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气体的温度和压力及颗粒形状对固定床压降的影响
引用本文:赵庆国,廖晖,李绍芬. 气体的温度和压力及颗粒形状对固定床压降的影响[J]. 化学反应工程与工艺, 2000, 16(1): 1-6
作者姓名:赵庆国  廖晖  李绍芬
作者单位:天津大学化学工程学院,天津,300072;天津大学化学工程学院,天津,300072;天津大学化学工程学院,天津,300072
基金项目:西南化工研究院资助项目,,
摘    要:本文在A-S方程的基础上推导出气体流经固定床时的压降表达式。

关 键 词:固定床  压降  压降模型  温度和压力影响  颗粒形状影响  异形催化剂颗粒
修稿时间:1999-01-11

THE EFFECTS OF PRESSURE,TEMPERATURE,AND PARTICLE SHAPE ON THE PRESSURE DROP IN FIXED BED
ZHAO Qing-guo,LIAO Hui,LI Shao-fen. THE EFFECTS OF PRESSURE,TEMPERATURE,AND PARTICLE SHAPE ON THE PRESSURE DROP IN FIXED BED[J]. Chemical Reaction Engineering and Technology, 2000, 16(1): 1-6
Authors:ZHAO Qing-guo  LIAO Hui  LI Shao-fen
Abstract:Based on A S equation, a new expression was derived for pressure drop in fixed bed with gaseous flow. It was indicated by using the proposed expression that the pressure drop is inversely proportional to the pressure level in the bed, and that the overall pressure drop should be obtained by numerical integration. In the case of isothermal gas flow, however, the overall pressure drop can be expressed in an analytical way similar to Ergun equation. Experimental data demonstrated excellent generality of the presented expression for describing the flow rate pressure drop relation under different pressure levels, while the two coefficients in the expression significantly differ for beds with different shaped catalyst particles. It was also revealed from the analysis to experimental data that the two coefficients (defined as particle shape coefficients in this paper) reflect the effect of catalyst particle shape (including surface roughness) on pressure drop. For the three kinds of abnormal shaped catalyst particles used, i.e., ring, wheel shape and honeycomb shape, difference of 2.03 times was found in the pressure drop due to viscous resistance and form drag, and up to 2.7 times due to inertial resistance. It was demonstrated that the Ergun equation will lead to a considerably wrong prediction of pressure drop in industrial fixed bed reactors with abnormal shaped catalyst particles operating under high pressures and high temperatures. [WT5HZ]
Keywords:fixed bed  pressure drop  pressure drop model  pressure and temperature effect  particle shape effect  abnormal shaped catalyst particles
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