Mechanism of Ca2+/Fe3+-based synergistic activation of quartz

IF 1.3 4区 工程技术 Q4 CHEMISTRY, PHYSICAL Physicochemical Problems of Mineral Processing Pub Date : 2023-03-15 DOI:10.37190/ppmp/162262
Rong-Ming Liu, Zhan-feng Yang, Jieying Li, Qiang Li, Zhenjiang Wang, X. Luo
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Abstract

Although the flotation behaviors of iron concentrate and quartz are significantly different, quartz is the primary factor that affects the quality of iron concentrate. The flotation mechanism of quartz in the presence of mixed cationic Ca2+/Fe3+-co-activated SDS catcher was studied by conducting flotation tests with pure quartz mineral. The solution chemical calculation method, zeta potential calculation method, Fourier transform infrared (FT-IR) spectroscopy technique, X-ray photoelectron spectroscopy (XPS) technique, and other techniques were used to conduct the studies. The results showed that the maximum Ca2+/Fe3+-based synergistic activation of the flotation recovery process could be achieved in a certain range of pH values when three different activators were added sequentially. Analysis of the zeta potential values revealed that the Ca2+/Fe3+-activated quartz surface improved the extent of positive electricity generated and enhanced the SDS adsorption ability of the quartz surface. Results obtained using the FT-IR technique revealed that Ca2+/Fe3+ exerted a synergistic effect, and the adsorption process exploited the single oxygen bond interactions in the monovalent hydroxyl complex Ca(OH)+ and the double oxygen bond interactions in the Fe(OH)3 precipitates. Results obtained using the XPS technique revealed that the synergistic effect exerted by Ca2+/Fe3+ was significantly stronger than that exerted by Ca2+ or Fe3+ alone. The stable Fe-based six-membered chelate ring was formed on the surface of quartz when Fe3+ was the activator, and the chain-like Ca-based complex was formed when Ca2+ was the activator. The adsorption process on the surface of quartz proceeded following chemical as well as physical adsorption pathways. The results revealed that Ca(OH)+ and Fe(OH)3 played prominent roles during the activation of quartz surfaces in the presence of Ca2+/Fe3+.
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石英的Ca2+/Fe3+协同活化机理
虽然铁精矿和石英的浮选行为有显著差异,但石英是影响铁精矿质量的主要因素。通过对纯石英矿物进行浮选试验,研究了混合阳离子Ca2+/Fe3+-共活化SDS捕收剂存在下石英的浮选机理。采用溶液化学计算方法、zeta电位计算方法、傅里叶变换红外(FT-IR)光谱技术、x射线光电子能谱(XPS)技术等技术进行研究。结果表明:在一定的pH值范围内,顺序添加3种不同的活化剂时,Ca2+/Fe3+对浮选回收过程的协同活化效果最大;zeta电位值分析表明,Ca2+/Fe3+活化石英表面提高了正电的产生程度,增强了石英表面对SDS的吸附能力。FT-IR技术结果表明,Ca2+/Fe3+具有协同作用,吸附过程利用了一价羟基配合物Ca(OH)+中的单键相互作用和Fe(OH)3沉淀中的双键相互作用。利用XPS技术获得的结果表明,Ca2+/Fe3+的协同效应明显强于Ca2+或Fe3+单独作用。当Fe3+为活化剂时,在石英表面形成稳定的铁基六元螯合环;当Ca2+为活化剂时,在石英表面形成链状的钙基配合物。石英表面的吸附过程遵循化学吸附和物理吸附两种途径。结果表明,Ca(OH)+和Fe(OH)3在Ca2+/Fe3+存在下对石英表面的活化起重要作用。
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来源期刊
Physicochemical Problems of Mineral Processing
Physicochemical Problems of Mineral Processing CHEMISTRY, PHYSICAL-MINING & MINERAL PROCESSING
自引率
6.70%
发文量
99
期刊介绍: Physicochemical Problems of Mineral Processing is an international, open access journal which covers theoretical approaches and their practical applications in all aspects of mineral processing and extractive metallurgy. Criteria for publication in the Physicochemical Problems of Mineral Processing journal are novelty, quality and current interest. Manuscripts which only make routine use of minor extensions to well established methodologies are not appropriate for the journal. Topics of interest Analytical techniques and applied mineralogy Computer applications Comminution, classification and sorting Froth flotation Solid-liquid separation Gravity concentration Magnetic and electric separation Hydro and biohydrometallurgy Extractive metallurgy Recycling and mineral wastes Environmental aspects of mineral processing and other mineral processing related subjects.
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