提高辉钼矿细粒浮选性能依赖于面、边界面的协同调节

IF 5 2区 工程技术 Q1 ENGINEERING, CHEMICAL
Siyi Li , Bingqiao Yang , Yudi Yan , Jie Wu , Yang Xu , Bing Deng , Feifei Jia
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引用次数: 0

摘要

小于20 μm的辉钼矿颗粒的浮选效率较低,主要原因是随着粒径的减小,整体疏水性降低。然而,以往的研究主要集中在单独的辉钼矿面或边的界面调控上,导致回收率不理想,捕收剂消耗高。在本研究中,利用一种由乳化煤油和脂肪醇聚氧乙烯醚磷酸(AEOP)组成的新型复合捕收剂,试图同步调节表面和边缘的界面性质,以实现辉钼矿细粒的高效选矿。浮选结果表明,复合捕收剂的浮选效果优于单一捕收剂,与乳化煤油或AEOP相比,复合捕收剂大大提高了浮选回收率。此外,煤油与AEO-3P的协同作用要比煤油与AEO-9P的协同作用强得多。zeta电位、电化学测试和扫描电镜能谱仪(SEM-EDS)结果表明,AEOP物质优先吸附在边缘,通过分子间相互作用增强了乳化煤油液滴在边缘的吸附。部分AEOP与煤油液滴结合,吸附在辉钼矿表面。x射线光电子能谱(XPS)结果表明,AEOP中的磷酸基团在边缘与Mo位点成键。接触角结果进一步证实了复合捕收剂在表面和边缘协同作用,提高了其疏水性。本研究为今后设计高效的辉钼矿细粒浮选复合捕收剂提供了新的思路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Enhancing the flotation performances of molybdenite fines relied on the synergistic interface regulation of faces and edges

Enhancing the flotation performances of molybdenite fines relied on the synergistic interface regulation of faces and edges
The flotation of molybdenite particles smaller than 20 μm is inefficient primarily due to the reduction in overall hydrophobicity as particle size decreases. However, previous studies mainly focused on interfacial regulation of molybdenite faces or edges individually, resulting in unsatisfactory recovery and high collector consumption. In this work, an attempt was made to regulate the interfacial properties of both faces and edges synchronously to achieve highly efficient beneficiation of molybdenite fines utilizing a new compound collector consisting of emulsified kerosene and fatty alcohol polyoxyethylene ether phosphate (AEOP). The flotation results demonstrated that the compound collector was more superior than single collector in flotation, which promoted the flotation recovery greatly compared to emulsified kerosene or AEOP. In addition, the synergistic effect of kerosene and AEO-3P was much stronger than that of kerosene and AEO-9P. The results of zeta potential, electrochemical tests and scanning electron microscopy energy dispersive spectrometer (SEM-EDS) indicated that AEOP species preferentially adsorbed on edges, which enhanced the adsorption of emulsified kerosene droplets on edges via intermolecular interactions. Moreover, a portion of AEOP combined with kerosene droplets adsorbed on the molybdenite faces. X-ray photoelectron spectroscopy (XPS) results suggested that the phosphoric acid groups in AEOP bonded with Mo sites on edges. The contact angle results further confirmed that the compound collector synergistically acted on both faces and edges to improve its hydrophobicity. This work provides an innovative perspective to design effective compound collector for the flotation of molybdenite fines in future.
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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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