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纤维素纳米材料在废水处理中的应用现状及新趋势。

Current State and New Trends in the Use of Cellulose Nanomaterials for Wastewater Treatment.

机构信息

Cellulose and Paper Department , National Research Centre , 33 El-Behouth Street , Dokki 12622 , Egypt.

Université Grenoble Alpes, CNRS , Grenoble INP, LGP2 , F-38000 Grenoble , France.

出版信息

Biomacromolecules. 2019 Feb 11;20(2):573-597. doi: 10.1021/acs.biomac.8b00839. Epub 2018 Aug 6.


DOI:10.1021/acs.biomac.8b00839
PMID:30020778
Abstract

Nanotechnology has been identified as having great potential for improving the efficiency of water prevention and purification while reducing costs. In this field, two applications of nanocellulose have generated attention and have proven to be a sound strategy as an adsorbent and as a membrane for the removal of contaminants. This potential is attributed to its high aspect ratio, high specific surface area, high capacity retention, and environmental inertness. In addition to the aforementioned advantages, the presence of active sites allows the incorporation of chemical moieties that may enhance the binding efficiency of pollutants to the surface. This review paper intends to understand how nanocellulose affects the adsorption behavior of water pollutants, e.g., heavy metal ions, microbes, dyes, and organic molecules, and is divided in two parts. First, a general overview of the different strategies for the preparation of nanocellulose is described, and its specific properties are reported. The second section reports some of its application as adsorbent nanomaterial or separation membrane. It appears that the use of nanocellulose for these applications is very promising for wastewater treatment industries.

摘要

纳米技术被认为在提高水的预防和净化效率的同时降低成本方面具有巨大的潜力。在这个领域,纳米纤维素的两个应用引起了关注,并已被证明是作为吸附剂和去除污染物的膜的合理策略。这种潜力归因于其高纵横比、高比表面积、高容量保持率和环境惰性。除了上述优点之外,活性位点的存在允许引入化学部分,这可能会提高污染物与表面的结合效率。本文综述了纳米纤维素如何影响水污染物(例如重金属离子、微生物、染料和有机分子)的吸附行为,并分为两部分。第一部分,描述了制备纳米纤维素的不同策略的概述,并报告了其特定的性质。第二部分报道了它作为吸附纳米材料或分离膜的一些应用。对于废水处理行业来说,纳米纤维素在这些应用中的使用似乎非常有前景。

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[5]
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[6]
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[7]
Emerging environmentally friendly bio-based nanocomposites for the efficient removal of dyes and micropollutants from wastewater by adsorption: a comprehensive review.

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[8]
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J Nanobiotechnology. 2024-1-10

[9]
modified nanocellulose/alginate hydrogel composite beads for purifying mining effluents.

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[10]
Isotropic Gels of Cellulose Nanocrystals Grafted with Dialkyl Groups: Influence of Surface Group Topology from Nonlinear Oscillatory Shear.

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