Separation Time of Aluminothermic Reduction Products for Sustainable Silicon Production.

Open research Europe Pub Date : 2025-01-03 eCollection Date: 2024-01-01 DOI:10.12688/openreseurope.18833.2
Javier Bullón, Óscar Crego, José Luis Ferrín, Dolores Gómez, Iván Martínez, Luis Javier Pérez-Pérez
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Abstract

Background: This work was carried out within the framework of the SisAl Pilot project, which is devoted to the environmentally friendly production of silicon. This new method relies on the aluminothermic reduction of quartz in slag, offering a more sustainable alternative to the traditional reduction of silica with carbon in submerged arc furnaces.

Methods: The process takes place in a rotary kiln producing silicon (Si) and alumina slag (actually, a CaO - Al 2O 3 slag), which must be separated at the end to extract the silicon. This separation process is analyzed through mathematical modelling and numerical simulation, as it is of industrial interest to know how much time it takes for Si and CaO - Al 2O 3 slag to separate once the process has ended. Generally, a multiphase flow model is used to estimate the separation time of the two components once aluminothermic reduction has ended.

Results: Several scenarios are considered for the numerical simulation of the separation time, namely different initial configurations and material properties of both fluids are covered. Moreover, the separation times obtained with two distinct multiphase flow models -VOF (volume of fluid) and Eulerian- are compared.

Conclusions: The separation times resulting from simulations using the multiphase Eulerian model are more realistic compared to those from the VOF model, which clearly tends to underestimate separation times. Furthermore, apart from the selected multiphase flow model, the density difference between silicon and alumina slag plays a critical role in determining the separation time.

用于可持续硅生产的铝热还原产品的分离时间。
背景:这项工作是在 SisAl 试点项目框架内进行的,该项目致力于以环保方式生产硅。这种新方法依赖于炉渣中石英的铝热还原,为传统的在埋弧炉中用碳还原硅提供了一种更具可持续性的替代方法:该工艺在回转窑中进行,产生硅(Si)和氧化铝熔渣(实际上是 CaO - Al 2O 3 熔渣),最后必须将其分离以提取硅。通过数学建模和数值模拟对这一分离过程进行分析,因为了解硅和 CaO - Al 2O 3 熔渣在工艺结束后分离所需的时间是工业界关心的问题。一般来说,多相流模型用于估算铝热还原结束后两种成分的分离时间:在对分离时间进行数值模拟时,考虑了几种情况,即两种流体的不同初始配置和材料属性。此外,还比较了两种不同的多相流模型--VOF(流体体积)模型和欧拉模型--得出的分离时间:结论:使用多相欧拉模型模拟得出的分离时间比 VOF 模型得出的分离时间更真实,VOF 模型明显倾向于低估分离时间。此外,除了所选的多相流模型外,硅渣和氧化铝渣之间的密度差在决定分离时间方面也起着关键作用。
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