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首页> 外文期刊>Marine and Petroleum Geology >Carbon isotopic composition of individual light hydrocarbons evolved from pyrolysis of source rocks from Ying-Qing Basins, China
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Carbon isotopic composition of individual light hydrocarbons evolved from pyrolysis of source rocks from Ying-Qing Basins, China

机译:英青盆地烃源岩热解过程中产生的轻烃碳同位素组成

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摘要

Light hydrocarbons are an important part of natural gas, and are commonly used in gas/source rock correlation. This study determines carbon isotopic compositions of individual light hydrocarbons generated from three potential source rocks pyrolyzed at different temperature by using GC-IRMS technique with combined glass tube pyrolysis. The results indicate that, for the natural gases from the Ying-Qiong basins, it is difficult to further identify the origin of gas in terms of carbon isotope data alone. Light hydrocarbons from pyrolysates can be divided inot two main generation stages: at the lower temperature stage, light hydrocarbons are formed directly from primary cracking of kerogen, and their carbon isotopic distributions accord with isotope kinetic fractionation; at the higher tmeprature stage, isotopic distributions of light hydrocarbons become more complex due to the mixing of light hydrocarbons with different generation mechanisms. e.g. secondary cracking of heavy hydrocarbons. In addition, experimental results also prove that an "accumulative" effect may be one of major factors that cause the part reversal in carbon isotope ratios among light hydrocarbon compoents from the Ying-Qiong basins.
机译:轻质碳氢化合物是天然气的重要组成部分,通常用于天然气/烃源岩的关联。这项研究通过结合玻璃管热解的GC-IRMS技术,确定了在不同温度下热解的三种潜在烃源岩中生成的各个轻烃的碳同位素组成。结果表明,对于营琼盆地的天然气,仅凭碳同位素数据就很难进一步确定天然气的来源。来自热解产物的轻烃可分为两个主要生成阶段:在较低温度阶段,轻烃是由干酪根的初裂直接形成的,其碳同位素分布符合同位素动力学分级;在较高的温度阶段,由于轻烃与不同生成机理的混合,轻烃的同位素分布变得更加复杂。例如重烃的二次裂解。此外,实验结果还证明,“累积”效应可能是引起营琼盆地轻烃成分中碳同位素比部分逆转的主要因素之一。

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