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Fast deployment of COVID-19 disinfectant from common ethanol of gas stations in Brazil

机译:从巴西加油站的普通乙醇中快速部署COVID-19消毒剂

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Objectives: Coronavirus COVID-19 is spreading very fast in Brazil, requiring innovative strategies for the fast deployment of disinfectants. Panic in population triggered by COVID-19 has caused a shortage of alcohol-based hand sanitizers and disinfectants in many cities of Brazil. Despite the governmental reaction against the outbreak, a risk of shortage of disinfectants still exists. The objective of this research is to investigate an alternative method for the fast deployment of alcohol-based disinfectants to protect the population against COVID-19. Methods and results: This research highlights the feasibility of disinfectant production from common ethanol available in Brazilian gas stations, as a last resort. A four-by-one (4:1) ratio of common alcohol diluted in water meets the minimum requirements set by health agencies for the alcoholic concentration of disinfectants. Risks factors on alcohol dilution process are associated with corresponding measures of risk mitigation for public health and safety. Conclusions and perspectives: This research proposes a process for the production and deployment of ethanol-based disinfectant from gas stations. However, the implementation is not timely possible for the COVID-19 pandemic due to complexities in the productive process. For the post-COVID-19 period, the authors give three perspectives: (a) future investigation of human dermal toxicity of common ethanol, (b) establishment of a program for the ethanol decontamination, and (c) countries such as the US, Sweden, Thailand, and Colombia to rethink their energy policy for the adoption of biofuel E100 (ethanol and water) instead of E85 (blend of ethanol, gasoline, and water), as part of their biodefense strategy.
机译:研究目的:冠状病毒COVID-19在巴西的传播速度非常快,需要创新的策略来快速部署消毒剂。COVID-19引发的人口恐慌导致巴西许多城市的酒精洗手液和消毒剂短缺。尽管政府对疫情做出了反应,但消毒剂短缺的风险仍然存在。本研究的目的是研究一种快速部署酒精类消毒剂的替代方法,以保护人们免受 COVID-19 的侵害。方法和结果:这项研究强调了从巴西加油站可用的普通乙醇生产消毒剂的可行性,作为最后的手段。在水中稀释的普通酒精的四乘一(4:1)比例符合卫生机构对消毒剂酒精浓度设定的最低要求。酒精稀释过程的风险因素与相应的公共健康和安全风险缓解措施有关。结论和观点:本研究提出了一种从加油站生产和部署乙醇基消毒剂的过程。然而,由于生产过程的复杂性,COVID-19 大流行的实施无法及时进行。对于后 COVID-19 时期,作者给出了三个观点:(a) 未来对普通乙醇人体皮肤毒性的调查,(b) 建立乙醇净化计划,以及 (c) 美国、瑞典、泰国和哥伦比亚等国家重新考虑其采用生物燃料 E100(乙醇和水)而不是 E85(乙醇混合物, 汽油和水),作为其生物防御战略的一部分。

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