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负载TiO纳米颗粒的纤维素纳米纤维(CNFs)气凝胶的构建及其在有机污染物处理中的应用

Construction of the Cellulose Nanofibers (CNFs) Aerogel Loading TiO NPs and Its Application in Disposal of Organic Pollutants.

作者信息

Li Kang, Zhang Xuejie, Qin Yan, Li Ying

机构信息

Key Laboratory of Colloid and Interface Chemistry of State Education Ministry, Shandong University, Jinan 250100, China.

出版信息

Polymers (Basel). 2021 Jun 2;13(11):1841. doi: 10.3390/polym13111841.

Abstract

Aerogels have been widely used in the adsorption of pollutants because of their large specific surface area. As an environmentally friendly natural polysaccharide, cellulose is a good candidate for the preparation of aerogels due to its wide sources and abundant polar groups. In this paper, an approach to construct cellulose nanofibers aerogels with both the good mechanical property and the high pollutants adsorption capability through chemical crosslinking was explored. On this basis, TiO nanoparticles were loaded on the aerogel through the sol-gel method followed by the hydrothermal method, thereby the enriched pollutants in the aerogel could be degraded synchronously. The chemical cross-linker not only helps build the three-dimensional network structure of aerogels, but also provides loading sites for TiO. The degradation efficiency of pollutants by the TiO@CNF Aerogel can reach more than 90% after 4 h, and the efficiency is still more than 70% after five cycles. The prepared TiO@CNF Aerogels have high potential in the field of environmental management, because of the high efficiency of treating organic pollutes and the sustainability of the materials. The work also provides a choice for the functional utilization of cellulose, offering a valuable method to utilize the large amount of cellulose in nature.

摘要

气凝胶因其大比表面积而被广泛应用于污染物吸附。纤维素作为一种环境友好型天然多糖,因其来源广泛且含有丰富的极性基团,是制备气凝胶的理想选择。本文探索了一种通过化学交联构建兼具良好机械性能和高污染物吸附能力的纤维素纳米纤维气凝胶的方法。在此基础上,通过溶胶-凝胶法结合水热法将TiO纳米颗粒负载到气凝胶上,从而使气凝胶中富集的污染物能够被同步降解。化学交联剂不仅有助于构建气凝胶的三维网络结构,还为TiO提供了负载位点。TiO@CNF气凝胶对污染物的降解效率在4小时后可达90%以上,经过五个循环后效率仍超过70%。所制备的TiO@CNF气凝胶在环境治理领域具有很高的潜力,因其对有机污染物的处理效率高且材料具有可持续性。该工作也为纤维素的功能化利用提供了一种选择,为利用自然界中大量的纤维素提供了一种有价值的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45a5/8199583/e96d9367d410/polymers-13-01841-g001.jpg

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