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Kinetic modelling of the catalytic cracking of n-hexane and n-heptane over a zeolite catalyst

机译:沸石催化剂上正己烷和庚烷催化裂解的动力学模型

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In this paper,a new parameterised microkinetic model for the catalytic cracking of paraffins is described.This model allows us to simulate the complex network of reactions involved in the catalytic cracking of paraffins over an acidic solidthe model includes six different elementary steps (adsorption,desorption,protolytic scission,beta-scission,chain growth and hydride transfer).The reaction scheme is detailed to the carbon atom number of the species and explicitly distinguishes between carbenium ions,paraffins and olefins.The number reaction rate constants required to describe all the individual reactions that are possible within the network is well over one hundred and,by using a system of equations which describes the dependency of the rate constants with the nature of the reaction and the species involved,the number of parameters that are fitted in the model is reduced to fourteen.This microkinetic model was fitted,using a genetic algorithm,to the experimental data for the catalytic cracking of n-hexane over a protonic ZSM-5 catalyst at 450 deg C with very satisfactory results.The model parameters obtained from n-hexane data,were then used to simulate the catalytic cracking of n-heptane under similar conditionsthis simulation compared very well with actual experimental results on n-heptane cracking.This ability to predict the catalytic behaviour for one reaction based on data obtained for other reactions is a significant step in the goal of obtaining models that are able to describe the transformation of a wide range of compounds using a limited number of parameters.
机译:本文描述了一个新的参数化石蜡催化裂化动力学模型,该模型使我们能够模拟酸性固体上石蜡催化裂化所涉及的复杂反应网络,该模型包括六个不同的基本步骤(吸附,解吸,质子断裂,β断裂,链增长和氢化物转移)。该反应方案针对该物种的碳原子数进行了详细描述,并明确区分了碳正离子,石蜡和烯烃。描述所有个体所需的数字反应速率常数网络中可能发生的反应远远超过一百种,并且通过使用方程式系统描述速率常数与反应性质和所涉及的物种之间的相关性,模型中拟合的参数数量为减少到十四个。使用遗传算法将该微动力学模型拟合到催化剂的实验数据中。 c在质子化ZSM-5催化剂上于450℃裂解正己烷,获得了令人满意的结果。从正己烷数据获得的模型参数随后被用于模拟在相似条件下正庚烷的催化裂解。在正庚烷裂化的实际实验结果中得到很好的结果。这种基于其他反应获得的数据预测一个反应的催化行为的能力,对于获得能够描述多种反应形式的模型的目标而言是重要的一步。使用有限数量的参数的化合物。

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