首页> 外文学位 >A ROTATING DISK STUDY ON THE RATES OF CALCITE DISSOLUTION AT 25 DEGREES CENTIGRADE (CALCIUM CARBONATE, MASS TRANSPORT, REACTION MECHANISM).
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A ROTATING DISK STUDY ON THE RATES OF CALCITE DISSOLUTION AT 25 DEGREES CENTIGRADE (CALCIUM CARBONATE, MASS TRANSPORT, REACTION MECHANISM).

机译:对钙在25摄氏度时的溶解速率(碳酸钙,传质,反应机理)的旋转圆盘研究。

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摘要

The dissolution of calcite along the cleavage face {100} was studied at 25(DEGREES)C in a carbonate solution of constant supporting electrolyte concentration and partial pressure of carbon dioxide. Rates of reaction were studied as a function of pH exposed surface area of calcite and rotational speed of the disk. The rotating disk method provided a uniformly accessible surface for the reconstruction of concentration gradients from the overall rates of dissolution.;In the interpretation of transport controlled kinetic data, it was important to take into account the effects of equilibrium reactions on the mechanism of transport. The extent to which the presence of homogenous reactions increase the overall mass transfer rates above values for purely physical diffusion were investigated as a function of the hydrodynamic fluid flow condition, the bulk solution pH and partial pressure of carbon dioxide.;The kinetic data suggested that the dissolution of calcite was controlled simultaneously by a surface reaction and by subsequent mass transport into the bulk of the solution. The gradation between transport and chemically controlled rates of dissolution was derived from a second order surface reaction rate low correlated to the mass flux and activity of hydrogen ions at the solution/calcite interface.
机译:研究了方解石沿解理面{100}的溶解在25(DEGREES)C的碳酸盐溶液中的恒定支持电解质浓度和二氧化碳分压的情况。研究了反应速率与方解石的pH暴露表面积和圆盘转速的关系。旋转盘法为从整体溶出速率重建浓度梯度提供了一个均匀可及的表面。在解释运输控制动力学数据时,重要的是要考虑平衡反应对运输机理的影响。研究了均相反应的存在将总传质速率提高到高于纯物理扩散值的程度,该程度是流体动力流体流动条件,本体溶液pH值和二氧化碳分压的函数。方解石的溶解同时通过表面反应和随后的质量转移进入溶液的大部分来控制。迁移率与化学控制的溶解速率之间的梯度来自于低级的二级表面反应速率,该速率与溶液/方解石界面处的氢离子的质量通量和活性相关。

著录项

  • 作者

    SCHUTTRINGER, ERIC CHARLES.;

  • 作者单位

    State University of New York at Buffalo.;

  • 授予单位 State University of New York at Buffalo.;
  • 学科 Chemistry Physical.
  • 学位 Ph.D.
  • 年度 1984
  • 页码 142 p.
  • 总页数 142
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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