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Understanding the performance of a pilot vermiculite exfoliation system through process mineralogy

机译:通过过程矿物学了解a石剥离试验系统的性能

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This paper reports on the application of process mineralogy to understand the experimental performance of a microwave based system for the exfoliation of vermiculite type minerals. When montmorillonite type clay structures are exposed to high intensity electric fields they expand very rapidly with the degree of expansion being directly related to the applied electric field strength. This basic understanding of the interaction of microwave fields with such materials has been used to develop a pilot scale microwave based process for the exfoliation of vermiculite. During commissioning of the system it was noted that vermiculites from different geographical sources behaved very differently in terms of the achieved expansion ratio. A systematic mineralogical evaluation of these different materials was carried out using Mineral Liberation Analysis (SEM/MLA), Thermo-gravimetric analysis and X-ray Diffraction (XRD) in order to determine the reasons for the variation in performance. Samples from vermiculite mines in Australia, Brazil, China and South Africa were studied. The mineralogy and mineral characteristics such as liberation, size and texture of the samples were quantified for each ore sample. The South African and Australian samples were found to be predominantly hydrated forms of mica. The Brazilian sample was predominantly composed of vermiculite while the Chinese sample was composed almost totally of hydrobiotite. The relationships between the form of hydration and degree of expansion were derived and it is shown that pure vermiculite exfoliates at lower field intensities than the other forms of hydrated mineral. The paper concludes with deductions obtained from the mineralogical assessments of the vermiculites, thereby elucidating the reasons for the performance observed for each feed material in the microwave exfoliation system. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文报道了工艺矿物学的应用,以了解基于微波的system石类矿物剥落体系的实验性能。当蒙脱土型粘土结构暴露于高强度电场时,它们会非常迅速地膨胀,其膨胀程度与所施加的电场强度直接相关。对微波场与这种材料的相互作用的这种基本理解已被用于开发基于中试规模的基于微波的of石剥落工艺。在系统调试期间,应注意的是,来自不同地理来源的expansion石在达到的膨胀比方面的行为有很大不同。为了确定性能变化的原因,使用矿物释放分析(SEM / MLA),热重分析和X射线衍射(XRD)对这些不同材料进行了系统的矿物学评估。对来自澳大利亚,巴西,中国和南非的ver石矿的样品进行了研究。对于每个矿石样品,对样品的矿物学和矿物特性(如样品的游离度,尺寸和质地)进行了定量。发现南非和澳大利亚样品主要是水合形式的云母。巴西样品主要由ver石组成,而中国样品几乎全部由水成云母组成。推导了水合形式与膨胀度之间的关系,结果表明,纯ver石在比其他形式的水合矿物低的场强下剥落。本文的结论是从the石的矿物学评估中得出的推论得出结论,从而阐明了在微波剥落系统中观察到每种进料的性能的原因。 (C)2015 Elsevier Ltd.保留所有权利。

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