西南石油大学学报(自然科学版) ›› 2013, Vol. 35 ›› Issue (1): 52-62.
• 地质勘探 • Previous Articles Next Articles
Tang Qingyan, Zhang Mingjie, Zhang Tongwei, Shang Hui, Lin Yao
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Abstract: Experimental pyrolysis simulation on hydrocarbon generation from organic-rich sources is an important approachto the evaluation of hydrocarbon generation potential and resource assessment,and it can be used to simulate the physical andchemical evolution of organic matters under geological conditions. The results of pyrolysis experiment provides the tools anddata for the appraisal of the hydrocarbon generation potential and the study of the hydrocarbon formation processes,geneticmechanism and chemical kinetics. The samples used in pyrolysis experiments are usually from immature to low mature,depending on the purpose of the study and also the type of organic matter and the thermal evolution of sedimentary basins. Opensystem and close system are two different types of experimental apparatuses designed to probe special objectives. The opensystem is used to simulate primary kerogen cracking,and the closed one is used to investigate the oil and gas secondary crackingat high thermal maturation level. The effect of temperature,pressure,water and minerals on hydrocarbon generation fromorganic matter can be quantified through experimental simulation. As a result,the relationship between oil and gas generationhistory and the evolution of a sedimentary basin is revealed with the combination of the thermal history and the sedimentaryhistory of the basin,which provides the important parameters for basin modeling. With the demand of the rapid increase in theexploration and development of shale gas and tight oil unconventional resources,in order to semi-quantitatively or quantitativelyextrapolate the results of laboratory simulation to geological conditions,we outlined the following new research topics related topyrolysis simulation from this review,including:to develop the experimental technique,especially well-constrained confiningpressure for rock cylinders at high temperature and pressure condition;to further investigate hydrocarbon formation mechanismand petroleum expulsion efficiency;to enhance and strengthen high temperature and pressure simulation of organic matters,itsinteraction with strata water and minerals,as well as organic-inorganic interaction and their role in pore development,whichwill be important to the assessment of potential resources of unconventional resources,like shale gas and tight oil etc.
Key words: samples, pyrolysis apparatus, condition of temperature, pressure and agency, pyrolysis simulation, hydrocarbongeneration
Tang Qingyan;Zhang Mingjie;Zhang Tongwei;Shang Hui;Lin Yao. A Review on Pyrolysis Experimentation on Hydrocarbon Generation[J]. 西南石油大学学报(自然科学版), 2013, 35(1): 52-62.
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