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The evolution characteristics and fractionation mechanism of carbon isotopes in the process of “multi-stage hydrocarbon generation”
引用本文:徐永昌,刘文汇,沈平,张晓宝,黄第番,宋一涛.The evolution characteristics and fractionation mechanism of carbon isotopes in the process of “multi-stage hydrocarbon generation”[J].中国地球化学学报,2005,24(1):1-8.
作者姓名:徐永昌  刘文汇  沈平  张晓宝  黄第番  宋一涛
作者单位:[1]StateLaboratoryofGasGeochemistry,InstituteofGeology,ChineseAcademyofSciences,Lanzhou730000,China [2]InstitutionofOilandGasExplorationandDevelopmentofChinaPetroleum&NaturalGasStockCo.Ltd.,Beijing100083,China [3]InstitutionofGeosciences,ShenliPetroleumAdministrativeBureau,Dongying257015,China
基金项目:Thisresearchprojectwasgrantedbyboththe960006ProjectofChinaPetroleumandNaturalGasCo.andtheNationalNaturalScienceFoundationofChina(GrantNo.49973010)
摘    要:The Jiyang Sag and the Liaohe Basin are the two important areas where immature oil resources are distributed in China. From these two areas immature-low mature to mature oil samples were collected for carbon isotopic analysis. The extracts of source rocks are dominant in the Jiyang Sag while crude oils are dominant in the Liaohe Basin. The maturity index, Ro, for source rocks varies from 0.25%(immature) to 0.65% (mature). Studies have shown that within this range of Ro values the extracts of source rocks and crude oils, as well as their fraction components, have experienced observable carbon isotope fractionation. The carbon isotopic values tend to increase with burial depth, the oils become from immature-low mature to mature, and the rules of evolution of oils show a three-stage evolution pattern, i. e. ,light→heavy→light→heavy oils. Such variation trend seems to be related to the occurrence of two hydrocarbon-generating processes and the main hydrocarbon-forming materials being correspondingly non-hydrocarbons and possessing MAB characteristics, lower thermodynamic effects and other factors. In the process towards the mature stage, with increasing thermodynamic effects, the thermal degradation of kerogens into oil has become the leading factor, and correspondingly the bond-breaking ratio of ^12C-^13C also increases,making the relatively ^12C-rich materials at the low mature stage evolve again towards ^13C enrichment.

关 键 词:碳氢化合物  不成熟石油  碳同位素  分馏法  演化特征
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