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A 3-D Numerical Model to Predict Low Temperature Aluminum Electrochemical Process Using Ionic Liquids as Electrolytes at Different Boundary Conditions

机译:离子液体作为电解质在不同边界条件下预测低温铝电化学过程的3-D数值模型

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摘要

Aluminum separation process using low temperature ionic liquids electrolytes is an energy-efficient and environmental benign metal extraction technology. A 3-D numerical model was developed to predict this electrochemical process. The average current density of anode and cathode was set as the evaluation standard. The influence of batch reactor geometries, number and distance between electrodes, reactor domain and inlet temperature, inlet flow velocity to the current density was studied. Three kinds of ionic liquids [EMIM]Cl-AlCl_3, [HIMIM]Cl-AlCl_3, and [BMIM]Cl-AlCl_3 electrolytes were compared. Uncertainty analysis of electrolyte parameters like electrical conductivity, thermal conductivity, density, specific heat, and viscosity was also conducted. The results give some reference value for different boundary conditions and indicate that to get a larger current density; the inlet temperature should be as high as the domain. It also shows the electrical conductivity plays a decisive role in determining the current density. Those simulation results were also verified by the experiment.
机译:使用低温离子液体电解质的铝分离工艺是一种节能高效且环境友好的金属提取技术。开发了3-D数值模型来预测该电化学过程。将阳极和阴极的平均电流密度设定为评价标准。研究了间歇式反应器的几何形状,电极之间的数目和距离,反应器域和入口温度,入口流速对电流密度的影响。比较了三种离子液体[EMIM] Cl-AlCl_3,[HIMIM] Cl-AlCl_3和[BMIM] Cl-AlCl_3电解质。还对电解质参数(如电导率,热导率,密度,比热和粘度)进行了不确定性分析。结果为不同的边界条件提供了一定的参考值,表明可获得更大的电流密度。入口温度应与域温度一样高。这也表明电导率在确定电流密度中起着决定性的作用。实验也验证了这些仿真结果。

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