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首页> 外文期刊>Minerals >Discovery of a Novel Cationic Surfactant: Tributyltetradecyl-Phosphonium Chloride for Iron Ore Flotation: From Prediction to Experimental Verification
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Discovery of a Novel Cationic Surfactant: Tributyltetradecyl-Phosphonium Chloride for Iron Ore Flotation: From Prediction to Experimental Verification

机译:一种新型阳离子表面活性剂的发现:铁矿石浮选中的三丁基十四烷基氯化膦:从预测到实验验证

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摘要

In this work, tributyltetradecyl-phosphonium chloride (TTPC), has been first introduced to be a novel and efficient cationic surfactant for cationic reverse flotation separation of quartz from magnetite. The first-principles density functional theory calculations, Zeta potential measurements and adsorption isotherm measurements consistently predict that TTPC may be a promising collector that is better than dodecyl triethyl ammonium chloride (DTAC), based on the facts that TTPC and DTAC both prefer to physically adsorb on the quartz surface owing to electrostatic force, but the active part (P + (C 4 H 9 ) 3 ) of TTPC takes much more positive charges than that (N + (CH 3 ) 3 ) of DTAC. The micro-flotation and Bench-scale flotation results further verify that TTPC presents a stronger collecting power and much better selectivity for iron ore reverse flotation in comparison to the conventional collector DTAC. Furthermore, the corresponding adsorption mechanism of TTPC on the quartz have also been investigated in detail. This work might show a good example to discover a potential candidate collector by analogy with a known excellent collector based on reasonable prediction.
机译:在这项工作中,首先引入了三丁基十四烷基氯化chloride(TTPC),它是一种新型有效的阳离子表面活性剂,用于从磁铁矿中进行阳离子反向浮选分离石英。第一性原理密度泛函理论计算,Zeta电位测量和吸附等温线测量一致地预测TTPC可能是一个有前途的捕收剂,其基于TTPC和DTAC都更喜欢物理吸附的事实,优于十二烷基三乙基氯化铵(DTAC)。由于静电力,其在石英表面上存在,但TTPC的活性部分(P +(C 4 H 9)3)比DTAC的活性部分(N +(CH 3)3)具有更多的正电荷。微浮选和基准浮选结果进一步证实,与传统的捕集器DTAC相比,TTPC具有更强的收集能力和更好的铁矿石反向浮选选择性。此外,还详细研究了TTPC在石英上的相应吸附机理。这项工作可能是一个很好的例子,可以根据合理的预测与已知的优秀收集器进行类比来发现潜在的候选收集器。

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