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纤维素及其纳米衍生物作为疏水和防火表面的综述

Cellulose and Its Nano-Derivatives as a Water-Repellent and Fire-Resistant Surface: A Review.

作者信息

Tavakoli Mehrnoosh, Ghasemian Ali, Dehghani-Firouzabadi Mohammad Reza, Mazela Bartłomiej

机构信息

Department of Pulp and Paper Technology, Gorgan University of Agricultural Sciences & Natural Resources, Gorgan 4913815739, Iran.

Faculty of Forestry and Wood Technology, Poznan University of Life Sciences, Wojska Polskiego 28, 60-637 Poznan, Poland.

出版信息

Materials (Basel). 2021 Dec 23;15(1):82. doi: 10.3390/ma15010082.

Abstract

The inevitable destructive effects of moisture and temperature are obvious in cellulosic and nanocellulosic substrates. These materials are the main foundations of interdependent industries that produce products such as currency notes or high-quality packaging for sanitary, cosmetics, or ammunition in the defense industry. Therefore, it is essential to develop procedures to eliminate problems arising from humidity and fire to improve the quality of these green and sustainable materials. The production of waterproof and flame-resistant cellulose-based substrates has drawn increasing attention to resolve these drawbacks. In this review paper, we have initially summarized the most accessible cellulosic substrates, different kinds of nanocellulose, and the general information about water repellents and intumescent fireproof surfaces. Then, the potential and necessity of using cellulosic biobased substrates are addressed for use in modified shapes as waterproof and fire inhibitor coatings. Cost-effective, eco-friendly, and durable, dual-function coatings are also introduced as future challenges, which are exploited as water-repellents and flame-retardant cellulose-based surfaces for pulp and paper applications.

摘要

水分和温度不可避免的破坏作用在纤维素和纳米纤维素基材中十分明显。这些材料是相互依存产业的主要基础,这些产业生产诸如钞票或用于卫生、化妆品或国防工业弹药的高质量包装等产品。因此,开发消除湿度和火灾问题的程序以提高这些绿色可持续材料的质量至关重要。生产防水和阻燃纤维素基基材已越来越受到关注,以解决这些缺点。在这篇综述论文中,我们首先总结了最易获取的纤维素基材、不同种类的纳米纤维素,以及关于拒水剂和膨胀型防火表面的一般信息。然后,探讨了使用纤维素生物基基材作为防水和防火抑制剂涂层用于改性形状的潜力和必要性。还介绍了具有成本效益、环保且耐用的双功能涂层作为未来的挑战,这些涂层被用作纸浆和造纸应用中基于纤维素的拒水和阻燃表面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b085/8746080/333a9aea3ef1/materials-15-00082-g004.jpg

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