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Effect of Fatty Acid Unsaturation on the Intermolecular Weak Interaction at the Low-Rank Coal–Water Interface: Density Functional Theory Calculations and Experimental Study

机译:脂肪酸不饱和度对低秩煤-水界面分子间弱相互作用的影响:密度泛函理论计算与实验研究

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摘要

The study on the effect of fatty acid saturation on low-rank coal (LRC) flotation is still limited. In this investigation, density functional theory (DFT) combined with Zeta potential and Fourier transform infrared spectroscopy (FTIR) was used to study the mechanism of intermolecular weak interaction at the LRC–water interface of fatty acids (decanoic acid (DA), undecylenic acid (UA), and phenyl propionic acid (PA)) with different saturations and different dodecane (D) composition hydrocarbon oil–fatty acid mixed collectors (D-DA, D-UA, D-PA). The findings demonstrated that the hydrogen bond interaction and electrostatic interaction between the UA/PA with unsaturated bonded carbon chains and the LRC molecular fragments/water molecules were stronger than DA without a saturated bond carbon chain, and UA/PA strengthened its interaction with water molecules on the whole, even PA molecules would preferentially interact with water molecules. The unsaturated bond had a minimal impact on the adsorption of the LRC hydrophobic site, and the strength of the hydrogen bond between the mixed collector and LRC is D-DA > D-UA > D-PA. In the actual flotation process, the strong hydrogen bonding and electrostatic interaction between UA/PA and water molecules weaken the collection performance of the mixed collector D-UA/D-PA for LRC, which also confirmed the research results of DFT, FTIR, and Zeta.
机译:关于脂肪酸饱和度对低阶煤 (LRC) 浮选影响的研究仍然有限。本研究采用密度泛函理论 (DFT) 结合 Zeta 电位和傅里叶变换红外光谱 (FTIR) 研究了不同饱和度和不同十二烷 (D) 成分的脂肪酸(癸酸 (DA)、十一烯酸 (UA) 和苯丙酸 (PA)) 在 LRC-水界面处分子间弱相互作用的机制烃油-脂肪酸混合捕收剂 (D-DA, D-UA、D-PA)。结果表明,具有不饱和键合碳链的 UA/PA 与 LRC 分子片段/水分子之间的氢键相互作用和静电相互作用比没有饱和键碳链的 DA 强,并且 UA/PA 总体上加强了与水分子的相互作用,即使 PA 分子也会优先与水分子相互作用。不饱和键对LRC疏水位点的吸附影响最小,混合捕收剂与LRC之间的氢键强度为D-DA>D-UA>D-PA。在实际浮选过程中,UA/PA 与水分子之间的强氢键和静电相互作用削弱了混合捕收剂 D-UA/D-PA 对 LRC 的收集性能,这也证实了 DFT、FTIR 和 Zeta 的研究结果。

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