Enhancing the flotation of columbite via the synergistic effect of mixed collectors

IF 4.9 2区 工程技术 Q1 ENGINEERING, CHEMICAL
Yiwen Hu , Jieliang Wang , Qizheng Qin , Zhao Cao , Wenda Lu , Jingyang Shi , Xu Wu , Peng Wang , Yongsheng Sun
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引用次数: 0

Abstract

Columbite, a critical mineral for niobium extraction, achieving efficient collection of columbite in the flotation process remains a significant challenge. Based on the preliminary work, it was found that octyl hydroxamic acid (OHA) and sodium dodecyl sulfonate (SDS) were used as the mixed collector system, which could reduce the cost and improve the recovery of columbite. However, the synergistic adsorption mechanism of OHA/SDS in columbite flotation requires further investigation. Micro-flotation experiments indicate that the OHA/SDS mixed collector, compared to OHA or SDS used individually, significantly improves the flotation recovery of columbite, with an optimal molar ratio of OHA:SDS = 1:4. Adsorption experiments, zeta potential measurements, contact angle assessments, solution chemistry calculations, X-ray photoelectron spectroscopy (XPS), and Fourier-transform infrared spectroscopy (FTIR) analyses demonstrate that the mixed collector exhibits stronger adsorption affinity on the columbite surface compared to single collectors, revealing a distinct synergistic adsorption effect of OHA/SDS. Atomic force microscopy (AFM) tests reveal that the columbite surface treated with the mixed collector shows more distinct spot-like and layered adsorption features, confirming the synergistic adsorption of OHA/SDS on the columbite surface. Molecular dynamics (MD) simulations suggest that OHA molecules intercalate between SDS ions adsorbed on the columbite surface, effectively reducing electrostatic repulsion among SDS ions, thereby enhancing columbite flotation.

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来源期刊
Minerals Engineering
Minerals Engineering 工程技术-工程:化工
CiteScore
8.70
自引率
18.80%
发文量
519
审稿时长
81 days
期刊介绍: The purpose of the journal is to provide for the rapid publication of topical papers featuring the latest developments in the allied fields of mineral processing and extractive metallurgy. Its wide ranging coverage of research and practical (operating) topics includes physical separation methods, such as comminution, flotation concentration and dewatering, chemical methods such as bio-, hydro-, and electro-metallurgy, analytical techniques, process control, simulation and instrumentation, and mineralogical aspects of processing. Environmental issues, particularly those pertaining to sustainable development, will also be strongly covered.
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