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首页> 外文期刊>The Science of the Total Environment >A physicochemical model for rationalizing SARS-CoV-2 concentration in sewage. Case study: The city of Thessaloniki in Greece
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A physicochemical model for rationalizing SARS-CoV-2 concentration in sewage. Case study: The city of Thessaloniki in Greece

机译:污水中SARS-COV-2浓度合理化的物理化学模型。案例研究:希腊塞萨洛尼基市

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摘要

Detection of SARS-CoV-2 in sewage has been employed by several researchers as an alternative early warning indicator of virus spreading in communities, covering both symptomatic and asymptomatic cases. A factor that can seriously mislead the quantitative measurement of viral copies in sewage is the adsorption of virus fragments onto the highly porous solids suspended in wastewater, making them inaccessible. This depends not only on the available amount of suspended solids, but also on the amount of other dissolved chemicals which may influence the capacity of adsorption. On this account, the present work develops a mathematical framework, at various degrees of spatial complexity, of a physicochemical model that rationalizes the quantitative measurements of total virus fragments in sewage as regards the adsorption of virus onto suspended solids and the effect of dissolved chemicals on it. The city of Thessaloniki in Greece is employed as a convenient case study to determine the values of model variables. The present data indicate the ratio of the specific absorption (UV_(254)/DOC) over the dissolved oxygen (DO) as the parameter with the highest correlation with viral copies. This implies a strong effect on viral inaccessibility in sewage caused (ⅰ) by the presence of humic-like substances and (ⅱ) by virus decay due to oxidation and metabolic activity of bacteria. The present results suggest days where many fold corrections in the measurement of viral copies should be applied. As a result, although the detected RNA load in June 2020 is similar to that in April 2020. virus shedding in the city is about 5 times lower in June than in April, in line with the very low SARS-CoV-2 incidence and hospital admissions for COVID-19 in Thessaloniki in June.
机译:污水中SARS-COV-2的检测已被几个研究人员采用,作为在社区中的病毒扩散的替代预警指标,涵盖症状和无症状的病例。可以严重误导污水中病毒拷贝的定量测量的因素是将病毒片段的吸附在悬浮在废水中的高度多孔固体上,使它们无法进入。这不仅取决于可用量的悬浮固体,还取决于可能影响吸附能力的其他溶解化学品的量。在该帐户上,本作工作在物理化学模型的各个空间复杂度下,在污水中的吸附和溶解化学品对悬浮固体中的效果以及溶解化学品对污水中总病毒片段的定量测量来发展数学框架。它。希腊塞萨洛尼基市被聘用为一个方便的案例研究,以确定模型变量的值。本数据表示溶解氧(DO)上的特定吸收(UV_(254)/ doc)与与病毒拷贝相关最高的参数的比率。这意味着由于细菌的氧化和代谢活性,通过病毒衰变产生腐殖质的物质和(Ⅱ),对污水中的病毒无法访问的强劲效果强烈影响。目前的结果表明应该应用在病毒拷贝测量中许多折叠校正的天数。结果,虽然6月2020年6月的检测到的RNA负荷类似于4月2020年4月。这座城市的病毒脱落约为6月份的5倍,而不是4月份,符合非常低的SARS-COV-2发病率和医院六月塞萨洛尼基的Covid-19招生。

著录项

  • 来源
    《The Science of the Total Environment》 |2021年第1期|142855.1-142855.10|共10页
  • 作者单位

    Laboratory of Environmental Engineering & Planning Department of Civil Engineering Aristotle University of Thessaloniki Thessaloniki 54 124 Greece;

    Department of Genetics Development and Molecular Biology School of Biology Aristotle University of Thessaloniki Thessaloniki 54124 Greece;

    Laboratory of Chemical and Environmental Technology Dept. of Chemistry Aristotle University of Thessaloniki Thessaloniki 54124 Greece;

    Laboratory of Chemical and Environmental Technology Dept. of Chemistry Aristotle University of Thessaloniki Thessaloniki 54124 Greece;

    Prion Diseases Research Group School of Pharmacy Aristotle University of Thessaloniki Thessaloniki 54124 Greece;

    Department of Genetics Development and Molecular Biology School of Biology Aristotle University of Thessaloniki Thessaloniki 54124 Greece;

    Laboratory of Environmental Engineering & Planning Department of Civil Engineering Aristotle University of Thessaloniki Thessaloniki 54 124 Greece;

    EYATH S.A. Thessaloniki Water Supply and Sewerage Company S.A. Thessaloniki 54636 Greece;

    Department of Genetics Development and Molecular Biology School of Biology Aristotle University of Thessaloniki Thessaloniki 54124 Greece;

    Infectious Diseases Unit 3rd Department of Pediatrics Faculty of Medicine Aristotle University School of Health Sciences Hippokration General Hospital Thessaloniki 54642 Greece;

    Prion Diseases Research Group School of Pharmacy Aristotle University of Thessaloniki Thessaloniki 54124 Greece;

    Department of Haematology First Department of Internal Medicine Faculty of Medicine AHEPA General Hospital Aristotle University of Thessaloniki Thessaloniki 54636 Greece;

    Department of Microbiology Medical School Aristotle University of Thessaloniki Thessaloniki 54124 Greece;

    School of Spatial Planning and Development Faculty of Engineering Aristotle University of Thessaloniki 54124 Greece;

    EYATH S.A. Thessaloniki Water Supply and Sewerage Company S.A. Thessaloniki 54636 Greece;

    Faculty of Veterinary Medicine School of Health Sciences Aristotle University of Thessaloniki Thessaloniki 54124 Greece;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    SARS-CoV-2; Corona virus; Wastewater epidemiology; Modeling; Adsorption; Virus concentration rationalization;

    机译:SARS-CoV-2;新冠病毒;废水流行病学;造型;吸附;病毒浓度合理化;

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