Model Implementation of Boron Removal Using CaCl2-CaO-SiO2 Slag System for Solar-Grade Silicon

被引:0
|
作者
Hui Chen
Ye Wang
Wenjia Zheng
Qincan Li
Xizhi Yuan
Kazuki Morita
机构
[1] Sichuan University,School of Chemical Engineering
[2] University of Tokyo,Department of Materials Engineering
来源
Metallurgical and Materials Transactions B | 2017年 / 48卷
关键词
Boron Removal; Slag System; Velocity Boundary Layer; MUltifrontal Massively Parallel Sparse Direct Solver (MUMPS); Heat Transfer Differential Equation;
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中图分类号
学科分类号
摘要
A new CaCl2-CaO-SiO2 slag system was recently proposed to remove boron from metallurgy-grade silicon by oxidized chlorination and evaporation. To further investigate the boron transformation process at a high temperature, a model implementation to present the transfer of boron from molten silicon to the gas phase via slag is introduced. Heat transfer, fluid flow, the chemical reactions at the interface and surface, the mass transfer and diffusion of boron in the molten silicon and slag, and the evaporation of BOCl and CaCl2 were coupled in this model. After the confirmation of the thermal field, other critical parameters, including the boron partition ratios (LB) for this slag from 1723 K to 1823 K (1450 °C to 1550 °C), the thicknesses of the velocity boundary layer at the surface and interface, the mass transfer coefficients of the boundary layer at the surface and interface, and partial pressure of BOCl in the gas phase were analyzed to determine the rate-limiting step. To verify this model implementation, boron removal experiments were carried out at various temperatures and with various initial mass ratios of slag to silicon (μ). The evaporation rate of CaCl2 was also measured by thermogravimetry analysis (TGA).
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页码:3219 / 3227
页数:8
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