Behar et al., 1997 - Google Patents
Comparison of rate constants for some molecular tracers generated during artificial maturation of kerogens: influence of kerogen typeBehar et al., 1997
- Document ID
- 1648686976718498382
- Author
- Behar F
- Tang Y
- Liu J
- Publication year
- Publication venue
- Organic Geochemistry
External Links
Snippet
The purpose of this work is to carry out artificial maturation of various kerogens under isothermal conditions in open and closed systems and to derive kinetic parameters for specific molecular tracers such as n-C12 and n-C24 alkanes. Results show that individual …
- 230000035800 maturation 0 title abstract description 7
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Behar et al. | Comparison of rate constants for some molecular tracers generated during artificial maturation of kerogens: influence of kerogen type | |
Behar et al. | Thermal cracking of kerogen in open and closed systems: determination of kinetic parameters and stoichiometric coefficients for oil and gas generation | |
Tissot | Recent advances in petroleum geochemistry applied to hydrocarbon exploration | |
Hou et al. | Characteristics and quantitative models for hydrocarbon generation-retention-production of shale under ICP conditions: Example from the Chang 7 member in the Ordos Basin | |
Pan et al. | The effects of calcite and montmorillonite on oil cracking in confined pyrolysis experiments | |
Dominé | High pressure pyrolysis of n-hexane, 2, 4-dimethylpentane and 1-phenylbutane. Is pressure an important geochemical parameter? | |
Lewan | Assessing natural oil expulsion from source rocks by laboratory pyrolysis | |
Tang et al. | A kinetic model for thermally induced hydrogen and carbon isotope fractionation of individual n-alkanes in crude oil | |
Ungerer et al. | Kinetic modelling of oil cracking | |
Behar et al. | Experimental simulation in a confined system and kinetic modelling of kerogen and oil cracking | |
Gao et al. | Isotope rollover in shale gas observed in laboratory pyrolysis experiments: Insight to the role of water in thermogenesis of mature gas | |
Suuberg et al. | Product composition and kinetics of lignite pyrolysis | |
Cesare | Graphite precipitation in C—O—H fluid inclusions: closed system compositional and density changes, and thermobarometric implications | |
Preston et al. | The petroleum geochemistry of oils and source rocks from the northern Bonaparte Basin, offshore northern Australia | |
Beach et al. | Laboratory thermal alteration of triaromatic steroid hydrocarbons | |
Mu et al. | Methane production and carbon capture by hydrate swapping | |
Xiang et al. | Petroleum generation kinetics for Permian lacustrine source rocks in the Junggar Basin, NW China | |
Yang et al. | On the primary and secondary petroleum generating characteristics of the Bowland Shale, northern England | |
US5394733A (en) | Quantitative pyrolysis-gas chromatography using diamondoid compounds | |
Wang et al. | Gas evolution during kerogen pyrolysis of Estonian Kukersite shale in confined gold tube system | |
Michels et al. | Effects of pressure on organic matter maturation during confined pyrolysis of Woodford kerogen | |
Wang et al. | Hydrocarbon gas generation from pyrolysis of extracts and residues of low maturity solid bitumens from the Sichuan Basin, China | |
Wang et al. | Hydrocarbon generation from calcium stearate: Insights from closed-system pyrolysis | |
Düppenbecker et al. | Compositional information for kinetic modelling and petroleum type prediction | |
Schlepp et al. | Pyrolysis of asphalt in the presence and absence of water |