Mohammed Shabin, Aburabie Jamaliah, Hashaikeh Raed
NYUAD Water Research Center, Engineering Division, New York University Abu Dhabi, Abu Dhabi, P.O. Box 129188, United Arab Emirates.
NYUAD Water Research Center, Engineering Division, New York University Abu Dhabi, Abu Dhabi, P.O. Box 129188, United Arab Emirates.
Chemosphere. 2024 Sep;363:142927. doi: 10.1016/j.chemosphere.2024.142927. Epub 2024 Jul 22.
Membrane-based separation technologies have drawn significant interest because of their compactness, low energy consumption, and ability to be easily integrated with existing processes. There has been significant interest in the utilization of natural materials derived from sustainable and renewable resources for membrane fabrication. Cellulose is one of the promising polymers which has been extensively studied in membrane fabrication and modification due to its abundant availability, non-toxicity and biodegradability. While there have been several reviews in recent years separately on TFC membranes and cellulose-based materials for different applications, reviews exclusively focusing on cellulosic nanomaterials-based TFC membranes are still lacking. This review provides an overview of the types of cellulose nanomaterials exploited for the development and modification of TFC membranes, particularly those used for desalination and wastewater treatment. We have presented a brief description of cellulose-based nanomaterials followed by a detailed discussion of different studies addressing each cellulose nanomaterial separately. In addition, we have summarized the performance of different studies in the literature, paying particular attention to the enhancement achieved by the incorporation of cellulose nanomaterial in the membrane.
基于膜的分离技术因其紧凑性、低能耗以及易于与现有工艺集成的能力而备受关注。利用源自可持续和可再生资源的天然材料制造膜已引起了广泛关注。纤维素是一种很有前景的聚合物,由于其丰富的可得性、无毒和可生物降解性,已在膜制造和改性方面得到广泛研究。尽管近年来分别有几篇关于不同应用的TFC膜和纤维素基材料的综述,但专门关注基于纤维素纳米材料的TFC膜的综述仍然缺乏。本综述概述了用于TFC膜开发和改性的纤维素纳米材料的类型,特别是那些用于海水淡化和废水处理的材料。我们先简要介绍了基于纤维素的纳米材料,然后分别详细讨论了针对每种纤维素纳米材料的不同研究。此外,我们总结了文献中不同研究的性能,特别关注通过在膜中加入纤维素纳米材料所实现的性能提升。