离子型稀土矿浸取体孔渗特性

Porous characteristics of ionic rare earth mine leaching body

  • 摘要: 离子型稀土矿浸取体孔渗特性研究是提高浸矿效率的基础与前提。本文分析并综述了浸取剂与矿体物化作用下的浸取体孔渗特性演变规律,探究了常见的矿体促渗方法并提出了可行的改进方案。结果表明:浸取化学反应、双电层作用以及渗流作用对浸取体孔隙结构参数与渗透性演变特性具有重要影响,现有研究聚焦于浸取化学促渗研究,本文提出的物理促渗方法,如劈裂注浆法,既能增加矿体渗透性又能为矿山开采提供强度支撑。在未来的研究中应开展多尺度和多因素耦合下的离子型稀土矿浸取体孔渗特性研究,结合有限元与离散元方法对矿体进行理论建模,并开展复杂工况下的原地浸矿过程模拟研究,进一步明确浸矿过程中浸取体颗粒对阳离子的吸附机制及其脱落迁移特性。

     

    Abstract: The study of porosity characteristics of ionic rare earth ore extraction is the basis and premise for improving the efficiency of mineral extraction. In this paper, the evolution law of orifice characteristics of leaching body under the physical and chemical action of leaching agent and mineral materialization was analyzed and reviewed, the standard leaching methods were investigated, and feasible improvement schemes were proposed. The results show that leaching chemical reaction, electrical double layer and seepage action influence the immersion body’s pore structure parameters and permeability evolution characteristics. Existing studies focus on leaching chemical osmosis studies. The physical facilitation methods proposed in this paper, such as splitting and grouting, can increase the ore body’s permeability and provide strong support for the mine. In future studies, it is necessary to study the porosity characteristics of ionic rare earth minerals under multi-scale and multi-factor coupling. Combine the finite element method with the discrete element method to build theoretical models for ore bodies. Moreover, in-situ mining process simulation research should be carried out under complex working conditions to further clarify the adsorption mechanism of extract particles to cations and their shedding migration characteristics.

     

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