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基于配位化学理论和量子化学模拟的闪锌矿(ZnS)非活化捕收剂的分子设计与作用机理研究

Molecular Design and Mechanism Study of Non-Activated Collectors for Sphalerite (ZnS) Based on Coordination Chemistry Theory and Quantum Chemical Simulation.

作者信息

Tang Xiaoqin, Pan Yilang, Chen Jianhua, Chen Ye

机构信息

School of Chemistry and Chemical Engineering, School of Resources, Environment and Materials, Guangxi University, Nanning 530004, China.

State Key Laboratory of Featured Metal Materials and Life-Cycle Safety for Composite Structures, Guangxi University, Nanning 530004, China.

出版信息

Molecules. 2024 Dec 13;29(24):5882. doi: 10.3390/molecules29245882.

Abstract

Sphalerite flotation is generally achieved by copper activation followed by xanthate collection. This study aims to propose a design idea to find novel collectors from the perspective of molecular design and prove the theoretical feasibility that the collector can effectively recover sphalerite without copper activation. To address this, 30 compounds containing different structures of sulfur atoms and different neighboring atoms were designed based on coordination chemistry. Twelve potential collectors were screened, and their properties and interactions with a hydrated sphalerite (110) surface were evaluated. Compound showed the greatest reactivity, suggesting that the double-coordination structure of two sulfhydryl groups is an effective molecular structure for direct sphalerite flotation. The DFTB+ and MD results demonstrate that 1,2-butanedithiol (CHS), having a similar coordination structure to compound , has the potential to replace the traditional reagent scheme of sphalerite flotation. The strong reagent-surface interaction is attributed to the overlap of Zn 3d with S 3p orbitals, the most negative electrostatic potential, the relatively high E and low average local ionization energy, and the eliminated steric hindrance effect. It is expected that this study can provide a design idea for the targeted design and development of novel reagents for complex sulfide ore flotation.

摘要

闪锌矿浮选通常通过铜活化然后用黄药捕收来实现。本研究旨在从分子设计的角度提出一种寻找新型捕收剂的设计思路,并证明捕收剂在无需铜活化的情况下能够有效回收闪锌矿的理论可行性。为此,基于配位化学设计了30种含有不同硫原子结构和不同相邻原子的化合物。筛选出了12种潜在捕收剂,并评估了它们的性质以及与水合闪锌矿(110)表面的相互作用。化合物 表现出最大的反应活性,表明两个巯基的双配位结构是闪锌矿直接浮选的有效分子结构。DFTB+和MD结果表明,与化合物 具有相似配位结构的1,2 - 丁二硫醇(CHS)有潜力取代闪锌矿浮选的传统药剂方案。强烈的药剂 - 表面相互作用归因于Zn 3d与S 3p轨道的重叠、最负的静电势、相对较高的E和较低的平均局部电离能以及消除的空间位阻效应。期望本研究能够为复杂硫化矿浮选新型药剂的靶向设计与开发提供一种设计思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d070/11677920/9f1db604ac30/molecules-29-05882-g001.jpg

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