Effect of flocculation behavior on the flotation of synthetic apatite-dolomite mixtures based on FBRM and PVM

He Gong, Aoao Chen, Lina Zhao, Qin Zhang, Wubin Li, Jun Xie, Jieliang Wang
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引用次数: 1

Abstract

This study investigates the influence of various factors on shear flocculation in the apatite-dolomite mixed ore flotation system. The Box-Behnken response surface methodology is employed to evaluate the interactions of these factors on flocculation behavior. Additionally, the Focused Beam Reflectance Measurement (FBRM) and Particle Vision Measurement (PVM) techniques are applied to investigate the mechanisms by which these factors affect shear flocculation. The results show that sodium oleate (NaOL) concentration, pH, and shear rate significantly influence the size of the flocculated particles. Notably, the interaction effect between NaOL concentration and pH is particularly pronounced. FBRM and PVM analysis reveals that pH and NaOL concentration play dominant roles in controlling particle flocculation, while H3PO4 has a relatively minor impact on agglomerate morphology and size. At low shear rates, the flocs are larger and more uniformly distributed, resulting in a more stable process. In contrast, although high shear rates enhance initial flocculation efficiency, they reduce floc size. Furthermore, the modified Smoluchowski model is applied to evaluate the impact of different factors on flocculation kinetics. The findings suggest that the effects of these factors vary across different stages of flocculation. The combined influence of NaOL concentration, pH, and shear rate is crucial in determining the stability of the flocs, with these three factors being key determinants of floc morphology and stability.
絮凝行为对FBRM和PVM合成磷灰石-白云石混合物浮选的影响
研究了磷灰石-白云石混合浮选系统中各种因素对剪切絮凝的影响。采用Box-Behnken响应面法评价这些因素对絮凝行为的相互作用。此外,应用聚焦光束反射测量(FBRM)和粒子视觉测量(PVM)技术研究了这些因素影响剪切絮凝的机制。结果表明,油酸钠(NaOL)的浓度、pH和剪切速率对絮凝颗粒的大小有显著影响。值得注意的是,NaOL浓度与pH之间的相互作用效应尤为显著。FBRM和PVM分析表明,pH和NaOL浓度对颗粒絮凝的控制起主导作用,而H3PO4对颗粒形态和粒径的影响相对较小。在低剪切速率下,絮凝体更大,分布更均匀,过程更稳定。相反,高剪切速率虽然提高了初始絮凝效率,但降低了絮凝体的粒径。应用修正的Smoluchowski模型评价了不同因素对絮凝动力学的影响。研究结果表明,这些因素的影响在絮凝的不同阶段有所不同。NaOL浓度、pH和剪切速率的综合影响对絮凝体的稳定性至关重要,这三个因素是絮凝体形态和稳定性的关键决定因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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