Extrudate Trilobe Catalysts and Loading Effects on Pressure Drop and Dynamic Liquid Holdup in Porous Media of Trickle Bed Reactors

被引:26
作者
Bazmi, M. [1 ]
Hashemabadi, S. H. [2 ]
Bayat, M. [1 ]
机构
[1] RIPI, Tehran, Iran
[2] Iran Univ Sci & Technol, Sch Chem Engn, Computat Fluid Dynam CFD Res Lab, Tehran 16846, Iran
关键词
Porous media; Trilobe catalyst; Dense and sock loading; Pressure drop; Dynamic liquid holdup; HYDRODYNAMIC PARAMETERS; FLOW-THROUGH; PACKED-BEDS;
D O I
10.1007/s11242-013-0199-x
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The hydrodynamics of concurrent gas-liquid downflow through a porous media of fixed bed reactor has been studied experimentally in a range of trickling flow rates. A pilot bed is packed with industrial spherical and extrudate trilobe catalysts. The industrial trilobe catalysts are packed in a bed using two different methods: random close or dense packing and random sock packing. The experiments are performed for single phase in the cases of wet and dry packed beds and for two-phase flow conditions. The comparisons of pressure drops as well as liquid holdup are carried out for the above three different porous media, random close, dense packing and random sock packing. It is shown that the pressure drop of the dense loaded bed is higher than that of spherical particles which have approximately the same porosity. The results also revealed that the bed porosity, shape and contact points of the loaded catalyst have significant effects on the dynamic liquid holdup of the TBRs. Finally, a new correlation was developed for dynamic liquid holdup and pressure drop calculation for trilobe dense and sock catalyst beds and beds which are loaded with spherical particles.
引用
收藏
页码:535 / 553
页数:19
相关论文
共 25 条
[1]   Liquid holdup measurement techniques in laboratory high pressure trickle bed reactors [J].
Al-Dahhan, M ;
Highfill, W .
CANADIAN JOURNAL OF CHEMICAL ENGINEERING, 1999, 77 (04) :759-765
[2]   High-pressure trickle-bed reactors: A review [J].
AlDahhan, MH ;
Larachi, F ;
Dudukovic, MP ;
Laurent, A .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 1997, 36 (08) :3292-3314
[3]   A two-fluid model for flow regime transition in gas-liquid trickle-bed reactors [J].
Attou, A ;
Ferschneider, G .
CHEMICAL ENGINEERING SCIENCE, 1999, 54 (21) :5031-5037
[4]   Modelling of the hydrodynamics of the cocurrent gas-liquid trickle flow through a trickle-bed reactor [J].
Attou, A ;
Boyer, C ;
Ferschneider, G .
CHEMICAL ENGINEERING SCIENCE, 1999, 54 (06) :785-802
[5]   CFD simulation and experimental study for two-phase flow through the trickle bed reactors, sock and dense loaded by trilobe catalysts [J].
Bazmi, M. ;
Hashemabadi, S. H. ;
Bayat, M. .
INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2011, 38 (03) :391-397
[6]   Modification of Ergun equation for application in trickle bed reactors randomly packed with trilobe particles using computational fluid dynamics technique [J].
Bazmi, Mahmood ;
Hashemabadi, Seyed Hassan ;
Bayat, Mahmood .
KOREAN JOURNAL OF CHEMICAL ENGINEERING, 2011, 28 (06) :1340-1346
[7]   Multiphase catalytic reactors: A perspective on current knowledge and future trends [J].
Dudukovic, MP ;
Larachi, F ;
Mills, PL .
CATALYSIS REVIEWS-SCIENCE AND ENGINEERING, 2002, 44 (01) :123-246
[8]   A NEW, IMPROVED LIQUID HOLD-UP CORRELATION FOR TRICKLE-BED REACTORS [J].
ELLMAN, MJ ;
MIDOUX, N ;
WILD, G ;
LAURENT, A ;
CHARPENTIER, JC .
CHEMICAL ENGINEERING SCIENCE, 1990, 45 (07) :1677-1684
[9]  
ERGUN S, 1952, CHEM ENG PROG, V48, P89
[10]   TRICKLE-BED REACTORS - STATE OF ART AND PERSPECTIVES [J].
GIANETTO, A ;
SPECCHIA, V .
CHEMICAL ENGINEERING SCIENCE, 1992, 47 (13-14) :3197-3213