Thermochemical and Experimental Kinetic Analysis of Potassium Extraction from Ultrapotassic Syenite Using Molten Chloride Salts

IF 3.8 3区 工程技术 Q2 ENGINEERING, CHEMICAL
P. Haseli*, P. Majewski, F. C. Christo, B. Hammond, F. Bruno
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引用次数: 11

Abstract

This paper reports on the application of molten chloride salts, NaCl and CaCl2, for extraction of potassium from Oxley rock (ultrapotassic microsyenite) mined in Western Australia based on both experimental kinetic and thermochemical analysis. The reaction parameters of temperature, time, and salt to ore ratio were systematically analyzed, and a potassium extraction of more than 90% and 87% using CaCl2 and NaCl, respectively, was obtained. In this paper, thermochemical equilibrium models have also been developed which show excellent agreement with experimental data and also allow one to predict how the system deviates from equilibrium where the maximum potassium extraction can be obtained. Also, this study offers a potential comparison between the use of NaCl and CaCl2 in terms of potassium extraction and reaction mechanism. Different mineralogical studies have been conducted to characterize the ore and also to understand the reaction principle of the ore with NaCl and CaCl2.

Abstract Image

熔融氯化物萃取超古典纪正长岩钾的热化学及实验动力学分析
本文报道了在实验动力学和热化学分析的基础上,应用熔融氯化物盐NaCl和CaCl2从西澳大利亚开采的Oxley岩(超叠系微正长岩)中提取钾。对反应温度、时间、盐矿比等参数进行了系统分析,得到了CaCl2和NaCl对钾的提取率分别大于90%和87%。本文还建立了热化学平衡模型,该模型与实验数据非常吻合,并允许人们预测系统如何偏离平衡,从而获得最大的钾萃取量。同时,本研究还对氯化钠和氯化钙的提钾效果和反应机理进行了比较。进行了不同的矿物学研究,以表征矿石,并了解矿石与NaCl和CaCl2的反应原理。
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来源期刊
Industrial & Engineering Chemistry Research
Industrial & Engineering Chemistry Research 工程技术-工程:化工
CiteScore
7.40
自引率
7.10%
发文量
1467
审稿时长
2.8 months
期刊介绍: ndustrial & Engineering Chemistry, with variations in title and format, has been published since 1909 by the American Chemical Society. Industrial & Engineering Chemistry Research is a weekly publication that reports industrial and academic research in the broad fields of applied chemistry and chemical engineering with special focus on fundamentals, processes, and products.
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