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国家自然科学基金(40272066)

作品数:4 被引量:16H指数:2
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相关机构:中国科学院兰州地质研究所厦门大学更多>>
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沉积物体系中甲烷水合物平衡温度、压力条件实验模拟被引量:8
2004年
研究沉积物中甲烷水合物的平衡温度和压力条件,对认识甲炕水合物的稳定性以及对未来准确评价和利用甲烷水合物能源非常重要。在温度为270.9~278.2K、压力为2.47~4.31MPa条件下,分别对平均孔径为53.2nm、27.2nm和15.5nm的沉积物体系中甲烷水合物的分解平衡温度和压力条件(即相平衡)进行了测定,结果表明,近自然沉积物的平均孔径大小会影响甲烷水合物的相平衡条件。相同温度条件下,纯水体系中甲烷水合物的平衡压力比在沉积物体系中的低;随着孔径的增大,甲烷水合物在相图中稳定区的面积逐渐增加,但当体系中温度降低到冰点以下或者沉积物孔径增大到超过60nm时,沉积物孔隙毛细管对甲烷水合物稳定性的影响非常小,与纯水中的重合或者接近。甲烷水合物在沉积物体系中的相平衡数据可以用经验热力学方程拟合,拟合结果能反映孔径大小与甲炕水合物平衡压力、温度条件的相互关系。
吴保祥雷怀彦段毅张辉
关键词:甲烷水合物孔径大小
RESEARCH ON COUPLED RELATIONSHIP BETWEEN HYDRATION NUMBER WITH RAMAN SPECTRUM
2003年
As we know, there are three structures-sⅠ, sⅡ, and sH, with hydrocarbonate gas hydrate.Because of those special structures characteristics and potentail large fossil energy resource, gas hydrate play an important role in natural carbonate cycle system. In this paper, CH4, CO2, C3H8, and CH4 +CO2 system have been experimental performed in order to model hydrate formation and discomposition and to obtain hydrate stability conditions of tempreature and pressure. The results from laboratory using Raman spectra show that Raman spectrascopy is a effective tool to identify hydrate structure. Raman spectra of clathrate hydrate guest molecules are presented for two structure (sⅠ and sⅡ) in the following systems: CH4, CO2, C3 H8. Relatively occupancy of CH4 in the large and small cavities of sⅠ were determined by deconvoluting the v1 symmetric bands, resulting in hydration numbers of 6.04±0.03. The freqyuency of the v1 bands for CH4 in structures Ⅰ and Ⅱ differ statistically. The large cavities were measured to be almost fully occupied by CH4 and CO2, whereas only a small fraction of the small cavities are occupied by CH4. No CO2 was found in the small cavities.
LEI Huaiyan~(1,2), LIU Zhihong~3, FAN Shuanshi~2, XU Maoquan~1 and GUAN Baocong~1 (~1 Institute of Oceanography and Environment, Xiamen University
关键词:CLATHRATERAMANHYDRATION
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