1、

Solid 13C nuclear magnetic resonance spectrometer and natural evolution combining with thermocompression simulator are used for analysis of variation of carbon matrix and functional group in the course of kerogen thermal evolution, showing that lipid carbons mainly contribute to the hydrocarbon generation.

应用固体13C核磁波谱分析技术,采用自然演化与热压模拟相结合探讨了干酪根热演化过程中碳骨架与官能团的变化规律,提出脂碳是生烃主要贡献者。

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The Upper Paleozoic Carboniferous-Permian source rocks are mainly coal measure strata, with thickness in the range of 150~ 500m, low to medium organic matter abundance, and type ⅲ kerogen.

上古生界石炭&二叠系烃源岩主要为煤系地层,厚度为150~500m,有机质丰度属于低-中等,有机质类型为Ⅲ型。

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3、

Correlation of activation energy with frequency factor in tissot's parallel reaction model of kerogen pyrolysis

干酪根热解平行反应模型中表观活化能与视频率因子的关联

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4、

By using simulation experiments, TGA method and Rock-Eval analysis, the potential of kerogen for oil generation was measured and compared with that determined by Tissot.

本文还用实验模拟、热重、热谱等方法测定了干酪根的生油潜量,并与蒂索确定的生油潜量进行了比较研究。

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5、

Inversion of thermal history in carbonate strata by using free radical concentration of kerogen

利用干酪根自由基浓度反演碳酸盐岩地层热历史

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6、

The research indicates that at low thermal evolution stage associated with humic acid decomposition and kerogen rearrangement, bio-thermal catalytic transitional zone gas with lighter carbon isotope value of methane can be generated.

研究表明低热演化阶段伴随腐殖物质的降解和干酪根的分子重排作用能产生甲烷同位素较轻的生物-热催化过渡带气。

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7、

This is an important aspect to study coal chemical reaction and relation with coal-type gas while geological geochemistry evolves, and the new theoretical foundation for study of thermo-degradation mechanism of kerogen and evolving rule of coal-type gas were offered.

这是研究煤在地质地球化学演化过程中的化学反应及其与煤成气形成演化关系的一个方面,为干酪根热降解机理和煤成气演化规律的研究提供了新的理论依据。

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8、

The isotopic relationships between kerogen and individual soluble hydrocarbons suggest a special biogeochemical cycle existed in the Proterozoic Yanshan Basin with the characteristics of a restricted sea.

蓟县剖面干酪根与可溶单体烃类的稳定碳同位素关系显示了具有局限海特征的元古宙燕山海盆独特的生物地球化学过程。

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9、

Throughout the planet, the mole bodies would gradually break down into kerogen, a mush of organic matter that would-if the planet were hotter-eventually form oil.

整个星球的鼹鼠尸体会渐渐变成富含有机质的油母岩。如果星球的温度继续升高的话,它们最终会变成石油。

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10、

According to the characters of organic material coal belongs to ⅲ type of kerogen.

煤具有Ⅲ型干酪根性质,煤以有机质集中而不同于其他干酪根。

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11、

The rational development and utilization of coal and kerogen in north-east China

东北地区煤炭与油页岩资源的合理开发利用

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12、

Compared with other methods, the elemental analysis data of kerogen can be served as the main parameter for identifying the type of source material owing to its clearcut type classification and its wide applicability.

通过方法比较指出,干酪根元素分析是确定母质类型的主要指标,其划分母质类型界限清楚,有普遍使用意义。

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13、

The application of whole rock analysis technique on source rock and a comparison with the result from kerogen analysis

全岩分析在烃源岩研究中的应用及与干酪根分析的比较

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14、

For kerogen at different stages of thermal evolution are given. In addition, the limits of petroliferous evolution of kerogen and explora-tion prospect are discussed.

求出各类干酪根在不同的热演化阶段的H/C与R值的回归关系式,并研究了各类干酪根的油气演化界限,讨论了本区的油气勘探前景。

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15、

The solvent swelling ratio of the kerogen from Palougou Coal was determined by two methods, and then the oil primary migration was modeled.

用不同方法确定了扒搂沟煤型干酪根的溶胀比,计算模拟了石油的初次运移。

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16、

In order to determine PY-GC parameters of kerogen, certain compounds are selected to replace the other similar compounds.

作者选择某些特定化合物代替其同类化合物,以判别干酪根热解-气相色谱(Py-Gc)参数。

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17、

The free radical concentration is controlled by temperature and heating time, thus the experimental data can be used to establish quantitative relational expression between free radi-cal concentration of kerogen and temperature-time index.

自由基浓度受温度和加热时间的控制,由此可利用实验数据建立干酪根自由基浓度与温度-时间指数的定量关系式。

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18、

type of kerogen and its characteristic

干酪根类型及其特征

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19、

This paper presents the X-ray diffraction data of algal kerogen obtained by hydrous pyrolysis and discusses the correlation between the structural parameters of algal kerogen and the evolution of oil and gas.

通过对加水热模拟实验中藻干酪根X射线衍射(XRD)特征的分析.探讨了其XRD谱图的演化特征、结构参数间的关系及其与油气生成的关系。

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20、

mathematic simulation method of kerogen degradation

干酪根降解数学模拟法

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