凡杰, 谢刚, 田林, 俞小花, 王冰冰, 王品杰. ZnS掺杂Fe2+电子结构第一性原理计算及对矿物浸出的影响[J]. 有色金属科学与工程, 2021, 12(2): 1-7. DOI: 10.13264/j.cnki.ysjskx.2021.02.001
引用本文: 凡杰, 谢刚, 田林, 俞小花, 王冰冰, 王品杰. ZnS掺杂Fe2+电子结构第一性原理计算及对矿物浸出的影响[J]. 有色金属科学与工程, 2021, 12(2): 1-7. DOI: 10.13264/j.cnki.ysjskx.2021.02.001
FAN Jie, XIE Gang, TIAN Lin, YU Xiaohua, WANG Bingbing, WANG Pinjie. Calculation of first principles of electron structure of Fe2+ doped sphalerite and its influence on mineral leaching[J]. Nonferrous Metals Science and Engineering, 2021, 12(2): 1-7. DOI: 10.13264/j.cnki.ysjskx.2021.02.001
Citation: FAN Jie, XIE Gang, TIAN Lin, YU Xiaohua, WANG Bingbing, WANG Pinjie. Calculation of first principles of electron structure of Fe2+ doped sphalerite and its influence on mineral leaching[J]. Nonferrous Metals Science and Engineering, 2021, 12(2): 1-7. DOI: 10.13264/j.cnki.ysjskx.2021.02.001

ZnS掺杂Fe2+电子结构第一性原理计算及对矿物浸出的影响

Calculation of first principles of electron structure of Fe2+ doped sphalerite and its influence on mineral leaching

  • 摘要: 采用基于密度泛函理论(DFT)的第一性原理平面波超软赝势方法,计算了闪锌矿结构在纯净ZnS和掺杂Fe2+后ZnS的晶体结构和电子结构,分析了掺杂Fe2+对ZnS晶体的能带结构、电子态密度的影响,并进行布局分析。计算分析结果表明:掺杂体系费米能级附近的电子态密度主要来源于Fe 3d态电子的贡献;S原子上失电子作用增强,结果是加快Zn-S键解体。在酸性体系中,ZnS通过化学和电化学2种方法溶解,在杂质铁含量较低时主要是以化学方式为主,随着杂质铁含量提高(铁含量 < 20%),电化学溶解作用增强,2种方式共同促进硫化锌矿物的溶解,提高锌的浸出效率。

     

    Abstract: The first principle plane wave super-soft pseudo potential method based on density functional theory (DFT) was used to calculate the crystal structure and electronic structure of zinc blende structure with pure ZnS and doped Fe2+. The effect of doping Fe2+ on the energy band structure and electronic density of States of ZnS crystal was analyzed. The results showed that the electron density near the Fermi level of the doping system mainly came from the Fe 3d electrons. The loss of electrons on The S atom was enhanced, which resulted in accelerating the dissolution of the Zn-S bond. ZnS was dissolved by chemical and electrochemical methods in the acidic system. When the impurity iron content was low, the main method was chemical. With the increase of the impurity iron content (Fe% < 20%), the electrochemical solubility was enhanced. To this end, the two methods can accelerate the dissolution of zinc sulfide minerals and improve the leaching efficiency of zinc.

     

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