The role of minerals in the thermal alteration of organic matter--III. Generation of bitumen in laboratory experiments |
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Authors: | Huizinga B J Tannenbaum E Kaplan I R |
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Institution: | Department of Earth and Space Sciences, University of California, Los Angeles 90024, USA. |
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Abstract: | A series of pyrolysis experiments, utilizing two different immature kerogens (from the Monterey and Green River Formations) mixed with common sedimentary minerals (calcite, illite, or Na-montmorillonite), was conducted to study the impact of the mineral matrix on the bitumen that was generated. Calcite has no significant influence on the thermal evolution of bitumen and also shows virtually no adsorption capacity for any of the pyrolysate. In contrast, montmorillonite and illite, to a lesser extent, alter bitumen during dry pyrolysis. Montmorillonite and illite also display strong adsorption capacities for the polar constituents of bitumen. By this process, hydrocarbons are substantially concentrated within the pyrolysate that is not strongly adsorbed on the clay matrices. The effects of the clay minerals are significantly reduced during hydrous pyrolysis. The strong adsorption capacities of montmorillonite and illite, as well as their thermocatalytic properties, may in part explain why light oils and gases are generated from certain argillaceous source-rock assemblages, whereas heavy immature oils are often derived from carbonate source rocks. |
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Keywords: | pyrolysis of kerogen bitumen mineral-matrix effects montmorillonite illite calcite simulation of petroleum generation |
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