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使用表面改性的纳米晶纤维素集成膜从废水中去除药物以及作为聚合物用于清洁油砂尾矿池。

The Use of Surface-Modified Nanocrystalline Cellulose Integrated Membranes to Remove Drugs from Waste Water and as Polymers to Clean Oil Sands Tailings Ponds.

作者信息

Jackson John, Moallemi Ali, Chiao Mu, Plackett David

机构信息

Faculty of Pharmaceutical Sciences, University of British Columbia, 2405 Wesbrook Mall, Vancouver, BC V6T 1Z3, Canada.

Department of Biomedical Engineering, University of British Columbia, Vancouver, BC V6T 1Z3, Canada.

出版信息

Polymers (Basel). 2021 Nov 11;13(22):3899. doi: 10.3390/polym13223899.

Abstract

There is an urgent environmental need to remediate waste water. In this study, the use of surface-modified nanocrystalline cellulose (CNC) to remove polluting drugs or chemicals from waste water and oil sands tailing ponds has been investigated. CNC was modified by either surface adsorbing cationic or hydrophobic species or by covalent methods and integrated into membrane water filters. The removal of either diclofenac or estradiol from water was studied. Similar non-covalently modified CNC materials were used to flocculate clays from water or to bind naphthenic acids which are contaminants in tailing ponds. Estradiol bound well to hydrophobically modified CNC membrane filter systems. Similarly, diclofenac (anionic drug) bound well to covalently cationically modified CNC membranes. Non-covalent modified CNC effectively flocculated clay particles in water and bound two naphthenic acid chemicals (negatively charged and hydrophobic). Modified CNC integrated into water filter membranes may remove drugs from waste or drinking water and contaminants from tailing ponds water. Furthermore, the ability of modified CNC to flocculate clays particles and bind naphthenic acids may allow for the addition of modified CNC directly to tailing ponds to remove both contaminants. CNC offers an environmentally friendly, easily transportable and disposable novel material for water remediation purposes.

摘要

环境迫切需要对废水进行修复。在本研究中,已对使用表面改性的纳米晶纤维素(CNC)从废水和油砂尾矿池中去除污染药物或化学物质进行了研究。CNC通过表面吸附阳离子或疏水物质或通过共价方法进行改性,并集成到膜式水过滤器中。研究了从水中去除双氯芬酸或雌二醇的情况。类似的非共价改性CNC材料用于使水中的粘土絮凝或结合尾矿池中作为污染物的环烷酸。雌二醇与疏水改性的CNC膜过滤系统结合良好。同样,双氯芬酸(阴离子药物)与共价阳离子改性的CNC膜结合良好。非共价改性的CNC有效地使水中的粘土颗粒絮凝,并结合了两种环烷酸化学物质(带负电荷且疏水)。集成到水过滤膜中的改性CNC可以从废水或饮用水中去除药物,并从尾矿池水中去除污染物。此外,改性CNC使粘土颗粒絮凝并结合环烷酸的能力可能允许将改性CNC直接添加到尾矿池中以去除两种污染物。CNC为水修复目的提供了一种环境友好、易于运输和一次性使用的新型材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/750e/8620018/dc0cd321d6da/polymers-13-03899-g001.jpg

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