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The Effects of Trace Metal Cations on the High Temperature Reactions of an Halloysite Mineral

机译:微量金属阳离子对埃洛石矿物高温反应的影响

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摘要

This thesis describes a kinetic study of the high temperature solid state reactions of a well characterized halloysite mineral and five of its cation-saturated forms, the cations used being sodium, calcium, manganese, copper and iron (Ill). The reaction sequence may be represented by the idealised equations: The formation of mullite from metakaolinite has been studied in the temperature range 1020° - 1200°C, by X-ray analysis. Comparison of the experimental data with several theoretical models suggests that up to 90% conversion the reaction takes place by exponential nucleation followed by crystal growth. There is, however, some evidence for diffusion occurring as a rate controlling process, especially at high degrees of conversion to mullite. The rate constants and experimental thermodynamic functions have been evaluated for all halloysite samples. The free energies of activation (111-128 k cal.mole-1) and the rate constants are independent of the starting materials, but the enthalpies of activation (51-118 k cal.mole-1) and the entropies of activation (0 to -50 cal.deg.-1 mole-1) are not.
机译:本论文描述了特征明确的埃洛石矿物及其五种阳离子饱和形式的高温固态反应的动力学研究,所用阳离子为钠,钙,锰,铜和铁(III)。反应序列可以用理想方程式表示:通过X射线分析,已研究了在1020°-1200°C的温度范围内由偏高岭石形成莫来石的过程。实验数据与几种理论模型的比较表明,高达90%的转化率是通过指数成核和随后的晶体生长进行的。但是,有一些证据表明扩散是作为速率控制过程而发生的,特别是在高度转化为莫来石的情况下。已对所有埃洛石样品评估了速率常数和实验热力学函数。活化的自由能(111-128 k cal.mole-1)和速率常数与起始材料无关,但活化的焓(51-118 k cal.mole-1)和活化的熵(0至-50cal.deg.-1mol-1)不是。

著录项

  • 作者

    Maciver Susan Margaret;

  • 作者单位
  • 年度 1965
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_NZ
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