纤维素基膜在药物和有机污染物去除中的前沿应用:最新进展与创新

Cutting-Edge Applications of Cellulose-Based Membranes in Drug and Organic Contaminant Removal: Recent Advances and Innovations.

作者信息

Padhan Bandana, Ryoo Wanki, Patel Madhumita, Dash Jatis Kumar, Patel Rajkumar

机构信息

Department of Biotechnology, School of Life Science and Biotechnology, Adamas University, Kolkata 700126, India.

Bio-Convergence, Integrated Science and Engineering Division, Underwood International College, Yonsei University, 85 Songdogwahak-ro, Yeonsu-gu, Incheon 21983, Republic of Korea.

出版信息

Polymers (Basel). 2024 Oct 20;16(20):2938. doi: 10.3390/polym16202938.

Abstract

The increasing environmental challenges caused by pharmaceutical waste, especially antibiotics and contaminants, necessitate sustainable solutions. Cellulose-based membranes are considered advanced tools and show great potential as effective materials for the removal of drugs and organic contaminants. This review introduces an environmentally friendly composite membrane for the elimination of antibiotics and dye contaminants from water and food, without the use of toxic additives. The potential of cellulose-based membranes in reducing the impact on water quality and promoting environmental sustainability is emphasized. Additionally, the benefits of using biobased cellulose membranes in membrane biological reactors for the removal of antibiotics from pharmaceutical waste and milk are explored, presenting an innovative approach to achieving a circular economy. This review provides recent and comprehensive insights into membrane bioreactor technology, making it a valuable resource for researchers seeking efficient methods to break down antibiotics in industrial wastewater, particularly in the pharmaceutical and dairy industries.

摘要

制药废弃物,尤其是抗生素和污染物所带来的日益严峻的环境挑战,需要可持续的解决方案。基于纤维素的膜被视为先进工具,作为去除药物和有机污染物的有效材料显示出巨大潜力。本综述介绍了一种用于从水和食品中消除抗生素和染料污染物的环保复合膜,且不使用有毒添加剂。强调了基于纤维素的膜在降低对水质的影响和促进环境可持续性方面的潜力。此外,还探讨了在膜生物反应器中使用生物基纤维素膜从制药废弃物和牛奶中去除抗生素的益处,提出了一种实现循环经济的创新方法。本综述提供了关于膜生物反应器技术的最新且全面的见解,使其成为寻求在工业废水中,特别是制药和乳制品行业中分解抗生素的高效方法的研究人员的宝贵资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9575/11511415/1f79b967a3a5/polymers-16-02938-g001.jpg

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