详细信息
用双重孔模型计算变换催化剂内扩散效率因子
THE EFFECTIVENESS FACTOR OF HIGH TEMPERATURE SHIFT CATALYST CALCULATED BY RANDOM PORE MODEL
文献类型:期刊文献
中文题名:用双重孔模型计算变换催化剂内扩散效率因子
英文题名:THE EFFECTIVENESS FACTOR OF HIGH TEMPERATURE SHIFT CATALYST CALCULATED BY RANDOM PORE MODEL
作者:刘国际[1];姚佩芳[1];朱炳辰[1]
机构:[1]华东化工学院,上海200237
年份:1993
卷号:21
期号:4
起止页码:395
中文期刊名:燃料化学学报
外文期刊名:Journal of Fuel Chemistry and Technology
收录:CSTPCD;;Scopus;北大核心:【北大核心1992】;CSCD:【CSCD2011_2012】;
语种:中文
中文关键词:双重孔模型;变换;催化剂;内扩散
外文关键词:random pore model, parallel cross-linked pore model, shift catalyst, effectiveness factors
摘要:本文将双重孔模型应用于WB~2、B109变换催化剂多组分反应系统内扩散效率因子的计算,并与平行交联孔模型进行比较。对WB-2加压变换催化剂用双重孔模型计算,计算值与实验值相对偏差在3.86%~53.94%;对B109变换催化剂,计算值与实验值偏差在-28.24%~-3.31%。
In this paper, the random pore model and the parallel cross -linked pore model have been used to calculate the effectiveness factors of WB- 2 and B109 high temperature shift catalysts. For WB - 2 catalyst, the relative deviations of calculated values from experimental data are between 3.86% and 53.94%, and those for B109 water shift catalyst are between -28.24 % and -3.31%, using the random pore model. With the parallel cross -linked pore model , the relative deviations are between - 20.88% and 11.59% for WB - 2 catalyst and between - 24.7% and 2.04% for B109 catalyst.
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