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Using ozone to reduce recalcitrant compounds and to enhance biodegradability of pulp and paper effluents

机译:使用臭氧减少顽固性化合物并提高纸浆和造纸废水的生物降解性

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The effect of ozone based oxidation on removing recalcitrant organic matter (ROM) and enhancing the biodegradability of alkaline bleach plant effluent was investigated. A bubble column ozonation tower was used in the study. The experiments were carried out at different temperatures (20degreesC and 60degreesC) and pH (9 and 11), with a number of biological and chemical parameters being monitored including BOD5, COD, TC, pH, color, and molecular weight distribution of organics (nominal cut off of 1,000 Da). Biodegradability of the effluent was determined based on BOD5/COD of the wastewater throughout the process. For all the experiments, ozonation enhanced the biodegradability of the effluent by 30-40%, which was associated with noticeable removal of ROM including high molecular weight (HMW) and color-causing organics by about 30% and 60%, respectively. While the biodegradability of HMW fraction increased by about 50%, there was no biodegradability improvement for low molecular weight (LMW) portion, which was originally readily biodegradable (with BOD5/COD of about 0.5). Statistical analysis of variance (ANOVA) revealed neither pH nor temperature played significant role on the ozonation process at 95% confidence level.
机译:研究了基于臭氧的氧化对去除顽固有机物(ROM)和增强碱性漂白剂植物废液的生物降解性的影响。在研究中使用了鼓泡塔臭氧化塔。实验是在不同的温度(20℃和60℃)和pH值(9和11)下进行的,监测了许多生物和化学参数,包括BOD5,COD,TC,pH,颜色和有机物的分子量分布(标称值)。切断1,000 Da)。在整个过程中,废水的生物降解性基于BOD5 / COD来确定。对于所有实验,臭氧化处理可将废水的生物降解性提高30-40%,这与显着去除ROM(包括高分子量(HMW)和引起颜色的有机物)分别约30%和60%有关。虽然HMW馏分的生物降解能力提高了约50%,但低分子量(LMW)部分却没有生物降解能力的提高,而低分子量(LMW)最初很容易被生物降解(BOD5 / COD约为0.5)。方差统计分析(ANOVA)表明,在95%置信度下,pH值和温度均未在臭氧化过程中发挥重要作用。

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