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Removing Antibiotic-Resistant Bacteria (ARB) Carrying Genes (ARGs): Challenges and Future Trends

机译:消除抗药性细菌(ARB)携带基因(ARG):挑战和未来趋势

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摘要

Developed control of chemical disinfection techniques is beginning to be pro-gressively significant in order to equilibrate under-treatment (minimal pathogen demobilization) and over-treatment (immoderate consumption of disinfectant and disinfection by-products generation) that way giving great ecological and economic advantages. This work reviews the most recent and pertinent re-searches in this field of eliminating Antibiotic-resistant Bacteria (ARB) carrying genes (ARGs) during wastewater treatment especially disinfection. Traditional disinfection techniques may not be efficient in demobilizing ARB and the simultaneou,s liberation of ARB and antibiotics at sub-lethal concentrations into municipal wastewater treatment plant effluent may promote the develop-ment of resistance among bacteria in receiving water. The pathway of the in-fluences of diverse disinfection techniques in water and wastewater (chlorina-tion, UV irradiation, Fenton reaction, ozonation, and photocatalytic oxidation) deserves more attention. The impacts of constructed wetlands and nanotech-nology on ARB and ARG have to be more explored. As the best available technology, membranes processes should be widely adopted through the world for removing ARB and ARGs from the perspective of reusing treated wastewater as drinking water. These safe barriers against pollutants diffusion in nature merit more technical and economic expansion for their larger industrial application especially in developing countries.,
机译:为了平衡处理不足(病原体转移最少)和处理过度(消毒剂消耗量不大以及消毒副产物的产生),已开发出的化学消毒技术的控制开始变得越来越重要,这种方式具有巨大的生态和经济优势。这项工作回顾了在消除废水处理特别是消毒过程中消除抗生素抗性细菌(ARB)携带基因(ARG)的领域中最新和相关的研究。传统的消毒技术可能无法有效地使ARB复员,同时将亚致死浓度的ARB和抗生素同时释放到市政污水处理厂的废水中可能会促进接受水细菌之间的抗性发展。各种消毒技术对水和废水(氯化,紫外线照射,Fenton反应,臭氧氧化和光催化氧化)的影响途径值得更多关注。必须进一步探索人工湿地和纳米技术对ARB和ARG的影响。作为最佳的可用技术,从将处理后的废水作为饮用水再利用的角度来看,膜工艺应在世界范围内广泛用于去除ARB和ARG。这些针对自然界中污染物扩散的安全屏障,对于其在更大范围的工业应用(尤其是在发展中国家),值得进行更多的技术和经济扩展。

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