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Evaluation of virus reduction efficiency in wastewater treatment unit processes as a credit value in the multiple-barrier system for wastewater reclamation and reuse

机译:在废水回收和再利用的多屏障系统中,将废水处理单元过程中的病毒减少效率作为信用值进行评估

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摘要

The virus reduction efficiency of each unit process is commonly determined based on the ratio of virus concentration in influent to that in effluent of a unit, but the virus concentration in wastewater has often fallen below the analytical quantification limit, which does not allow us to calculate the concentration ratio at each sampling event. In this study, left-censored datasets of norovirus (genogroup I and II), and adenovirus were used to calculate the virus reduction efficiency in unit processes of secondary biological treatment and chlorine disinfection. Virus concentration in influent, effluent from the secondary treatment, and chlorine-disinfected effluent of four municipal wastewater treatment plants were analyzed by a quantitative polymerase chain reaction (PCR) approach, and the probabilistic distributions of log reduction (LR) were estimated by a Bayesian estimation algorithm. The mean values of LR in the secondary treatment units ranged from 0.9 and 2.2, whereas those in the free chlorine disinfection units were from -0.1 and 0.5. The LR value in the secondary treatment was virus type and unit process dependent, which raised the importance for accumulating the data of virus LR values applicable to the multiple-barrier system, which is a global concept of microbial risk management in wastewater reclamation and reuse.
机译:通常根据单位进水与单位流出物中病毒浓度的比值来确定每个单元过程的病毒减少效率,但是废水中的病毒浓度经常低于分析定量极限,这使我们无法计算每个采样事件的浓度比。在这项研究中,诺如病毒(基因组I和II)和腺病毒的左删减数据集用于计算二次生物处理和氯消毒的单位过程中的病毒减少效率。通过定量聚合酶链反应(PCR)方法分析了四个市政污水处理厂的进水,二次处理后的废水和氯消毒后的废水中的病毒浓度,并通过贝叶斯估计了对数减少(LR)的概率分布估计算法。二级处理单元中LR的平均值介于0.9和2.2之间,而游离氯消毒单元中的LR平均值介于-0.1和0.5之间。二级处理中的LR值取决于病毒类型和单位过程,这提高了积累适用于多屏障系统的病毒LR值数据的重要性,这是废水回收和再利用中微生物风险管理的全球概念。

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