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Treatment of Distillery Spent-Wash by Ozonation and Biodegradation: Significance of pH Reduction and Inorganic Carbon Removal Before Ozonation

机译:臭氧化和生物降解处理酒厂废洗液:臭氧化前降低pH值和去除无机碳的意义

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摘要

This study is aimed at exploring strategies for mineralization of refractory compounds in distillery effluent by anaerobic bio-degradation/ozonation/aerobic biodegradation. Treatment of distillery spent-wash used in this research by anaerobic-aerobic biodegradation resulted in overall COD removal of 70.8 percent. Ozonation of the anaerobically treated distillery spent-wash was carried out as-is (phase I experiments) and after pH reduction and removal of inorganic carbon (phase II experiments). Introduction of the ozonation step resulted in an increase in overall chemical oxygen demand (COD) removal, with the highest COD removals of greater than 95 percent obtained when an ozone dose of approximately 5.3 mg ozone absorbed/mg initial total organic carbon was used. The COD removal during phase II experiments was slightly superior compared with phase I experiments at similar ozone doses. Moreover, efficiency of ozone absorption from the gas phase into distillery spent-wash aliquots was considerably enhanced during phase II experiments.
机译:这项研究旨在探索通过厌氧生物降解/臭氧化/好氧生物降解对酒厂废水中难熔化合物进行矿化的策略。通过厌氧-好氧生物降解处理本研究中使用的酿酒厂废液,可将总的COD去除率为70.8%。厌氧处理过的酒厂废液的臭氧化处理按原样进行(I期实验),pH降低并除去无机碳后进行II期实验。臭氧化步骤的引入导致总体化学需氧量(COD)去除量增加,当使用大约5.3 mg臭氧吸收量/ mg初始总有机碳时,获得的最高COD去除量大于95%。在相似的臭氧剂量下,II期实验期间的COD去除效果比I期实验稍好。而且,在阶段II实验期间,从气相吸收到蒸馏厂废洗液等分试样中的臭氧吸收效率大大提高。

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