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Analysing mass balance of viruses in a coagulation-ceramic microfiltration hybrid system by a combination of the polymerase chain reaction (PCR) method and the plaque forming units (PFU) method

机译:通过聚合酶链反应(PCR)方法和噬菌斑形成单位(PFU)方法结合分析凝固-陶瓷微滤混合系统中病毒的质量平衡

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Virus removal experiments using river water spiked with bacteriophages were conducted by an inline coagulation-ceramic microfiltration hybrid system to investigate the effects of filtration flux (62.5 and 125 L/(m(2) x h)) and type of virus (Q beta and MS2) on virus removal. In addition, the mass balance of viruses through the hybrid system was analysed by quantifying the infectious and inactive viruses by a combination of the polymerase chain reaction (PCR) method and the plaque forming units (PFU) method. Even when the system was operated at high filtration flux (125 L/(m(2) x h)), high virus removal (> 6 log) with short coagulation time (2.4 s) was successfully achieved by dosing polyaluminium chloride (PACl) at more than 1.08 mg(.)Al/L. Removal performances were different between Q beta and MS2, although their diameters are almost the same: greater virus removal was achieved for MS2 at PACI dosing of 0.54 mg(.)Al/L, and for Q beta at PACI dosing of more than 1.08 mg(.)Al/L. The combination of the PCR and PFU methods revealed that two phenomena, adsorption to/entrapment in aluminium floc and virucidal activity of PACl, partially account for the high virus removal in the coagulation-MF hybrid system.
机译:在线凝结-陶瓷微滤混合系统使用掺有噬菌体的河水进行病毒去除实验,以研究过滤通量(62.5和125 L /(m(2)xh))和病毒类型(Q beta和MS2)的影响)删除病毒。此外,通过结合聚合酶链反应(PCR)方法和噬菌斑形成单位(PFU)方法对传染性和非活性病毒进行定量分析,分析了杂交系统中病毒的质量平衡。即使在高过滤通量(125 L /(m(2)xh))下运行系统时,也可以通过在25℃下投加聚氯化铝(PACl)成功实现高病毒去除率(> 6 log)和短凝结时间(2.4 s)。大于1.08 mg(。)Al / L。 Q beta和MS2的去除性能不同,尽管它们的直径几乎相同:在PACI剂量为0.54 mg(。)Al / L时,MS2的病毒去除率更高;在PACI剂量超过1.08 mg时,Q beta的去除率更高。 (。)所有。 PCR和PFU方法的结合揭示了两种现象,铝絮状物的吸附/包埋和PACl的杀病毒活性,部分解释了凝血-MF杂交系统中高病毒去除率。

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