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The Potential for Bio-Sustainable Organobromine-Containing Flame Retardant Formulations for Textile Applications—A Review

机译:纺织应用含生物可持续的有机摩铃常规的阻燃剂的可能性 - 审查

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摘要

This review considers the challenge of developing sustainable organobromine flame retardants (BrFRs) and alternative synergists to the predominantly used antimony III oxide. Current BrFR efficiencies are reviewed for textile coatings and back-coatings with a focus on furnishing and similar fabrics covering underlying flammable fillings, such as flexible polyurethane foam. The difficulty of replacing them with non-halogen-containing systems is also reviewed with major disadvantages including their extreme specificity with regard to a given textile type and poor durability.The possibility of replacing currently used BrFRs for textiles structures that mimic naturally occurring organobromine-containing species is discussed, noting that of the nearly 2000 such species identified in both marine and terrestrial environments, a significant number are functionalised polybrominated diphenyl ethers, which form part of a series of little understood biosynthetic biodegradation cycles.The continued use of antimony III oxide as synergist and possible replacement by alternatives, such as the commercially available zinc stannates and the recently identified zinc tungstate, are discussed. Both are effective as synergists and smoke suppressants, but unlike Sb203, they have efficiencies dependent on BrFR chemistry and polymer matrix or textile structure. Furthermore, their effectiveness in textile coatings has yet to be more fully assessed.In conclusion, it is proposed that the future of sustainable BrFRs should be based on naturally occurring polybrominated structures developed in conjunction with non-toxic, smoke-suppressing synergists such as the zinc stannates or zinc tungstate, which have been carefully tailored for given polymeric and textile substrates.
机译:该审查考虑了发展可持续的有机摩键阻燃剂(BRFR)和替代协同作用于主要使用的锑III氧化物的挑战。目前的BRFR效率是针对纺织涂料和背涂层的疗效,专注于家具和类似织物覆盖下面的易燃填充物,例如柔性聚氨酯泡沫。用含非卤素系统替换它们的难度也具有主要缺点,包括对给定的纺织品类型和耐久性不良的主要特异性。更换目前使用的纺织品结构的可能性是模拟天然存在的有机摩中含有的有机摩键的结构讨论了物种,注意到在陆地和陆地环境中鉴定的近2000种物种,这是官能化的多溴二苯醚,其形成一系列少于理解的生物合成生物降解循环。继续使用锑III氧化物讨论了替代品的协同作用和可能的替代品,例如市售的锌静坐和最近鉴定的钨酸锌。两者都是有效的增​​效剂和烟雾抑制剂,而是与SB203不同,它们具有效率依赖于BRFR化学和聚合物基质或纺织结构。此外,它们在纺织涂料中的有效性尚未得到更全面的评估。在结束时,建议可持续BRFRS的未来应基于自然发生的多溴结构与无毒,烟雾抑制协同作用以及如此锌静止物或钨酸盐,已经精心定制,因为给定的聚合物和纺织基材。

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