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Flame Retardation of Cellulosic Fibers Characterized by Apparent Activation Energy of Thermal Degradation

机译:纤维素纤维的阻燃特性以热降解的表观活化能为特征

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This paper extends previous investigations on the thermal degradation behvior of cotton fabric treated with compunds containing different kinds of elements that contribute to flame retardation. The apparent activation energy (Ea) is evaluated by Ozawa's method at different stages of thermal degradation, represented by the thermal degradation onset point, maximum, degradation rate point, and flash point, to observe the variation of Ea in the process of thermal degradation. Ea values of flame retardant samples are generally lower, whereas those of flammabel samples are higher than that ofuntreated cotton fabric at every step throughout thermal degradation. Such results suggest that flame retardatn materials decompose more easily than flammable samples, which supports the fact reported in earlier work that the thermal degradation of flame retardant materials is initiated at lower temperatures in comparision with that of flammable materials.
机译:本文扩展了以往对棉织物热降解性能的研究,该棉质织物含有能促进阻燃的不同元素的化合物。用小泽方法在热降解的不同阶段评估表观活化能(Ea),以热降解起始点,最大值,降解速率点和闪点表示,以观察Ea在热降解过程中的变化。在整个热降解过程的每个步骤中,阻燃剂样品的Ea值通常较低,而辉石样品的Ea值高于未处理的棉织物。这些结果表明,阻燃材料比易燃样品更易分解,这支持了早期工作中报道的事实,即与易燃材料相比,阻燃材料的热降解是在较低温度下引发的。

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