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首页> 外文期刊>Journal of Colloid and Interface Science >Dissolution kinetics of granular calcium carbonate in concentrated aqueous sodium dichromate solution at pH 6.0-7.0 and 110-130 degrees C
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Dissolution kinetics of granular calcium carbonate in concentrated aqueous sodium dichromate solution at pH 6.0-7.0 and 110-130 degrees C

机译:pH 6.0-7.0和110-130°C时,碳酸钙颗粒在浓重铬酸钠水溶液中的溶解动力学

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摘要

An understanding of the factors controlling calcite dissolution is important for modeling geochemical cycles and impacts of greenhouse gases on climate, diagenesis of sediments, and sedimentary rocks. It also has practical significance in the investigation of behavior of carbonates in petroleum and natural gas reservoirs and in the preservation of buildings and monuments constructed from limestone and marble. A large number of papers have been published on dissolution kinetics of calcium carbonate in aqueous solutions. But few involved the near-equilibrium region, especially at elevated temperatures and in concentrated solutions. In this paper, the dissolution kinetics of calcium carbonate in concentrated aqueous sodium dichromate solutions at pH 6.0-7.0 and 110-130 degreesC were studied in a 2-L autoclave. The results indicate that the dissolution reaction is mix-controlled, with surface reaction as the prevailing factor. The concentration of calcium ions in solution hardly affects the dissolution rate, but carbon dioxide in the vapor phase inhibits the dissolution reaction. The dissolution rate can be expressed by R = k(1)a(H+)(2) + k(2), and the apparent activation energy is 55-84 U mol(-1). (C) 2004 Elsevier Inc. All rights reserved.
机译:了解控制方解石溶解的因素对于模拟地球化学循环以及温室气体对气候,沉积物成岩作用和沉积岩的影响至关重要。在研究石油和天然气储层中碳酸盐的行为以及保护由石灰石和大理石建造的建筑物和古迹方面,也具有实际意义。关于碳酸钙在水溶液中的溶解动力学的大量论文已经发表。但是很少有人涉及到接近平衡的区域,尤其是在高温和浓溶液中。本文在2-L高压釜中研究了碳酸钙在pH 6.0-7.0和110-130℃的浓重铬酸钠水溶液中的溶解动力学。结果表明,溶解反应是混合控制的,表面反应是主要因素。溶液中钙离子的浓度几乎不会影响溶解速率,但是气相中的二氧化碳会抑制溶解反应。溶出速率可以表示为R = k(1)a(H +)(2)+ k(2),表观活化能为55-84 U mol(-1)。 (C)2004 Elsevier Inc.保留所有权利。

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