中间相沥青纤维等温氧化稳定的模拟

Toshikuni Yonemoto, Hiroaki Nitta, Tomoaki Kawata, Teiriki Tadaki
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引用次数: 3

摘要

采用等温实验研究了石油沥青中间相纤维的稳定速率过程。通过测定反应器排出气体中氧浓度的时间过程,定量测定了纤维的耗氧量。考虑了分子氧的传质和纤维中活性位点的自氧化反应,建立了纤维稳定化的数学模型,并对模型方程进行了数值模拟。通过将出口气体中氧浓度的实验值与理论值进行比较,确定了纤维中分子氧的有效扩散系数、反应速率常数和分子氧的气固平衡系数等物理参数。在理论结果的基础上,讨论了稳定的物理化学过程。结论是,即使反应没有深入纤维,稳定也是完全的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling of the isothermal oxidative stabilization of mesophase pitch fibre

Isothermal experiments were conducted to elucidate the rate process of stabilization for mesophase petroleum pitch fibre. The rate of oxygen consumption in the fibres was quantified by measuring the time course of the oxygen concentration in the effluent gas from the reactor. A mathematical model of the stabilization, in which the mass transfer of molecular oxygen and the autoxidation reaction with the active sites in the fibre were taken into account, was also constructed and a numerical simulation of the model equations was conducted. Physical parameters such as the effective diffusivity of molecular oxygen in the fibre, the reaction rate constant and the gas—solid equilibrium coefficient of molecular oxygen, which are included in the mathematical model, were determined by comparing the experimental values of oxygen concentration in the exit gas with theoretical values. Physicochemical processes of the stabilization were also discussed on the basis of the theoretical results. It was concluded that the stabilization is complete even when the reaction does not proceed deeply into the fibre.

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