doi: 10.1016/j.chemosphere.2006.12.053. Epub 2007 Feb 5.

Abstract

Laboratory-scale experiments were conducted in order to investigate the effect of ozone as pre-aerobic treatment and post-aerobic treatment for the treatment of the distillery wastewater. The degradation of the pollutants present in distillery spent wash was carried out by ozonation, aerobic biological degradation processes alone and by using the combinations of these two processes to investigate the synergism between the two modes of wastewater treatment and with the aim of reducing the overall treatment costs. Pollutant removal efficiency was followed by means of global parameters directly related to the concentration of organic compounds in those effluents: chemical oxygen demand (COD) and the color removal efficiency in terms of absorbance of the sample at 254 nm. Ozone was found to be effective in bringing down the COD (up to 27%) during the pretreatment step itself. In the combined process, pretreatment of the effluent led to enhanced rates of subsequent biological oxidation step, almost 2.5 times increase in the initial oxidation rate has been observed. Post-aerobic treatment with ozone led to further removal of COD along with the complete discoloration of the effluent. The integrated process (ozone-aerobic oxidation-ozone) achieved approximately 79% COD reduction along with discoloration of the effluent sample as compared to 34.9% COD reduction for non-ozonated sample, over a similar treatment period.

摘要

为了研究臭氧作为前好氧处理和后好氧处理对酿酒废水处理的效果,进行了实验室规模的实验。通过单独的臭氧化、好氧生物降解过程以及这两种过程的组合,对酿酒厂废水中存在的污染物进行降解,以研究两种废水处理模式之间的协同作用,并旨在降低总体处理成本。通过与这些废水有机化合物浓度直接相关的全局参数来跟踪污染物去除效率:化学需氧量(COD)以及以样品在254nm处的吸光度表示的脱色效率。发现臭氧在预处理步骤本身就能有效降低COD(高达27%)。在联合处理过程中,废水的预处理导致后续生物氧化步骤的速率提高,观察到初始氧化速率几乎提高了2.5倍。臭氧后好氧处理导致COD进一步去除以及废水完全脱色。与在类似处理期间未进行臭氧处理的样品相比,综合处理过程(臭氧-好氧氧化-臭氧)实现了约79%的COD降低以及废水样品脱色,而非臭氧处理样品的COD降低率为34.9%。

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