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Oil cracking: An important way for highly efficient generation of gas from marine source rock kitchen
作者姓名:ZHAO  Wenzhi  WANG  Zhaoyun  ZHANG  Shuichang  WANG  Hongjun  WANG  Yunpeng
作者单位:[1]Research Institute of Petroleum Exploration & Development, Petro- China, Beijing 100083, China [2]Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou 510640. China
摘    要:The potentials of gas generation by kerogen in the late period and by crude oil cracking are closely related to the origin of natural gas in the high- to over mature marine area and their exploration perspectives. The carbon structure of kerogens, with different types and at different evolution stages, have been experimentally studied using the high magnetic field solid ^13C nuclear magnetic resonance technique in order to determine the oil and gas potential of kerogens. Results show that the contents of gas potential carbon(GPC) of types Ⅰ, Ⅱ, Ⅲ kerogens at the high- to over mature stage are very low, indicating their weak gas-generating capacity and limited gas production; however, the content of oil potential carbon(OPC) of the low mature type Ⅰ kerogen is much higher, implying that a large amount of crude oil generated during the oil-generating period will be the material for later gas generation by oil cracking. The kinetic experiment of gas generation by crude oil cracking shows that, when the temperature is about 160℃(R0=1.6%), the crude oil will start to produce large amounts of gas; the temperature range for major gas generation of crude oil is higher than that of the kerogens, and the gas production is 2 to 4 times higher than that of kerogens. The natural gas derived from oil cracking (called oil-cracked gas) is much abundant in methyl hexamethylene, which is quite different from the natural gas produced by thermal degradation of kerogens (named kerogen degradation gas) at high- to over mature stage.

关 键 词:石油  裂化反应  油原退化  磁场结构  GPC
收稿时间:2005-06-22
修稿时间:2005-06-222005-09-19

Oil cracking: An important way for highly efficient generation of gas from marine source rock kitchen
ZHAO Wenzhi WANG Zhaoyun ZHANG Shuichang WANG Hongjun WANG Yunpeng.Oil cracking: An important way for highly efficient generation of gas from marine source rock kitchen[J].Chinese Science Bulletin,2005,50(22):2628-2635.
Authors:Wenzhi Zhao  Zhaoyun Wang  Shuichang Zhang  Hongjun Wang  Yunpeng Wang
Affiliation:ZHAO Wenzhi1, WANG Zhaoyun1, ZHANG Shuichang1, WANG Hongjun1 & WANG Yunpeng2 1. Research Institute of Petroleum Exploration & Development, Petro- China, Beijing 100083, China; 2. Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou 510640, China
Abstract:The potentials of gas generation by kerogen in the late period and by crude oil cracking are closely related to the origin of natural gas in the high-to over mature marine area and their exploration perspectives. The carbon structure of kerogens, with different types and at different evolution stages, have been experimentally studied using the high magnetic field solid13C nuclear magnetic resonance technique in order to determine the oil and gas potential of kerogens. Results show that the contents of gas potential carbon(GPC) of types I, II, III kerogens at the high-to over mature stage are very low, indicating their weak gas-generating capacity and limited gas production; however, the content of oil potential carbon(OPC) of the low mature type I kerogen is much higher, implying that a large amount of crude oil generated during the oil-generating period will be the material for later gas generation by oil cracking. The kinetic experiment of gas generation by crude oil cracking shows that, when the temperature is about 160°C (Ro=l.6%), the crude oil will start to produce large amounts of gas; the temperature range for major gas generation of crude oil is higher than that of the kerogens, and the gas production is 2 to 4 times higher than that of kerogens. The natural gas derived from oil cracking (called oil-cracked gas) is much abundant in methyl hexamethylene, which is quite different from the natural gas produced by thermal degradation of kerogens (named kerogen degradation gas) at high-to over mature stage.
Keywords:oil-cracked gas  kerogen degradation gas  hydrocarbon-generating matrix structure  solid ^13C nuclear magnetic resonance  oil potential carbon  gas potential carbon  
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