Fluidized bed reactor simulation for hydrochlorination of metallurgical silicon based on MP-PIC method

被引:0
作者
Wu S. [1 ]
Chen H. [1 ]
Zong Y. [1 ]
Xu Z. [1 ]
Zhao L. [1 ]
机构
[1] State Key Laboratory of Chemical Engineering, East China University of Science and Technology, Shanghai
来源
Huagong Xuebao/CIESC Journal | 2022年 / 73卷 / 10期
关键词
computational fluid dynamics; fluidized bed; hydrochlorination; metallurgical silicon; MP-PIC; reactor;
D O I
10.11949/0438-1157.20220701
中图分类号
学科分类号
摘要
Metallurgical silicon hydrochlorination fluidized bed is the key reactor to realize the recycling of silicon tetrachloride (STC) in the current polysilicon production process. Based on the MP-PIC method, a metallurgical hydrochlorination fluidized bed reactor model was established. In the model, overall kinetics was used to calculate the reaction source term. On the base of independence test of grid and the number of particles per parcel, the independence test of the initial concentration of trichlorosilane (TCS) was carried out. The model validation results showed that the simulation results were in good agreement with the experimental results. The reactor analysis showed that the yield of TCS is controlled by chemical equilibrium and gas-solid two-phase flow. From the operation condition analysis, the operation pressure of the reactor has little effect on the yield of TCS. Increasing the molar ratio of imported H2/STC can effectively improve the yield of TCS, but reduce the conversion of H2. © 2022 Chemical Industry Press. All rights reserved.
引用
收藏
页码:4419 / 4428
页数:9
相关论文
共 33 条
[11]  
Sill T., Studies of the hydrochlorination of silicon to trichlorosilane in a fluidized bed reactor, (2001)
[12]  
Becker F., Modeling and simulations of hydrochlorination of silicon to trichlorosilane for the development of a technical fluidized bed reactor, (2005)
[13]  
Daizo K, Levenspiel O., Fluidization Engineering, (1991)
[14]  
Colomb M, Palanki S, Sylvester N D., Modeling the hydrochlorination reaction in a laboratory-scale fluidized bed reactor, Powder Technology, 292, pp. 242-250, (2016)
[15]  
Levenspiel O., Chemical Reaction Engineering, (1998)
[16]  
Cygon P., Reaction studies for the hydrochlorination of silicon in a laboratory fluidized bed system, (1999)
[17]  
Colomb M, Palanki S, Sylvester N D., Experimental verification of scalable model for the hydrochlorination reaction in a pilot-scale fluidized bed reactor, Powder Technology, 301, pp. 989-998, (2016)
[18]  
Jakobsen H A., Chemical Reactor Modeling: Multiphase Reactive Flows, (2008)
[19]  
Liu S S, Xiao W D., Numerical simulations of particle growth in a silicon-CVD fluidized bed reactor via a CFD-PBM coupled model, Chemical Engineering Science, 111, pp. 112-125, (2014)
[20]  
Liu S S, Xiao W D., CFD-PBM coupled simulation of silicon CVD growth in a fluidized bed reactor: effect of silane pyrolysis kinetic models, Chemical Engineering Science, 127, pp. 84-94, (2015)