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Substantive intumescence from phosphorylated 1,3-propanediol derivatives substituted on to cellulose

机译:从磷酸化的1,3-丙二醇衍生物取代到纤维素后的实质膨胀

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摘要

Cellulose flame retarded with an ammonia-cured, polycondensed tetrakis(hydroxymethyl)phosphonium-urea derivative (as Proban CC(R), Rhodia) phosphorylated by cyclic 1,3-propanediol phosphoryl chloride and cyclic 2,2-diethyl-1,3-propanediol phosphoryl chloride can give phosphorus levels up to 6.9% (w/w). Such high levels suggest up to 35.5% yields of reaction if the free secondary amine groups present in the crosslinked flame retardant and the C(6) primary hydroxyl groups are the assumed phosphorylation sites. The presence of substituted propanediol phosphonate moieties in the fibers significantly increases char formation above 400((C))C and scanning electron microscopy indicates that the char has an intumescent structure. The influence of the chemical structure of the propanyl moeity to the reaction extent of the possible phosphorylation sites and the char formation mechanism during thermal pyrolysis of the modified samples are discussed. (C) 2003 Wiley Periodicals, Inc. [References: 7]
机译:纤维素被阻燃的,经环状1,3-丙二醇磷酰氯和环状2,2-二乙基-1,3-磷酸化的氨固化的缩合四(羟甲基)phosph-脲衍生物(Proban CC(R),Rhodia)阻燃丙二醇磷酰氯的磷含量可高达6.9%(w / w)。如果存在于交联的阻燃剂中的游离仲胺基团和C(6)伯羟基是假定的磷酸化位点,则如此高的含量表明反应产率高达35.5%。纤维中取代的丙二醇膦酸酯部分的存在显着增加了炭在400((C))C以上的形成,并且扫描电子显微镜表明炭具有膨胀结构。讨论了丙烷基化学结构对改性样品热裂解过程中可能的磷酸化位点反应程度和焦炭形成机理的影响。 (C)2003 Wiley Periodicals,Inc. [参考:7]

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