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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Chemistry and kinetics of chemical vapor infiltration of pyrocarbon - VII: infiltration of capillaries of equal size
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Chemistry and kinetics of chemical vapor infiltration of pyrocarbon - VII: infiltration of capillaries of equal size

机译:焦碳化学蒸气渗透的化学和动力学-VII:相等大小的毛细管渗透

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摘要

Capillaries, 1 mm in diameter and 17 mm in depth, were infiltrated at a temperature of 1100 degrees C and pressures of 20 kPa (pure methane) and 30 kPa (methane-hydrogen mixture (7.1)). The residence time of the gas in the deposition reactor was 0.5 s, at the lower pressure of 20 kPa, residence times of 1 and 2 s were studied additonally. The thickness of the deposited carbon layers was determined using a X-ray microscope, i.e., without cutting the samples. In the experiments with 0.5 and 1 s residence times an increase of the deposition rate from the mouth to the depth of the pores was obtained. The gradient of the deposition rate decreases with increasing residence time of the gas and becomes negative at 2 s. Hydrogen, either formed by decomposition of methane or added to the feed gas, leads to an increase in the gradient. The homogeneous -heterogeneous model of carbon deposition from methane is used to interpret the results with special consideration of deposition chemistry and diffusivity of the relevant hydrocarbon species. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 19]
机译:在1100℃的温度和20kPa(纯甲烷)和30kPa(甲烷-氢混合物(7.1))的压力下渗入直径为1mm,深度为17mm的毛细管。气体在沉积反应器中的停留时间为0.5 s,在20 kPa的较低压力下,另外研究了1和2 s的停留时间。使用X射线显微镜确定沉积的碳层的厚度,即不切割样品。在停留时间为0.5和1 s的实验中,从口腔到孔深的沉积速率得到了提高。沉积速率的梯度随着气体停留时间的增加而降低,并在2 s处变为负值。通过甲烷分解形成的氢气或添加到进料气中的氢气都会导致梯度增加。甲烷碳沉积的均质-非均质模型用于解释结果,并特别考虑了沉积化学和相关烃类物质的扩散性。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:19]

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