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Integrated ozone and biotreatment of pulp mill effluent and changes in biodegradability and molecular weight distribution of organic compounds

机译:制浆厂废水的综合臭氧和生物处理以及有机化合物的生物降解性和分子量分布的变化

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摘要

The overall effectiveness of integrating ozonation with biological treatment on the biodegradability enhancement and recalcitrant organic matter (ROM) removal from pulp mill alkaline bleach plant effluent was investigated. Ozonation was performed in a semi-batch bubble column reactor at pH of 11 and 4.5. Batch biological treatment was conducted in shake flasks. Samples obtained during the treatments were monitored for BOD_5, COD, TOC, and molecular weight distribution. At an ozone dosage of 0.7-0.8 mg O_3/mL wastewater, integrated treatment showed about 30% higher TOC mineralization compared to individual ozonation or biotreatment. Ozone treatment enhanced the biodegradability of the effluent (monitored as 21% COD reduction and 13% BOD_5 enhancement), allowing for a higher removal of pollutants. The conversion of high molecular weight (HMW) to low molecular weight (LMW) compounds was an important factor in the overall biodegradability enhancement of the alkaline effluent. The overall biodegradability of the LMW compounds did not change over the course of ozonation, but it increased from 5% to 50% (measured as COD removal) for the HMW portion. Ozonation at pH of 11 was more effective than that at pH of 4.5 in terms of generating more biodegradable compounds.
机译:研究了臭氧处理与生物处理相结合对提高纸浆厂碱性漂白剂厂废水中生物降解性和去除难降解有机物(ROM)的整体有效性。在半间歇鼓泡塔反应器中在11和4.5的pH下进行臭氧化。分批生物处理在摇瓶中进行。监测处理期间获得的样品的BOD_5,COD,TOC和分子量分布。在臭氧剂量为0.7-0.8 mg O_3 / mL废水的情况下,与单独的臭氧化或生物处理相比,综合处理显示TOC矿化度高约30%。臭氧处理提高了废水的生物降解性(监测结果表明,COD降低了21%,BOD_5升高了13%),从而使污染物的去除率更高。高分子量(HMW)化合物向低分子量(LMW)化合物的转化是提高碱性废水整体生物降解能力的重要因素。在臭氧化过程中,LMW化合物的总体生物降解性没有变化,但对于HMW部分,它从5%增加到50%(以COD去除率衡量)。在pH值为11的情况下,臭氧化作用比在pH值为4.5的情况下更有效,因为生成的生物可降解化合物更多。

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