Akinsemolu Adenike A, Onyeaka Helen
Department of Integrated Science, Adeyemi Federal University of Education, Ondo 351101, Ondo, Nigeria.
School of Chemical Engineering, University of Birmingham, Birmingham B15 2TT, UK.
Polymers (Basel). 2024 Aug 2;16(15):2205. doi: 10.3390/polym16152205.
Every year, contaminated water is responsible for over one million deaths globally. Microbiology leads other fields in the development of solutions to water contamination to reduce these deaths while advancing the achievement of SDG 6, which aims to ensure universal access to water and sanitation. This article explores hydrogel polymers as a solution to water contamination through microbial control. Using a systematic approach, this study collects, reviews, analyzes, and synthesizes the findings of studies on the structure, properties, and mechanisms used by hydrogel polymers in pathogen control in water systems, emphasizing recent advances in microbiology that have improved the antimicrobial properties of hydrogel polymers, enhanced their synthetic properties, and improved their overall ability to control the spread of pathogens in water. Other additional notable findings, including the applications of hydrogel polymers in water systems, the environmental implications of using the method to decontaminate and purify water for various purposes, and the regulatory standards needed to reinforce the viability and effectiveness of the adaptation of hydrogel polymers for the control of harmful or unwanted microorganisms in water systems, inform the presented inferences on the future of hydrogel technologies and new opportunities for the expansion of their commercial use.
每年,受污染的水在全球导致超过100万人死亡。在开发水污染解决方案以减少这些死亡人数方面,微生物学领先于其他领域,同时推动了可持续发展目标6的实现,该目标旨在确保人人享有水和卫生设施。本文探讨水凝胶聚合物作为一种通过控制微生物来解决水污染问题的方案。本研究采用系统的方法,收集、综述、分析并综合了关于水凝胶聚合物在水系统中控制病原体的结构、性质和作用机制的研究结果,重点介绍了微生物学领域的最新进展,这些进展改善了水凝胶聚合物的抗菌性能,增强了其合成性能,并提高了其控制水系统中病原体传播的整体能力。其他值得注意的发现,包括水凝胶聚合物在水系统中的应用、使用该方法对水进行各种目的的净化和消毒对环境的影响,以及加强水凝胶聚合物在水系统中控制有害或不需要的微生物的适用性的可行性和有效性所需的监管标准,为有关水凝胶技术的未来以及扩大其商业用途的新机会的推断提供了依据。