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Kinetics of carbonate mineral dissolution in CO2-acidified brines at storage reservoir conditions

机译:储层条件下碳酸盐矿物在二氧化碳酸化盐水中溶解的动力学

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We report experimental measurements of the dissolution rate of several carbonate minerals in CO2-saturated water or brine at temperatures between 323 K and 373 K and at pressures up to 15 MPa. The dissolution kinetics of pure calcite were studied in CO2-saturated NaCl brines with molalities of up to 5 mol kg(-1). The results of these experiments were found to depend only weakly on the brine molality and to conform reasonably well with a kinetic model involving two parallel first-order reactions: one involving reactions with protons and the other involving reaction with carbonic acid. The dissolution rates of dolomite and magnesite were studied in both aqueous HCl solution and in CO2-saturated water. For these minerals, the dissolution rates could be explained by a simpler kinetic model involving only direct reaction between protons and the mineral surface. Finally, the rates of dissolution of two carbonate-reservoir analogue minerals ( Ketton limestone and North-Sea chalk) in CO2-saturated water were found to follow the same kinetics as found for pure calcite. Vertical scanning interferometry was used to study the surface morphology of unreacted and reacted samples. The results of the present study may find application in reactive-flow simulations of CO2-injection into carbonate-mineral saline aquifers.
机译:我们报告了在323 K和373 K之间的温度和最高15 MPa的压力下,几种碳酸盐矿物在CO2饱和的水或盐水中的溶解速率的实验测量结果。研究了纯方解石在CO2饱和的NaCl盐水中的溶解动力学,其摩尔浓度最高为5 mol kg(-1)。发现这些实验的结果仅微弱地依赖于盐水的摩尔浓度,并且与涉及两个平行的一级反应的动力学模型相当吻合:一个涉及质子的反应,另一个涉及碳酸的反应。研究了白云石和菱镁矿在HCl水溶液和CO2饱和水中的溶解速率。对于这些矿物质,溶解速率可以通过一个更简单的动力学模型来解释,该动力学模型仅涉及质子与矿物质表面之间的直接反应。最后,发现两种碳酸盐-储层类似矿物(Ketton石灰石和北海白垩)在二氧化碳饱和的水中的溶解速率遵循与纯方解石相同的动力学。垂直扫描干涉法用于研究未反应和已反应样品的表面形态。本研究的结果可能在将二氧化碳注入碳酸盐矿物质盐水层中的反应流模拟中找到应用。

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