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Viral Aggregation: Impact on Virus Behavior in the Environment

机译:病毒聚集:对环境中病毒行为的影响

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摘要

Aggregates of viruses can have a significant impact on quantification and behavior of viruses in the environment Viral aggregates may be formed in numerous ways. Viruses may form crystal like structures and aggregates in the host cell during replication or may form due to changes in environmental conditions after virus particles are released from the host cells. Aggregates tend to form near the isoelectric point of the virus, under the influence of certain salts and salt concentrations in solution, cationic polymers, and suspended organic matter. The given conditions under which aggregates form in the environment are highly dependent on the type of virus, type of salts in solution (cation, anion. monovalent, divalent) and pH. However, virus type greatly influences the conditions when aggregation/disaggregation will occur, making predictions difficult under any given set of water quality conditions. Most studies have shown that viral aggregates increase the survival of viruses in the environment and resistance to disinfectants, especially with more reactive disinfectants. The presence of viral aggregates may also result in overestimation of removal by filtration processes. Virus aggregation-disaggregation is a complex process and predicting the behavior of any individual virus is difficult under a given set of environmental circumstances without actual experimental data.
机译:病毒聚集可能会对环境中病毒的量化和行为产生重大影响病毒聚集可能以多种方式形成。病毒可能在复制过程中在宿主细胞中形成晶体状结构并聚集,或者可能是由于病毒颗粒从宿主细胞中释放后由于环境条件的变化而形成。在溶液,阳离子聚合物和悬浮有机物中某些盐和盐浓度的影响下,聚集体趋于在病毒的等电点附近形成。在环境中形成聚集体的给定条件高度取决于病毒的类型,溶液中的盐的类型(阳离子,阴离子,一价,二价)和pH值。但是,病毒类型极大地影响了何时会发生聚集/分解的情况,因此在任何给定的水质条件下都很难进行预测。大多数研究表明,病毒聚集体可提高病毒在环境中的存活率并提高对消毒剂的抵抗力,尤其是反应性更高的消毒剂。病毒聚集体的存在还可能导致高估过滤过程的去除率。病毒聚集-分解是一个复杂的过程,在没有实际实验数据的情况下,很难在给定的环境条件下预测任何单个病毒的行为。

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  • 来源
    《Environmental Science & Technology》 |2017年第13期|7318-7325|共8页
  • 作者单位

    Department of Soil, Water and Environmental Science Water & Energy Sustainable Technology (WEST) Center, The University of Arizona, 2959 W. Calle Agua, Nueva Tucson, Arizona 85745, United States;

    Department of Soil, Water and Environmental Science Water & Energy Sustainable Technology (WEST) Center, The University of Arizona, 2959 W. Calle Agua, Nueva Tucson, Arizona 85745, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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