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基于淀粉的层层组装:棉花防火的高效且可持续方法

Starch-Based Layer by Layer Assembly: Efficient and Sustainable Approach to Cotton Fire Protection.

作者信息

Carosio F, Fontaine G, Alongi J, Bourbigot S

机构信息

†Dipartimento di Scienza Applicata e Tecnologia, Politecnico di Torino, Alessandria Site, Viale Teresa Michel 5, 15121 Alessandria, Italy.

‡Unité Matériaux et Transformations (UMET), CNRS UMR 8207, R2Fire Group, Ecole Nationale Supérieure de Chimie de Lille CS 90108, F-59652 Villeneuve d'Ascq, France.

出版信息

ACS Appl Mater Interfaces. 2015 Jun 10;7(22):12158-67. doi: 10.1021/acsami.5b02507. Epub 2015 May 26.

Abstract

Starch has been employed via layer by layer assembly for building an efficient and sustainable biobased coatings capable of protecting cotton from fire. In order to obtain a better understanding of the coating to substrate relationship, the coating efficiency has been tested on cotton fabrics having different densities (i.e., 100, 200, and 400 g/m(2)). The adopted deposition conditions allow for the buildup of a homogeneous coating even at a low number of deposition steps. The physical and chemical mechanisms are described and related to the achieved results. The coating can greatly enhance the char forming ability of cellulose, nearly doubling the amount of thermally stable organic residue produced by cotton at high temperatures, as assessed by thermogravimetric analyses. After only 2 bilayers deposited, this biobased system is capable of self-extinguishing a flame during flammability tests with less than 5% in weight deposited on cotton. This high efficiency is kept even when the coating is deposited on cotton with the highest density. By cone calorimetry, all treated cottons showed significant reductions (up to 40%) of the total heat released during combustion, thus demonstrating the high efficiency achieved.

摘要

淀粉已通过层层组装用于构建一种高效且可持续的生物基涂层,该涂层能够保护棉花免受火灾。为了更好地理解涂层与基材之间的关系,已在具有不同密度(即100、200和400 g/m²)的棉织物上测试了涂层效率。所采用的沉积条件即使在沉积步骤数量较少的情况下也能形成均匀的涂层。描述了物理和化学机制,并将其与所取得的结果相关联。通过热重分析评估,该涂层可大大提高纤维素的成炭能力,使棉花在高温下产生的热稳定有机残留物的量几乎增加一倍。仅沉积2个双层后,这种生物基体系在可燃性测试中就能使火焰自熄,且沉积在棉花上的重量不到5%。即使将涂层沉积在密度最高的棉花上,这种高效率也能保持。通过锥形量热法,所有处理过的棉花在燃烧过程中释放的总热量均显著降低(高达40%),从而证明了所实现的高效率。

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