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A comparative study of the hydroxyl radical scavenging capacity of activated sludge and membrane bioreactor wastewater effluents

机译:活性污泥与膜式生物反应器废水清除羟自由基能力的比较研究

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摘要

This study evaluated the hydroxyl radical scavenging characteristics of wastewater from five membrane bioreactor (MBR) and five activated sludge (AS) systems. The average values of the characteristics of both wastewater types was found to be significantly different at a 90% confidence interval in terms UV absorbance at 254 nm, alkalinity, and biopolymer concentration. Effluent organic matter (EfOM), with an average k(OH,EfOM) of (2.75 +/- 1.04) x 10(8) M-1 s(-1), was identified as the primary hydroxyl scavenger contributing to >70% of the background scavenging in all cases, except when nitrite exceeded 0.3 mg NO2--N/L. The average scavenging capacity, EfOM scavenging capacity, and the EfOM reaction rate constant of the AS wastewaters exceeded that of the MBR. However, due to the small sample size (n = 5) and considerable variability in scavenging characteristics among the MBR wastewaters, the difference in EfOM reactivity between the two wastewaters was not statistically significant at a 90% confidence interval. Nevertheless, these preliminary findings suggest the possibility that MBR wastewaters may be more amenable to treatment by advanced oxidation. A plausible explanation is that MBRs were observed to reject biopolymers, and a strong correlation was observed between EfOM scavenging capacity and biopolymer concentration.
机译:这项研究评估了来自五个膜生物反应器(MBR)和五个活性污泥(AS)系统的废水的羟自由基清除特性。发现在254 nm的紫外线吸收率,碱度和生物聚合物浓度方面,两种废水类型的特征平均值在90%置信区间内显着不同。出水有机物(EfOM)的平均k(OH,EfOM)为(2.75 +/- 1.04)x 10(8)M-1 s(-1),被确定为主要的羟基清除剂,占70%以上除亚硝酸盐超过0.3 mg NO2--N / L以外,所有情况下的背景清除率均保持不变。 AS废水的平均清除能力,EfOM清除能力和EfOM反应速率常数超过了MBR。但是,由于样本量小(n = 5)以及MBR废水中清除特性的较大差异,因此两种废水之间的EfOM反应性差异在90%的置信区间上在统计学上并不显着。然而,这些初步发现表明,MBR废水可能更适合通过高级氧化处理。一个合理的解释是,观察到MBR排斥生物聚合物,并且在EfOM清除能力和生物聚合物浓度之间观察到很强的相关性。

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