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Inactivation of F-specific bacteriophages during flocculation with polyaluminum chloride - A mechanistic study

机译:聚氯化铝絮凝过程中F特异性噬菌体的失活-机理研究

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摘要

Bacteriophages are often used as surrogates for enteric viruses in spiking experiments to determine the efficiencies of virus removal of certain water treatment measures, like e.g. flocculation or filtration steps. Such spiking experiments with bacteriophages are indispensable if the natural virus concentrations in the raw water of water treatment plants are too low to allow the determination of elimination levels over several orders of magnitude. In order to obtain reliable results from such spiking tests, it is essential that bacteriophages behave comparable to viruses and remain stable during the experiments. To test this, the influence of flocculation parameters on the bacteriophages MS2, Qβ and phiX174 was examined. Notably, the F-specific phages MS2 and Qβ were found to be inactivated in flocculation processes with polyaluminum chloride (PACl). In contrast, other aluminum coagulants like AlCl_3 or Al_2(SO_4)_3 did not show a comparable effect on MS2 in this study. In experiments testing the influence of different PACl species on MS2 and Qβ inactivation during flocculation, it could be shown that cationic dissolved PACl species (Al_(13)) interacted with the MS2 surface and hereby reduced the surviving phage fraction to c/c_0 values below 1~*10~(-4) even at very low PACl concentrations of 7 μmol Al/L. Other inactivation mechanisms like the irreversible adsorption of phages to the floc structure or the damage of phage surfaces due to entrapment into the floc during coagulation and floc formation do not seem to contribute to the low surviving fraction found for both F-specific bacteriophages. Furthermore, no influence of phage agglomeration or pH drops during the flocculation process on phage inactivation could be observed. The somatic coliphage phiX174 in contrast did not show sensitivity to chemical stress and in accordance only slight interaction between Al_(13) and the phage surface was observed. Consequently, F-specific phages like MS2 should not be used as surrogate for viruses in flocculation experiments with PACl to determine the removal rates of viruses, as the results are influenced by a strong inactivation of the bacteriophages due to the experimental conditions.
机译:噬菌体通常在加标实验中用作肠病毒的替代物,以确定某些水处理措施(例如水处理)的病毒去除效率。絮凝或过滤步骤。如果水处理厂原水中的天然病毒浓度过低,以致无法确定多个数量级的消除水平,那么用噬菌体进行的这种尖峰实验必不可少。为了从此类突刺测试中获得可靠的结果,至关重要的是,噬菌体的行为可与病毒相媲美并在实验过程中保持稳定。为了测试这一点,检查了絮凝参数对噬菌体MS2,Qβ和phiX174的影响。值得注意的是,发现F特异性噬菌体MS2和Qβ在聚氯化铝(PAC1)的絮凝过程中被灭活。相比之下,在本研究中,其他铝凝结剂(如AlCl_3或Al_2(SO_4)_3)对MS2的影响却不大。在测试絮凝过程中不同PACl种类对MS2和Qβ失活的影响的实验中,可以证明阳离子溶解的PACl种类(Al_(13))与MS2表面相互作用,从而将存活的噬菌体级分降低到c / c_0值以下即使在非常低的PACl浓度为7μmolAl / L时也为1〜* 10〜(-4)。其他失活机制,例如噬菌体不可逆地吸附在絮凝物结构上或由于在凝结和絮凝形成过程中被截留在絮凝物中而导致的噬菌体表面损坏,似乎并未导致这两种F特异性噬菌体的存活率较低。此外,在絮凝过程中没有观察到噬菌体的凝聚或pH下降对噬菌体灭活的影响。相比之下,体细胞噬菌体phiX174没有表现出对化学应激的敏感性,并且仅观察到Al_(13)与噬菌体表面之间的轻微相互作用。因此,F-特异性噬菌体如MS2不应在用PACl进行絮凝实验以确定病毒的去除率时用作病毒的替代物,因为结果受实验条件引起的噬菌体强烈失活的影响。

著录项

  • 来源
    《Water Research》 |2014年第15期|144-151|共8页
  • 作者单位

    DVGW-Technologiezentrum Wasser (TZW), Karlsruher Str. 84, D-76139 Karlsruhe, Germany;

    DVGW-Technologiezentrum Wasser (TZW), Karlsruher Str. 84, D-76139 Karlsruhe, Germany;

    DVGW-Technologiezentrum Wasser (TZW), Karlsruher Str. 84, D-76139 Karlsruhe, Germany;

    DVGW-Technologiezentrum Wasser (TZW), Karlsruher Str. 84, D-76139 Karlsruhe, Germany;

    Institute of Functional Interfaces (IFG), Karlsruhe Institute of Technology (KIT), Hermann-von-Helmholtz-Platz 1, D-76344 Karlsruhe, Germany;

    DVGW-Technologiezentrum Wasser (TZW), Karlsruher Str. 84, D-76139 Karlsruhe, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    MS2; phiX174; Coagulation; Polyaluminum chloride; Inactivation;

    机译:MS2;phiX174;凝血;聚氯化铝;失活;

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