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关于用于先进水处理的纳米纤维素和超疏水特性的综述

A Review on Nanocellulose and Superhydrophobic Features for Advanced Water Treatment.

作者信息

Iqbal Danish, Zhao Yintao, Zhao Renhai, Russell Stephen J, Ning Xin

机构信息

Shandong Center for Engineered Nonwovens, Industrial Research Institute of Nonwovens & Technical Textiles, College of Textiles & Clothing, Qingdao University, Qingdao 266071, China.

Leeds Institute of Textiles and Colour (LITAC), School of Design, University of Leeds, Leeds LS2 9JT, UK.

出版信息

Polymers (Basel). 2022 Jun 9;14(12):2343. doi: 10.3390/polym14122343.

Abstract

Globally, developing countries require access to safe drinking water to support human health and facilitate long-term sustainable development, in which waste management and control are critical tasks. As the most plentiful, renewable biopolymer on earth, cellulose has significant utility in the delivery of potable water for human consumption. Herein, recent developments in the application of nanoscale cellulose and cellulose derivatives for water treatment are reviewed, with reference to the properties and structure of the material. The potential application of nanocellulose as a primary component for water treatment is linked to its high aspect ratio, high surface area, and the high number of hydroxyl groups available for molecular interaction with heavy metals, dyes, oil-water separation, and other chemical impurities. The ability of superhydrophobic nanocellulose-based textiles as functional fabrics is particularly acknowledged as designed structures for advanced water treatment systems. This review covers the adsorption of heavy metals and chemical impurities like dyes, oil-water separation, as well as nanocellulose and nanostructured derivative membranes, and superhydrophobic coatings, suitable for adsorbing chemical and biological pollutants, including microorganisms.

摘要

在全球范围内,发展中国家需要获得安全饮用水以保障人类健康并促进长期可持续发展,其中废物管理和控制是关键任务。作为地球上最丰富的可再生生物聚合物,纤维素在提供供人类饮用的饮用水方面具有重要用途。本文参考材料的性质和结构,综述了纳米级纤维素和纤维素衍生物在水处理应用中的最新进展。纳米纤维素作为水处理主要成分的潜在应用与其高长径比、高表面积以及大量可用于与重金属、染料、油水分离和其他化学杂质进行分子相互作用的羟基有关。超疏水纳米纤维素基纺织品作为功能性织物的能力尤其被认为是先进水处理系统的设计结构。本综述涵盖了重金属和染料等化学杂质的吸附、油水分离,以及适用于吸附化学和生物污染物(包括微生物)的纳米纤维素和纳米结构衍生物膜以及超疏水涂层。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/098c/9229312/1bcc31e22438/polymers-14-02343-g001.jpg

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