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含膦酸酯聚酰胺胺用作棉织物阻燃剂的适用性研究

On the Suitability of Phosphonate-Containing Polyamidoamines as Cotton Flame Retardants.

作者信息

Beduini Alessandro, Albanese Domenico, Carosio Federico, Manfredi Amedea, Ranucci Elisabetta, Ferruti Paolo, Alongi Jenny

机构信息

Dipartimento di Chimica, Università Degli Studi di Milano, Via C. Golgi 19, 20133 Milan, Italy.

Dipartimento di Scienza Applicata e Tecnologia, Politecnico di Torino, Alessandria Campus, Via T. Michel 5, 15121 Alessandria, Italy.

出版信息

Polymers (Basel). 2023 Apr 13;15(8):1869. doi: 10.3390/polym15081869.

Abstract

A novel polyamidoamine (M-PCASS) bearing a disulfide group and two phosphonate groups per repeat unit was obtained by reacting ,'-methylenebisacrylamide with a purposely designed bis-sec-amine monomer, namely, tetraethyl(((disulfanediylbis(ethane-2,1-diyl))bis(azanediyl))bis(ethane-2,1-diyl))bis(phosphonate) (PCASS). The aim was to ascertain whether the introduction of phosphonate groups, well-known for inducing cotton charring in the repeat unit of a disulfide-containing PAA, increased its already remarkable flame retardant efficacy for cotton. The performance of M-PCASS was evaluated by different combustion tests, choosing M-CYSS, a polyamidoamine containing a disulfide group but no phosphonate groups, as a benchmark. In horizontal flame spread tests (HFSTs), M-PCASS was a more effective flame retardant than M-CYSS at lower add-ons with no afterglow. In vertical flame spread tests, the only effect was afterglow suppression with no self-extinguishment even at add-ons higher than in HFSTs. In oxygen-consumption cone calorimetry tests, M-PCASS decreased the heat release rate peak of cotton by 16%, the CO emission by 50%, and the smoke release by 83%, leaving a 10% residue to be compared with a negligible residue for untreated cotton. Overall, the set of results obtained envisage that the newly synthesized phosphonate-containing PAA M-PCASS may be suitable for specific applications as flame retardant, where smoke suppression or reduction of total gas released is a key requirement.

摘要

通过使N,N'-亚甲基双丙烯酰胺与特意设计的双仲胺单体,即四乙基(((二硫代二亚乙基)双(氮杂二亚乙基))双(乙烷-2,1-二亚基))双(膦酸酯)(PCASS)反应,得到了一种新型聚酰胺胺(M-PCASS),每个重复单元带有一个二硫键和两个膦酸酯基团。目的是确定膦酸酯基团的引入是否会提高其对棉花已经显著的阻燃效果,膦酸酯基团因能在含二硫键的聚酰胺胺的重复单元中诱导棉花炭化而闻名。以含二硫键但不含膦酸酯基团的聚酰胺胺M-CYSS作为基准,通过不同的燃烧试验评估了M-PCASS的性能。在水平火焰蔓延试验(HFSTs)中,在较低添加量且无余辉的情况下,M-PCASS比M-CYSS是更有效的阻燃剂。在垂直火焰蔓延试验中,唯一的效果是抑制余辉,即使在高于HFSTs的添加量下也不会自熄。在氧消耗锥形量热法试验中,M-PCASS使棉花的热释放速率峰值降低了16%,CO排放量降低了50%,烟雾释放量降低了83%,留下10%的残渣,而未处理的棉花残渣可忽略不计。总体而言,所获得的一系列结果表明,新合成的含膦酸酯的聚酰胺胺M-PCASS可能适用于作为阻燃剂的特定应用,在这些应用中,抑制烟雾或减少总气体释放是关键要求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67f9/10144353/2faa70785565/polymers-15-01869-sch001.jpg

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