Technologies in Wastewater Treatment Plants for the Removal of Antibiotics, Resistant Bacteria and Antibiotic Resistance Genes: a Review of the Current Literature

Q4 Engineering Ingenieria y Universidad Pub Date : 2021-11-02 DOI:10.11144/javeriana.iyu26.twtp
Maria Camila Zapata Zúñiga, Miguel Angel Parra-Pérez, Johan Alexander Álvarez-Berrio, N. I. Molina-Gómez
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引用次数: 1

Abstract

This study aimed to evaluate the efficiency of technologies for removing antibiotics, antibiotic-resistant bacteria and their antibiotic resistance genes, and the countries where they have been developed. For this purpose, was conducted a systematic review to identify the tertiary treatments to remove the above-mentioned pollutants. The ScienceDirect and Scopus databases were used as sources of information, taking into account only experimental research from 2006 to 2019 and technologies with removal rates higher than 70% to the information analyses. From the analysis of 9 technologies evaluated, in a set of 47 investigations, photo-Fenton, and electrochemical treatments were found to be the most efficient in the removal of antibiotics; gamma radiation and photocatalysis with TiO2 and UV revealed better results in the removal of resistant microbial agents and their resistance genes, with efficiencies of 99.9%. As one of the largest producers and consumers of antibiotics, China appears to be the country with the most scientific research on the area. The importance of innovation in wastewater treatment processes to achieve better results in the remotion of antibiotics, antibiotic-resistant bacteria, and their resistance genes is highlighted, given the effects on the aquatic ecosystems and public health.
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污水处理厂去除抗生素、耐药细菌和抗生素耐药基因的技术:当前文献综述
本研究旨在评估去除抗生素、抗生素耐药细菌及其抗生素耐药基因的技术的效率,以及开发这些技术的国家。为此,本文对三级处理方法进行了系统综述。使用ScienceDirect和Scopus数据库作为信息来源,仅考虑2006年至2019年的实验研究和去除率高于70%的技术进行信息分析。在一组47项调查中,从对9种评估技术的分析中发现,光fenton和电化学处理在去除抗生素方面最有效;伽玛辐射和TiO2光催化和UV光催化对耐药菌及其耐药基因的去除效果较好,效率为99.9%。作为最大的抗生素生产国和消费国之一,中国似乎是在这一领域进行最多科学研究的国家。鉴于对水生生态系统和公共卫生的影响,强调了在废水处理过程中进行创新以更好地去除抗生素、耐抗生素细菌及其耐药基因的重要性。
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Ingenieria y Universidad
Ingenieria y Universidad Engineering-Engineering (all)
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0.80
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期刊介绍: Our journal''s main objective is to serve as a medium for the diffusion and divulgation of the articles and investigations in the engineering scientific and investigative fields. All the documents presented as result of an investigation will be received, as well as any review about engineering, this includes essays that might contribute to the academic and scientific discussion of any of the branches of engineering. Any contribution to the subject related to engineering development, ethics, values, or its relations with policies, culture, society and environmental fields are welcome. The publication frequency is semestral.
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