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Effect of Calcium Ions on Induction Time Between a Coal Particle and Air Bubble

机译:钙离子对煤颗粒与气泡诱导时间的影响

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摘要

Particle-bubble attachment is an essential step for a successful flotation; the induction time is defined as the minimum contact time required for particle-bubble attachment in a solution. A novel induction timer was built to investigate the effect of calcium ions on induction time between the coal particle and air bubble. The induction-time measurement of coal particle and air bubble attachment indicated that induction time increased with increasing concentration of calcium ions. The induction time was 17 ms in the deionized water; however, the induction time increased to 32 ms at a calcium ions concentration of 1 mmol/L. X-ray Photoelectron Spectroscopy analysis showed that either Ca(OH)(2)(s) or CaCO3 precipitated on the coal surface after the adsorption of calcium ions. The precipitate of Ca(OH)(2)(s) and CaCO3 are hydrophilic and would weaken the hydrophobicity of the coal surface, so the induction time between the coal particle and air bubble increased with the presence of calcium ions.
机译:气泡附着是成功浮选的重要步骤。诱导时间定义为溶液中气泡附着所需的最小接触时间。建立了新型感应计时器,以研究钙离子对煤颗粒与气泡之间感应时间的影响。煤颗粒和气泡附着的诱导时间测量表明,诱导时间随钙离子浓度的增加而增加。去离子水中的诱导时间为17 ms;然而,在钙离子浓度为1 mmol / L时,诱导时间增加到32 ms。 X射线光电子能谱分析表明,吸附钙离子后,Ca(OH)(2)(s)或CaCO3沉淀在煤表面上。 Ca(OH)(2)(s)和CaCO3的沉淀物是亲水性的,会削弱煤表面的疏水性,因此,随着钙离子的存在,煤颗粒与气泡之间的诱导时间会增加。

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