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首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Determination of CO2 Solubility in Water and NaCl Solutions under Geological Sequestration Conditions Using a Fused Silica Capillary Cell with in Situ Raman Spectroscopy
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Determination of CO2 Solubility in Water and NaCl Solutions under Geological Sequestration Conditions Using a Fused Silica Capillary Cell with in Situ Raman Spectroscopy

机译:用熔融二氧化硅毛细管与原位拉曼光谱法测定地质螯合条件下水和NaCl溶液中的CO2溶解度

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摘要

To investigate the solubility of carbon dioxide (CO2) in geological fluids at different temperatures and pressures, we developed a method for measuring solubility using an optically transparent fused silica capillary cell as a high-pressure optical cell combined with Raman spectroscopy under geological sequestration conditions (temperatures of up to 353.15 K and pressure of up to 30.0 MPa). On the basis of the fact that the band intensity of an active Raman species is proportional to its concentration, we determined the linear correlation between the known CO2 concentration and the ratio of the Raman peak heights of CO2 to H2O (.vCO(2)/vH,o) in homogeneous CO2-H2O and CO2-H2O-NaCl systems. Our results indicate that the Raman peak height ratio is a function of the CO2 concentration and that the pressure and temperature do not significantly affect the relationship between the CO2 concentration and nu(CO2)/nu(H2O) within the experimental P-T-x conditions. The nu(CO2)/nu(H2O)) values of the CO2-saturated solutions were determined by simulating the CO2 geological sequestration T-P-x conditions. Then, the CO2 solubilities were calculated using the linear relationship. Our results indicate that the method is feasible and that the solubility of CO2 in H2O or NaCl solutions decreases with increasing temperature, increases with increasing pressure, and decreases with increasing salinity. On the basis of a comparison between our experimental data and the results of the previous model, our method provides satisfactory results.
机译:为了研究二氧化碳(CO2)在不同温度和压力下的地质流体中的溶解度,我们开发了一种使用光学透明熔融二氧化硅毛细管电池作为高压光电池在地质封存条件下与拉曼光谱相结合的溶解度(温度高达353.15克,压力高达30.0MPa)。基于活性拉曼物种的带强度与其浓度成比例的事实,我们确定了已知的CO 2浓度与CO 2的拉曼峰高与H2O(.vco(2)/的比率之间的线性相关性(。(2)/ VH,O)在均相CO2-H2O和CO2-H2O-NaCl系统中。我们的结果表明拉曼峰高比率是CO 2浓度的函数,并且压力和温度不会显着影响在实验P-T-X条件下的CO 2浓度和NU(CO 2)/ NU(H2O)之间的关系。通过模拟CO 2地质螯合T-P-X条件来测定CO2饱和溶液的NU(CO2)/ NU(H2O)值。然后,使用线性关系计算CO 2溶解度。我们的结果表明该方法是可行的,并且CO 2在H 2 O或NaCl溶液中的溶解度随温度的增加而降低,随着压力的增加而增加,随着盐度的增加而降低。在我们的实验数据与先前模型的结果之间的比较的基础上,我们的方法提供了令人满意的结果。

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    Zhejiang Univ Technol Coll Environm Hangzhou 310032 Zhejiang Peoples R China;

    Zhejiang Univ Technol Coll Environm Hangzhou 310032 Zhejiang Peoples R China;

    Zhejiang Univ Technol Coll Environm Hangzhou 310032 Zhejiang Peoples R China;

    Zhejiang Univ Technol Coll Environm Hangzhou 310032 Zhejiang Peoples R China;

    Zhejiang Univ Technol Coll Environm Hangzhou 310032 Zhejiang Peoples R China;

    China Petr &

    Chem Co Ltd Huadong Branch Co Petr Explorat &

    Dev Res Inst Nanjing 210011 Jiangsu Peoples R China;

    Chinese Acad Sci Inst Deep Sea Sci &

    Engn Lab Expt Study Deep Sea Extreme Condit Sanya 572000 Hainan Peoples R China;

    Zhejiang Univ Technol Coll Environm Hangzhou 310032 Zhejiang Peoples R China;

    Zhejiang Univ Technol Coll Environm Hangzhou 310032 Zhejiang Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学工业;
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