水凝胶在微生物水处理中的应用

Estefane Caetano Nazzari, Natália de Camargo Lima Beluci, Grace Anne Vieira Magalhães Ghiotto, J. P. Natal, R. Bergamasco, R. Gomes
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引用次数: 4

摘要

饮用水处理的要求之一是病原微生物的去除。通常,最常用的技术是使用无机纳米颗粒或氯释放前体来灭活细菌。虽然这些治疗方法非常有效,但随着时间的推移,它们的抗菌活性往往会下降,释放出潜在的有毒离子,并导致细菌耐药性。从这个意义上说,水凝胶基材料的开发已成为水消毒的潜在替代方案。水凝胶的合成和功能化已被证明可以提高微生物的整体保留性能。我们的工作综述了水凝胶基材料的合成和功能化,它们的优点和局限性,以及水凝胶用于水消毒的最新研究进展。展望了水凝胶基材料在水处理领域的应用前景。扩大水凝胶在水处理中的应用的主要挑战是缺乏评估这些材料大规模适用性的可行性的研究,考虑到实际系统。大多数研究都是在实验室规模的受控环境下进行的实验,其中没有考虑微生物与现实世界污染物之间的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydrogel Applications to Microbiological Water Treatment
ABSTRACT One of the requirements for the treatment of drinking water is the removal of pathogenic microorganisms. Typically, the most used techniques apply inorganic nanoparticles or chlorine release precursors to inactivate bacteria. While these treatments are very effective, they tend to show a decrease in antimicrobial activity over time, releasing potentially toxic ions and contributing to bacterial resistance. In this sense, the development of hydrogel-based materials has become a potential alternative for water disinfection. The synthesis and functionalization of hydrogels have been proven to improve the global performance of microorganism retention. Our work provides an overview of the synthesis and functionalization of hydrogel-based materials, their advantages and limitations, and the latest research on the use of hydrogels for water disinfection. The future panorama of hydrogel-based materials applicability for water treatment is also provided. The main challenge to expand the use of hydrogels in water treatment is the lack of research assessing the feasibility of large-scale applicability of these materials, considering real systems. Most of the studies carried out experiments at laboratory scale with controlled situations, in which interactions between microorganisms and real world contaminants were not considered.
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