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首页> 外文期刊>Journal of Molecular Liquids >Adsorption process of Octadecylamine Hydrochloride on KCl crystal surface in various salt saturated solutions: Kinetics, isotherm model and thermodynamics properties
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Adsorption process of Octadecylamine Hydrochloride on KCl crystal surface in various salt saturated solutions: Kinetics, isotherm model and thermodynamics properties

机译:盐溶液中氯化十八烷基胺盐酸盐在KCl晶体表面的吸附动力学,动力学模型和热力学性质

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Majority of potash production around the word is still conducted through froth flotation, during the process of which the adsorption of collector on salt crystal surface is one of key points determining the accomplishment of flotation. In this work, the adsorption kinetics and isotherm models of one common collector, Octadecylamine Hydrochloride (ODA), on KCl surface in different saturated salt solutions at different temperature is studied for details. The results show that the adsorption equilibrium time is 4 h for ODA adsorbed on KCl surface in all systems at 25 degrees C. High temperature can increase the adsorption quantity, however, the presence of Mg2+ will decrease it. This may be attributed to the property of 'water structure maker' for Mg2+ in solutions. The pseudo second-order model is appropriate to describe the adsorption kinetics for all studied systems. The adsorption isotherm of ODA on KCl surface is much more close to the Langmuir isotherm model than the Freundlich isotherm model. The adsorption process for all the systems need additional energy and the energy requirement increases with the temperature decreasing. In addition, the adsorption in all systems also presents an exothermic process. The randomness at the solid-solution interface becomes less in the KCl-MgCl2 and KCl-NaCl-MgCl2 saturated solutions than in KCl saturated solution. This work provides detailed information of adsorption process of ODA on KCl surface, which may constitute a step forwards in our understanding of froth flotation of KCl and help to improve the flotation recovery at low temperature. (C) 2016 Elsevier B.V. All rights reserved.
机译:围绕该词的钾肥生产仍主要通过泡沫浮选来进行,在此过程中,捕收剂在盐晶体表面的吸附是决定浮选完成的关键点之一。在这项工作中,研究了一种常见的捕收剂盐酸十八烷基胺盐酸盐(ODA)在不同温度,不同饱和盐溶液中在KCl表面上的吸附动力学和等温线模型。结果表明,在25°C下,所有体系中ODA吸附在KCl表面的吸附平衡时间均为4 h。高温可以增加吸附量,但是Mg2 +的存在会降低吸附量。这可能归因于溶液中Mg2 +的“水结构制造者”的属性。伪二级模型适合描述所有研究系统的吸附动力学。与Freundlich等温线模型相比,ODA在KCl表面的吸附等温线更接近Langmuir等温线模型。所有系统的吸附过程都需要额外的能量,并且能量需求随着温度的降低而增加。另外,所有系统中的吸附也呈现出放热过程。与KCl饱和溶液相比,KCl-MgCl2和KCl-NaCl-MgCl2饱和溶液中固溶界面的随机性变小。这项工作提供了ODA在KCl表面的吸附过程的详细信息,这可能构成我们对KCl泡沫浮选的认识的一个进步,并有助于提高低温下的浮选回收率。 (C)2016 Elsevier B.V.保留所有权利。

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