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优化带酸性电解溶液的电动超低容量喷雾器的运行参数,以提高环境表面的病毒杀灭活性。

Optimizing Operating Parameters of Electric Ultra-Low Volume Sprayer with Slightly Acidic Electrolyzed Solution for Efficient Virucidal Activity on Environmental Surfaces.

机构信息

Hygienic Safety and Analysis Center, World Institute of Kimchi, Gwangju 61755, Korea.

出版信息

Int J Environ Res Public Health. 2021 Sep 28;18(19):10183. doi: 10.3390/ijerph181910183.

DOI:10.3390/ijerph181910183
PMID:34639485
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8508509/
Abstract

Recently, and considering the COVID-19 pandemic, there has been a growing consensus that the disinfection of surfaces contaminated with pathogenic viral particles is essential. Chemical disinfectant sprays are effective at preventing the spread of infectious human noroviruses (Hu-NoVs) in healthcare and public areas. We assessed the virucidal activity of slightly acidic electrolyzed water (SAEW) spray on fomite surfaces. A multivariate statistical assessment that combined a response surface methodology (RSM) and a Box-Behnken design (BBD) was performed to define the optimal parameters of, and correlations among, experimental conditions. Spraying SAEW disinfectant (oxidation-reduction potential: 1123 mV, pH range: 5.12, available chlorine concentration: 33.22 ppm) resulted in the successful decontamination of Hu-NoV, with a 4-log reduction in viral particles on polyvinyl chloride, stainless steel, ceramic tile, and glass surfaces. Our experimental data revealed optimized treatment conditions for decontaminating Hu-NoV GI.6 and GII.4, using the numerical multiple optimized method (spraying rate: 218 mL/min, spraying time: 4.9 s, spraying distance: 0.9 m). These findings offer significant insights for designing optimal strategic control practices to prevent infectious disease, particularly Hu-NoV, transmission.

摘要

最近,考虑到 COVID-19 大流行,人们越来越达成共识,认为对污染有致病病毒颗粒的表面进行消毒至关重要。化学消毒剂喷雾在医疗保健和公共场所可有效防止传染性人类诺如病毒(Hu-NoVs)的传播。我们评估了弱酸性电解水(SAEW)喷雾对污染物表面的病毒杀灭活性。采用多元统计评估,结合响应面法(RSM)和 Box-Behnken 设计(BBD),定义了实验条件的最佳参数和相关性。喷洒 SAEW 消毒剂(氧化还原电位:1123 mV,pH 值范围:5.12,有效氯浓度:33.22 ppm)可成功清除 Hu-NoV,在聚氯乙烯、不锈钢、瓷砖和玻璃表面上,病毒颗粒减少了 4 个对数级。我们的实验数据揭示了使用数值多优化方法(喷雾速度:218 mL/min,喷雾时间:4.9 s,喷雾距离:0.9 m)对 GI.6 和 GII.4 型 Hu-NoV 进行消毒的优化处理条件。这些发现为设计最佳战略控制措施以预防传染病,特别是 Hu-NoV 传播提供了重要的见解。

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本文引用的文献

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Survival and inactivation of human norovirus GII.4 Sydney on commonly touched airplane cabin surfaces.人诺如病毒GII.4悉尼株在飞机机舱常见接触表面的存活与灭活情况
AIMS Public Health. 2020 Jul 29;7(3):574-586. doi: 10.3934/publichealth.2020046. eCollection 2020.
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Photocatalytic inactivation of viral particles of human norovirus by Cu-doped TiO non-woven fabric under UVA-LED wavelengths.铜掺杂 TiO2 非织造布在 UVA-LED 波长下光催化灭活人诺如病毒颗粒。
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Chemicals inhaled from spray cleaning and disinfection products and their respiratory effects. A comprehensive review.
吸入喷雾清洁和消毒产品中的化学物质及其呼吸影响。全面综述。
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Hypochlorous Acid: A Review.次氯酸:综述
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Surface Disinfection: Treatment Time (Wipes and Sprays) Versus Contact Time (Liquids).表面消毒:擦拭和喷雾的处理时间与液体的接触时间
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Pretreatment with propidium monoazide/sodium lauroyl sarcosinate improves discrimination of infectious waterborne virus by RT-qPCR combined with magnetic separation.碘化丙啶/月桂酰肌氨酸钠预处理提高磁分离 RT-qPCR 检测水中感染性病毒的能力
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Fractional Factorial Design Study on the Performance of GAC-Enhanced Electrocoagulation Process Involved in Color Removal from Dye Solutions.粒状活性炭强化电凝聚法处理染料溶液脱色性能的部分因子试验设计研究
Materials (Basel). 2013 Jul 10;6(7):2723-2746. doi: 10.3390/ma6072723.
8
Efficacy of Neutral Electrolyzed Water for Inactivation of Human Norovirus.中性电解水对人诺如病毒的灭活效果
Appl Environ Microbiol. 2017 Aug 1;83(16). doi: 10.1128/AEM.00653-17. Print 2017 Aug 15.
9
Human norovirus transmission and evolution in a changing world.人类诺如病毒在不断变化的世界中的传播和进化。
Nat Rev Microbiol. 2016 Jul;14(7):421-33. doi: 10.1038/nrmicro.2016.48. Epub 2016 May 23.
10
Vomiting as a Symptom and Transmission Risk in Norovirus Illness: Evidence from Human Challenge Studies.呕吐作为诺如病毒疾病的一种症状和传播风险:来自人体激发试验的证据。
PLoS One. 2016 Apr 26;11(4):e0143759. doi: 10.1371/journal.pone.0143759. eCollection 2016.