Petukhov Dmitrii I, Johnson Daniel J
Division of Engineering, Water Research Center, New York University Abu Dhabi, Abu Dhabi, United Arab Emirates.
Division of Engineering, Water Research Center, New York University Abu Dhabi, Abu Dhabi, United Arab Emirates.
Adv Colloid Interface Sci. 2024 May;327:103140. doi: 10.1016/j.cis.2024.103140. Epub 2024 Apr 2.
This paper provides a comprehensive overview of recent advancements in membrane modification for fouling mitigation in various water treatment processes, employing carbon nanomaterials such as fullerenes, nanodiamonds, carbon quantum dots, carbon nanotubes, and graphene oxide. Currently, using different carbon nanomaterials for polymeric membrane fouling mitigation is at various stages: CNT-modified membranes have been studied for more than ten years and have already been tested in pilot-scale setups; tremendous attention has been paid to utilizing graphene oxide as a modifying agent, while the research on carbon quantum dots' influence on the membrane antifouling properties is in the early stages. Given the intricate nature of fouling as a colloidal phenomenon, the review initially delves into the factors influencing the fouling process and explores strategies to address it. The diverse chemistry and antibacterial properties of carbon nanomaterials make them valuable for mitigating scaling, colloidal, and biofouling. This review covers surface modification of existing membranes using different carbon materials, which can be implemented as a post-treatment procedure during membrane fabrication. Creating mixed-matrix membranes by incorporating carbon nanomaterials into the polymer matrix requires the development of new synthetic procedures. Additionally, it discusses promising strategies to actively suppress fouling through external influences on modified membranes. In the concluding section, the review compares the effectiveness of carbon materials of varying dimensions and identifies key characteristics influencing the antifouling properties of membranes modified with carbon nanomaterials.
本文全面概述了在各种水处理过程中用于减轻膜污染的膜改性方面的最新进展,其中采用了富勒烯、纳米金刚石、碳量子点、碳纳米管和氧化石墨烯等碳纳米材料。目前,使用不同碳纳米材料减轻聚合物膜污染正处于不同阶段:碳纳米管改性膜已研究了十多年,并且已经在中试规模装置中进行了测试;氧化石墨烯作为改性剂受到了极大关注,而关于碳量子点对膜抗污染性能影响的研究尚处于早期阶段。鉴于污染作为一种胶体现象的复杂性,本综述首先深入探讨了影响污染过程的因素,并探索了解决污染问题的策略。碳纳米材料多样的化学性质和抗菌性能使其在减轻结垢、胶体污染和生物污染方面具有重要价值。本综述涵盖了使用不同碳材料对现有膜进行表面改性,这可以在膜制造过程中作为后处理程序实施。通过将碳纳米材料掺入聚合物基质中来制备混合基质膜需要开发新的合成程序。此外,还讨论了通过对改性膜施加外部影响来积极抑制污染的有前景的策略。在结论部分,本综述比较了不同尺寸碳材料的有效性,并确定了影响碳纳米材料改性膜抗污染性能的关键特性。