钒页岩晶格特性及钒迁移配位转化机理研究
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1.武汉科技大学资源与环境工程学院, 湖北 武汉 430081 ;2.国家环境保护矿冶资源利用与污染控制重点实验室, 湖北 武汉 430081 ;3.战略钒资源利用省部共建协同创新中心, 湖北 武汉 430081 ;4.湖北省页岩钒资源高效清洁利用工程技术研究中心, 湖北 武汉 430081

作者简介:

郑秋实(1993—),男,湖北襄阳人,博士,讲师。

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TF841.3;TF801;TF803

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Mechanism study on lattice properties of vanadium-bearing shale and vanadium migration and coordination transformation
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1.School of Resources and Environmental Engineering, Wuhan University of Science and Technology, Wuhan 430081 , China ;2.State Environmental Protection Key Laboratory of Mineral Metallurgical Resources Utilization and Pollution Control, Wuhan 430081 , China ;3.Collaborative Innovation Center of Strategic Vanadium Resources Utilization, Wuhan 430081 , China ;4.Hubei Provincial Engineering Technology Research Center of High Efficient Cleaning Utilization for Shale Vanadium Resource, Wuhan 430081 , China

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    摘要:

    页岩钒以类质同象的形式受到了铝硅酸盐矿物的强晶格束缚,提取释放非常困难,其转化释放规律已成为困扰钒页岩行业技术开发的重要科学问题之一。本论文聚焦这一科学问题,采用了密度泛函理论从原子尺度深入研究了页岩钒的晶格特性和钒迁移配位转化过程,确定了钒原子的占位取代规律,模拟分析了湿法酸浸过程阴阳离子对云母界面的作用过程,阐明了氢氟离子协同强化云母四面体和八面体溶解破坏机制;同时对比火法焙烧过程高温活化钒原子释放差异,揭示了云母脱羟基结构畸变强化结构氧骨架脱除和钒原子配位溶出机制。研究成果将为钒页岩新一代全湿法技术的开发提供一定的理论指导。

    Abstract:

    Vanadium in shale is strongly bound by the crystal lattice of aluminosilicate minerals in the form of isomorphism, and its extraction and release are very difficult. The law of vanadium conversion and release has become one of the most important scientific problems in the technology development of vanadium shale industry. Focusing on this scientific problem, this paper uses density functional theory to deeply study the lattice properties of vanadium in shale and the process of vanadium migration and coordination transformation at atomic scale, determine the law of the occupying substitution of vanadium atoms, and simulate the action of anions and cations on mica interface during wet acid leaching process. The mechanism of synergistic enhancement of tetrahedral and octahedral dissolution of mica by hydrogen ions and fluorine ions was elucidated. Meanwhile, the mechanism of oxygen skeleton removal enhanced by structural distortion and vanadium atom coordination dissolution of mica was revealed by comparing the difference of vanadium atom release caused by high temperature activation during roasting. The research results would provide some theoretical guidance for the development of the new generation of all-wet method of vanadium-bearing shale.

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郑秋实, 张一敏, 薛楠楠, 等. 钒页岩晶格特性及钒迁移配位转化机理研究[J]. 中国有色冶金, 2023, 52(5): 18-24.

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  • 收稿日期:2023-05-06
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  • 在线发布日期: 2025-12-23
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