Zheng Qingzhu, Qian Yunlou, Zou Dan, Wang Zhen, Bai Yang, Dai Haidong
Intelligent Safe Collaborative Innovation Center, Zhejiang College of Security Technology, Wenzhou, China.
Key Laboratory of Solid Waste Treatment and Resource Recycle Ministry of Education, Southwest University of Science and Technology, Mianyang, China.
Front Chem. 2021 Jul 22;9:700347. doi: 10.3389/fchem.2021.700347. eCollection 2021.
Froth flotation of fine minerals has always been an important research direction in terms of theory and practice. In this paper, the effect and mechanism of Fe on improving surface hydrophobicity and flotation of fine monazite using sodium octyl hydroxamate (SOH) as a collector were investigated through a series of laboratory tests and detection measurements including microflotation, fluorescence spectrum, zeta potential, and X-ray photoelectron spectroscopy (XPS). Flotation tests have shown that fine monazite particles (-26 + 15 μm) cannot be floated well with the SOH collector compared to the coarse fraction (-74 + 38 μm). However, adding a small amount of Fe to the pulp before SOH can significantly improve the flotation of fine monazite. This is because the addition of Fe promotes the adsorption of SOH and greatly improves the hydrophobicity of the monazite surface. This can result in the formation of a more uniform and dense hydrophobic adsorption layer, as shown by the fluorescence spectrum and zeta potential results. From the XPS results, Fe reacts with surface O atoms on the surface of monazite to form a monazite-O-Fe group that acts as a new additional active site for SOH adsorption. A schematic model was also proposed to explain the mechanism of Fe for improving surface hydrophobicity and flotation of fine monazite using octyl hydroxamate as a collector. The innovative point of this study is using a simple reagent scheme to float fine mineral particles rather than traditional complex processes.
细粒矿物的泡沫浮选在理论和实践方面一直是一个重要的研究方向。本文通过微浮选、荧光光谱、zeta电位和X射线光电子能谱(XPS)等一系列实验室测试和检测手段,研究了以异辛基羟肟酸钠(SOH)为捕收剂时,Fe对提高细粒独居石表面疏水性和浮选性能的影响及作用机制。浮选试验表明,与粗粒级(-74 + 38μm)相比,细粒独居石颗粒(-26 + 15μm)使用SOH捕收剂时浮选效果不佳。然而,在添加SOH之前向矿浆中加入少量Fe可显著提高细粒独居石的浮选性能。这是因为Fe的添加促进了SOH的吸附,大大提高了独居石表面的疏水性。如荧光光谱和zeta电位结果所示,这会导致形成更均匀、致密的疏水吸附层。从XPS结果来看,Fe与独居石表面的O原子反应形成独居石-O-Fe基团,该基团作为SOH吸附的新的额外活性位点。还提出了一个示意图模型来解释以羟肟酸辛酯为捕收剂时Fe提高细粒独居石表面疏水性和浮选性能的机制。本研究的创新点在于使用简单的药剂方案浮选细粒矿物颗粒,而非传统的复杂工艺。