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Sustainable flame-retardant polyurethanes using renewable resources

机译:可持续的阻燃聚氨酯使用可再生资源

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摘要

Renewable bio resources such as soybean, orange peel, and castor along with a novel phosphorous based polyol were used to prepare highly flame-retardant polyurethane foams. Diethyl allyl phosphonate (DEAP) and thioglycerol (TG) were used to synthesize phosphorous (P) based flame retardant polyol (DEAP-TG). Polyurethane (PU) foams having a various weight percentage of phosphorous were prepared using a varying amount of DEAP-TG (as a phosphorous source) and other bio-based polyols. Use of DEAP-TG polyol in polyurethane foams showed improved compressive strength without affecting closed cell content and morphology of the foams. The horizontal burning test showed a drastic reduction in self-extinguishing time and weight loss for the PU foams containing DEAP-TG polyol. For example, castor oil and DEAP-TG based PU foam which contains 1.5 wt% P showed significant reduction in self-extinguishing time (from 94s to 1.7s) and weight loss (from 48.5% to 3%) compared to neat castor oil based foams. Cone calorimeter data also showed a significant reduction in peak heat release rate, total heat release, total smoke release, and overall smoke production rate for the foam containing 1.5 wt% P compared to 0 wt% P in the foam. The improved flame retardancy was due to the formation of a protective char layer over the surface of the foam due to decomposition of a phosphorus compound. Our research provides a green alternative to prepare industrial grade flame-retardant polyurethane foams.
机译:可再生生物资源如大豆,橙皮和蓖麻籽以及新的磷基多醇类制备高阻燃剂的聚氨酯泡沫。亚lyl膦酸二乙酯(DEAP)和硫代甘油(Tg)用于合成基于磷(P)的阻燃多元醇(DeAp-Tg)。使用不同量的Deap-Tg(作为磷源)和其他生物基多元醇制备具有各种重量磷的聚氨酯(PU)泡沫。在聚氨酯泡沫中使用Deap-Tg多元醇显示出改善的抗压强度而不影响泡沫的闭合细胞含量和形态。水平燃烧试验显示含有DeAP-Tg多元醇的PU泡沫的自熄时间和体重减轻的急剧降低。例如,含有1.5wt%p的蓖麻油和基于Deap-Tg的PU泡沫显示出与整齐的蓖麻油基于基于整齐的蓖麻油的自熄时间(从94s至1.7s)的显着降低泡沫。锥形量热计数数据还显示出峰值热释放速率,总热释放,总烟雾释放以及泡沫中的泡沫的总烟雾生产速率显着降低,而泡沫中的0wt%p比泡沫中的0wt%p相比。改善的阻燃性是由于由于磷化合物的分解而在泡沫表面上形成保护炭层。我们的研究提供了一种绿色替代方案,可以制备工业级阻燃聚氨酯泡沫。

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