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甲烷水合物膜生长动力学研究
Study on Growth Kinetics of Methane Hydrate Film
【摘要】 采用水中悬浮气泡法测定了温度为273.4~279.4K、压力为3.60~11.90MPa范围内甲烷微小气泡表面水合物膜生长动力学数据.应用无因次Gibbs自由能差(-?Gexp/RT)作为推动力,提出了具物理意义的水合物膜生长动力学模型,并回归得到甲烷水合物膜生长动力学反应级数为1.60,表观活化能为55.95kJ?mol-1,指前因子为1.65×1011mm2?s-1.同时考察了温度和压力对甲烷水合物膜生长速率的影响.
【Abstract】 Film growth kinetics data of methane hydrate were measured by a suspended gas bubble in water over the temperature and pressure ranges of 273.4~279.4 K and 3.60~11.90 MPa, respectively. The di- mensionless Gibbs free energy difference (-?Gexp/RT) was used as the driving force to correlate the ex- perimental data and a model involving parameters of physical significance for hydrate film growth kinetics was proposed. The reaction order (n = 1.60), apparent activation energy (55.95 kJ?mol - 1) and pre-exponential factor (1.65×1011 mm2?s-1) of methane hydrate film growth kinetics was regressed. Meanwhile the influences of temperature and pressure upon the film growth rate of methane hydrate were also discussed.
【Key words】 methane; hydrate; suspended bubble; kinetics; activation energy;
- 【文献出处】 化学学报 ,Acta Chimica Sinica , 编辑部邮箱 ,2007年02期
- 【分类号】TE83
- 【被引频次】23
- 【下载频次】618