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Revision as of 15:39, 21 August 2024 by Sky (talk | contribs) (Created page with "{ "USGS Publications Warehouse": { "@context": "https://schema.org", "@type": "Article", "additionalType": "Journal Article", "name": "Natural inactivation of MS2, poliovirus type 1 and Cryptosporidium parvum in an anaerobic and reduced aquifer", "identifier": [ { "@type": "PropertyValue", "propertyID": "USGS Publications Warehouse IndexID", "value": "70228802", "url": "https://pubs.usgs.gov/publication/70228802...")
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   "name": "Natural inactivation of MS2, poliovirus type 1 and Cryptosporidium parvum in an anaerobic and reduced aquifer",
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       "value": "10.1111/jam.15349",
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     "name": "Journal of Applied Microbiology",
     "volumeNumber": "132",
     "issueNumber": "3"
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   "datePublished": "2022",
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   "abstract": "AimsThe study of microbial inactivation rates in aquifer systems has most often been determined in aerobic and oxidized systems. This study examined the inactivation (i.e. loss of infectivity) of MS2, poliovirus type 1 (PV1) and\u00a0Cryptosporidium parvum\u00a0in an anaerobic and reduced groundwater system that has been identified as storage zones for aquifer storage and recovery (ASR) facilities.Methods and ResultsAnaerobic and reduced (ORP\u00a0<\u00a0\u2212250\u00a0mV) groundwater from an artesian well was diverted to an above-ground, flow-through mesocosm that contained diffusion chambers filled with MS2, PV1 or\u00a0Cryptosporidium parvum. The respective infectivity assays were performed on microorganisms recovered from the diffusion chambers during 30- to 58-day experiments. The net reduction in infectivity was 5.73\u00a0log10\u00a0over 30\u00a0days for MS2, 5.00\u00a0log10\u00a0over 58\u00a0days for PV1 and 4.07\u00a0log10\u00a0over 37\u00a0days for\u00a0C.\u00a0parvum. The best fit inactivation model for PV1 was the log-linear model and the Weibull model for MS2 and\u00a0C.\u00a0parvum, with respective inactivation rates (95% confidence interval) of 0.19 (0.17\u20130.21) log10\u00a0day\u22121, 0.31 (0.19\u20130.89) log10\u00a0day\u22121\u00a0and 0.20 (0.14\u20130.37) log10\u00a0day\u22121.ConclusionsThe groundwater geochemical conditions in this aquifer enhanced the inactivation of\u00a0MS2, PV1, and\u00a0C.\u00a0parvum\u00a0at rates approximately 2.0\u20135.3-fold, 1.2\u201317.0-fold, and 4.5\u20135.6-fold greater, respectively, than those from published studies that used diffusion chambers in aerobic-to-anoxic groundwater systems, with positive redox potentials.Significance and Impact of the StudyGeochemical conditions like those in the aquifer zone in this study can naturally and significantly reduce concentrations of microbial indicators and pathogens of human health concern in injected surface water. Appropriate storage times for injected surface water could complement above-ground engineered processes for microorganism removal and inactivation (e.g. filtration, disinfection) by naturally increasing overall microorganism log-inactivation rates of ASR facilities.",
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