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天然气水合物生成焓的实验研究
引用本文:高军.天然气水合物生成焓的实验研究[J].中国化学工程学报,2003,11(3):276-279.
作者姓名:高军
作者单位:[1]DepartmentofChemicalandPharmaceuticalEngineering,QingdaoInstituteofChemicalTechnology,Qingdao266042,China [2]DepartmentofChemicalandProcessingEngineering,UniversityofCanterbury,Christchurch,NewZealand
摘    要:This paper reports the measurements of enthalpies of natural gas hydrates in typical natural gas mixture containing methane, ethane, propane and iso-butane at pressure in the vicinity of 2000 kPa (300 psi) and 6900 kPa(1000psi). The measurements were made in a multi-cell differential scanning calorimeter using modified high pressure cells. The enthalpy of water and the enthalpy of dissociation of the gas hydrate were determined from the calorimeter response during slow temperature scanning at constant pressure. The amount of gas released from the dissociation of hydrate was determined from the pumped volume of the high pressure pump. The occupation ratio (mole ratio) of the water to gas and the enthalpy of hydrate formation are subject to uncertainty of 1.5%.The results show that the enthalpy of hydrate formation and the occupation ratio are essentially independent of pressure.

关 键 词:量热法测定  热焓  天然气水合物  组成分析  生成焓
修稿时间: 

Calorimetric Determination of Enthalpy of Formation of Natural Gas Hydrates
Kenneth N.Marsh.Calorimetric Determination of Enthalpy of Formation of Natural Gas Hydrates[J].Chinese Journal of Chemical Engineering,2003,11(3):276-279.
Authors:Kenneth NMarsh
Affiliation:Department of Chemical and Pharmaceutical Engineering, Qingdao Institute of Chemical Technology, Qingdao 266042, China Department of Chemical and Processing Engineering, University of Canterbury, Christchurch, New Zealand
Abstract:This paper reports the measurements of enthalpies of natural gas hydrates in typical natural gas mixture containing methane, ethane, propane and iso-butane at pressure in the vicinity of 2000 kPa (300 psi) and 6900 kPa (1000psi). The measurements were made in a multi-cell differential scanning calorimeter using modified high pressure cells. The enthalpy of water and the enthalpy of dissociation of the gas hydrate were determined from the calorimeter response during slow temperature scanning at constant pressure. The amount of gas released from the dissociation of hydrate was determined from the pumped volume of the high pressure pump. The occupation ratio (mole ratio) of the water to gas and the enthalpy of hydrate formation are subject to uncertainty of 1.5%. The results show that the enthalpy of hydrate formation and the occupation ratio are essentially independent of pressure.
Keywords:enthalpy of formation  calorimetric determination  natural gas hydrate
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