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Biomacromolecules as novel green flame retardant systems for textiles: an overview

机译:生物大分子作为纺织品的新型绿色阻燃系统:概述

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The field of flame retardancy for polymeric materials (i.e. plastics, foams and in particular textiles) is currently facing several changes and challenges because some of the current halogenated or phosphorus-based flame retardants (FRs) have proven to be persistent, bioaccumulative, carcinogenic and/or toxic for animals and humans. Thus, the search for highly efficient green flame retardant products, which are exploitable by using simple and environmentally-friendly techniques (i.e. impregnation/exhaustion, layer-by-layer), is driving the researchers towards the development of worthy alternatives. In this context, very recently, biomacromolecules (in particular proteins and deoxyribonucleic acid) have been thoroughly investigated because they exhibit significant potentials as novel green FRs for selected fabrics (cotton, polyester and their blends), as well as for bulk polymers (ethylene vinyl-acetate copolymers) and foamed polyurethane substrates. This work aims to review our recent results related to the "unconventional" use of these biomacromolecules as FRs with low-environmental impact for fabric substrates, as well as the challenges and the perspectives that these products may offer in the forthcoming years in the field of flame retardancy for textiles. To provide the basic knowledge necessary for understanding the role of biomacromolecules as FRs for textiles to the readers, first of all the description of the structure, main properties and conventional applications of proteins and deoxyribonucleic acid is provided; the thermal and thermo-oxidative stability, the reaction to a flame exposure or to an irradiative heat source of the selected fabrics - cotton, polyester and their blends - will be discussed, as well.
机译:聚合材料(例如,塑料,泡沫塑料,尤其是纺织品)的阻燃领域目前面临着一些变化和挑战,因为已证明某些目前的卤化或磷基阻燃剂(FR)具有持久性,生物蓄积性,致癌性和对动物和人类有毒。因此,寻求通过使用简单且环保的技术(即,浸渍/排气,逐层)可开发的高效绿色阻燃产品,正在推动研究人员开发有价值的替代品。在此背景下,最近对生物大分子(特别是蛋白质和脱氧核糖核酸)进行了彻底研究,因为它们作为选定织物(棉,聚酯及其混合物)以及散装聚合物(乙烯乙烯基)的新型绿色阻燃剂具有巨大的潜力。 -醋酸盐共聚物)和发泡聚氨酯基材。这项工作的目的是回顾我们最近与将这些生物大分子用作具有低环境影响的阻燃剂对织物底物有关的最新结果,以及这些产品在未来几年内所面临的挑战和前景。纺织品的阻燃性。为了向读者提供了解生物大分子作为纺织品的阻燃剂的作用所必需的基础知识,首先提供蛋白质和脱氧核糖核酸的结构,主要特性和常规应用的描述;还讨论了所选织物的热和热氧化稳定性,与火焰或辐射热源的反应-棉,聚酯及其混合物。

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