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Styrene-butadiene rubber pyrolysis: Products, kinetics, modelling

机译:苯乙烯-丁二烯橡胶热解:产品,动力学,模型

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摘要

The pyrolysis of SBR (styrene-butadiene rubber) was investigated by a dynamic thermogravimetric apparatus, where it is possible to treat samples in form of cylinders with a weight of about 30 g. Various heating rates between 0.1 and 1 ℃/s were investigated. A distributed parameter model able to describe heating inside the sample and its kinetics of decomposition was built. The pyrolysis enthalpy seems to be a very important parameter; its best fitting value was identified equal to 200 kJ/kg. Light gases produced by pyrolysis were analyzed and the influence of heating rate and sample size on the pyrolysis products (gases, tar, and char) was studied. This investigation showed that for big samples (some tenths of grams) the influence of heating rate on the pyrolysis products is often less important than for few mg samples, as often reported in the literature. Different pyrolysis conditions lead to strong variation of light gas yield, but the molar fraction of most of the light gases is almost constant.
机译:通过动态热重分析仪研究了SBR(丁苯橡胶)的热解,其中可以处理圆柱体形式的样品,重约30 g。研究了0.1至1℃/ s之间的各种加热速率。建立了一个能够描述样品内部加热及其分解动力学的分布式参数模型。热解焓似乎是一个非常重要的参数。确定其最佳拟合值等于200 kJ / kg。分析了热解产生的轻质气体,并研究了加热速率和样品大小对热解产物(气体,焦油和焦炭)的影响。这项研究表明,对于大样本(约十分之一克),加热速率对热解产物的影响通常不如对几毫克样本重要,正如文献中经常报道的那样。不同的热解条件导致轻质气体产率的强烈变化,但是大多数轻质气体的摩尔分数几乎恒定。

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