Co-Extraction of Aluminum and Silicon and Kinetics Analysis in Carbochlorination Process of Low-Grade Bauxite

Author:

Zhao Xinxin1,Liu Yan1ORCID,Wang Long1,Hua Yutong1,Cheng Tianhao1,Zhang Tingan12ORCID,Zhao Qiuyue1ORCID

Affiliation:

1. Key Laboratory for Ecological Utilization of Multimetallic Mineral, Ministry of Education, Northeastern University, Shenyang 110819, China

2. Chinalco Southeast Material Institute (Fujian) Technology Co., Ltd., Fuzhou 350015, China

Abstract

Addressing the issue that the Bayer process is not suitable for low-grade bauxite, carbochlorination was proposed to recover aluminum and silicon from low-grade bauxite. This study focused on the behavior of aluminum and silicon during the carbochlorination process of low-grade bauxite. The impact of various process parameters on the chlorination efficiency was investigated, and the chlorination mechanism and kinetics of aluminum and silicon chlorination in bauxite were analyzed and discussed. Under optimal experimental conditions, the chlorination efficiency of Al2O3 and SiO2 reached 94.93% and 86.32%, respectively. The carbochlorination of aluminum and silicon in bauxite adhered to a shrinking, unreacted core model governed by gas diffusion within the product layer. This process can be bifurcated into two stages. Additionally, calculations were conducted to determine the apparent activation energy and reaction order of the chlorination processes involving Al2O3 and SiO2. Examining the chlorination mechanism revealed that the bauxite carbochlorination encompasses transformations among various minerals. Notably, the aluminum component prefers to participate in the carbothermal chlorination reaction over silicon.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Cross-Integration and Collaborative Development Project of Northeastern University

Natural Science Foundation Joint Fund of Liaoning Province

Publisher

MDPI AG

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