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基于热力学、动力学和矿物转化的铝土矿残渣电动脱碱。

Electricity-driven dealkalization of bauxite residue based on thermodynamics, kinetics, and mineral transformation.

机构信息

School of Minerals Processing and Bioengineering, Central South University, Changsha, 410083, People's Republic of China.

Key Laboratory of Hunan Province for Clean and Efficient Utilization of Strategic Calcium-Containing Mineral Resources, School of Minerals Processing and Bioengineering, Central South University, Changsha, 410083, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2024 Jul;31(33):45747-45760. doi: 10.1007/s11356-024-34100-4. Epub 2024 Jul 8.

Abstract

High alkalinity content of bauxite residue is a major factor that hinders resource reutilization and pollutes the environment. Although acid neutralization is a direct and effective method, the amount of acid and secondary waste of sodium salt are still difficult problems to solve. Herein, we innovatively integrated an electric field into the acid neutralization dealkalization of bauxite residue and analyzed the dealkalization behavior by thermodynamics, kinetics, and mineral transformation. The results show that the pH of the anode chamber was maintained at the acidic levels of 3-6 after 30 min of galvanostatic electrolysis, and bauxite residue can realize dealkalization by acid neutralization. In the anode chamber, Na was released into the leachate via the reactions of NaAlSiO and the removal of encapsulated soluble alkali. The stainless steel wire mesh anode exhibited its superiority and decreased the NaO content in bauxite residue from 9.48 to 3.13% through convective mass transfer driven by the electric field and steady-state diffusion under stirring. This research provides a promising method for the electricity-driven dealkalization of bauxite residue, thus facilitating the development of multifield coupling theory and the application of electric fields in the alumina industry.

摘要

高碱度是制约赤泥资源再利用和环境污染的主要因素。酸中和是一种直接有效的方法,但酸的用量和钠盐的二次废物仍然是难以解决的问题。本文创新性地将电场集成到赤泥的酸中和脱碱过程中,并通过热力学、动力学和矿物转化对脱碱行为进行了分析。结果表明,恒电流电解 30min 后,阳极室的 pH 值维持在 3-6 的酸性水平,赤泥可以通过酸中和实现脱碱。在阳极室中,Na 通过 NaAlSiO 的反应和包裹的可溶性碱的去除释放到浸出液中。不锈钢丝网阳极通过电场驱动的对流质量传递和搅拌下的稳态扩散表现出其优越性,将赤泥中的 NaO 含量从 9.48%降低到 3.13%。该研究为赤泥的电场驱动脱碱提供了一种有前景的方法,从而促进了多场耦合理论和电场在氧化铝工业中的应用。

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