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室温下三硅氧烷表面活性剂对从方解石中选择性浮选白钨矿的吸附作用。

Adsorption of Trisiloxane Surfactant for Selective Flotation of Scheelite from Calcite at Room Temperature.

作者信息

Huang Zhiqiang, Shuai Shuyi, Burov Vladimir E, Poilov Vladimir Z, Li Fangxu, Wang Hongling, Liu Rukuan, Zhang Shiyong, Cheng Chen, Li Wenyuan, Yu Xinyang, He Guichun, Fu Weng

机构信息

Jiangxi Province Key Laboratory of Mining Engineering, Jiangxi University of Science and Technology, Ganzhou, Jiangxi 34100, China.

Department of Chemical Engineering, Perm National Research Polytechnic University, Perm 614990, Russia.

出版信息

Langmuir. 2022 Jul 26;38(29):9010-9020. doi: 10.1021/acs.langmuir.2c01405. Epub 2022 Jul 13.

Abstract

The separation and enrichment of scheelite from calcite are hindered by the similar active Ca sites of scheelite and the calcite with calciferous gangue. Herein, a novel trisiloxane surfactant, -(2-aminoethyl)-3-aminopropyltrisiloxane (AATS), was first explored and synthesized and recommended as the collector for the flotation separation of scheelite from calcite. The micro-flotation and mixed binary mineral flotation tests showed that AATS had excellent collection performance for scheelite and high selectivity for calcite within a wide pH range. At the same time, contact angle and zeta-potential measurements, Fourier transform infrared (FTIR) analysis, and density functional theory (DFT) calculations revealed the relevant adsorption mechanism. The contact angle measurement showed that AATS can increase the contact angle of the scheelite surface from 41.7 to 95.8°, greatly enhancing the hydrophobicity of the mineral surface. The results of FTIR analysis and zeta-potential measurement explained that AATS was electrostatically adsorbed on the mineral surface, and DFT calculation further verified that the -NH-positive group in AATS was adsorbed on the negatively charged scheelite surface. Therefore, AATS can realize the expectation of high efficiency and selectivity of minerals and enhance the adhesion between the surface of scheelite minerals and bubbles, providing a fresh approach to industrial production.

摘要

白钨矿与方解石的分离和富集受到白钨矿和含方解石脉石中方解石相似活性钙位点的阻碍。在此,首次探索并合成了一种新型三硅氧烷表面活性剂-(2-氨基乙基)-3-氨丙基三硅氧烷(AATS),并推荐其作为从方解石中浮选分离白钨矿的捕收剂。微浮选和混合二元矿物浮选试验表明,AATS在较宽的pH范围内对白钨矿具有优异的捕收性能,对方解石具有高选择性。同时,接触角和ζ电位测量、傅里叶变换红外光谱(FTIR)分析以及密度泛函理论(DFT)计算揭示了相关的吸附机制。接触角测量表明,AATS可将白钨矿表面的接触角从41.7°提高到95.8°,大大增强了矿物表面的疏水性。FTIR分析和ζ电位测量结果解释了AATS在矿物表面发生静电吸附,DFT计算进一步证实AATS中的-NH⁺基团吸附在带负电的白钨矿表面。因此,AATS能够实现矿物高效选择性的预期,增强白钨矿矿物表面与气泡之间的附着力,为工业生产提供了一种新途径。

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