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Ultrasound and ozone assisted biological degradation of thermally pretreated and anaerobically pretreated distillery wastewater

机译:超声波和臭氧辅助对热预处理和厌氧预处理的酒厂废水进行生物降解

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摘要

The present work is aimed at increasing the overall efficiency of the treatment process of distillery spent wash using a combination of different treatment techniques. Initially the effluent samples were subjected to Thermal Pretreatment (TPT-DW) and anaerobic treatment (ANA-DW). Advanced oxidation techniques, viz., Ultrasound (US) and Ozone were then used for further COD reduction followed by the conventional aerobic oxidation using mixed microbial consortium. Pretreatment of TPT-DW with US and Ozone (as stand alone techniques) enhanced the subsequent aerobic oxidation rate. For US treated sample, a maximum of 13% COD reduction was attained at the end of 48 h of aerobic oxidation, while for the ozone treated effluent a maximum of 45.6% COD reduction was obtained as compared to mere 1.8% COD reduction for the control (TPT-DW directly subjected to aerobic oxidation) indicating a 25 times increase in the rate of aerobic biodegradation of ozonated sample. Anaerobically treated effluent sample (ANA-DW) could be successfully treated aerobically. In this case, however, the use of advanced oxidation techniques did not result in any synergistic effects. The rate of the aerobic oxidation was slightly higher for the control (ANA-DW directly subjected to aerobic oxidation) as compared to the sample pretreated using ultrasound or ozonation. TOC analysis revealed that between the two pretreatments studied, ozone was found to be superior over US as it led to both COD as well as TOC reduction during the aerobic oxidation step for ANA-DW effluent stream.
机译:当前的工作旨在利用不同的处理技术相结合来提高酒厂废液处理过程的整体效率。最初,废水样品经过热预处理(TPT-DW)和厌氧处理(ANA-DW)。然后,使用先进的氧化技术,即Ultrasound(US)和臭氧来进一步还原COD,然后使用混合微生物联合体进行常规的好氧氧化。用US和臭氧对TPT-DW进行预处理(作为独立技术)可提高随后的好氧氧化速率。对于经过美国处理的样品,在好氧氧化48小时结束时,最大COD减少量达到13%,而对于臭氧处理的废水,其最大COD减少量达到45.6%,而对照样品仅为1.8%。 (TPT-DW直接经受好氧氧化)表明臭氧化样品的好氧生物降解速率提高了25倍。厌氧处理的废水样品(ANA-DW)可以成功地进行好氧处理。但是,在这种情况下,使用高级氧化技术不会产生任何协同效应。与使用超声或臭氧化预处理的样品相比,对照(ANA-DW直接进行有氧氧化)的有氧氧化速率略高。 TOC分析显示,在所研究的两种预处理之间,发现臭氧优于美国,因为它导致ANA-DW废水流的好氧氧化步骤中COD以及TOC降低。

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