INSIGHTS INTO OIL CRACKING BASED ON LABORATORY EXPERIMENTS

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dc.contributor.author Hill R.J.
dc.contributor.author Tang Y.
dc.contributor.author Kaplan I.R.
dc.date.accessioned 2022-02-13T04:46:10Z
dc.date.available 2022-02-13T04:46:10Z
dc.date.issued 2003
dc.identifier https://elibrary.ru/item.asp?id=5120893
dc.identifier.citation Organic Geochemistry, 2003, 34, 12, 1651-1672
dc.identifier.issn 0146-6380
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/35289
dc.description.abstract The objectives of this pyrolysis investigation were to determine changes in (1) oil composition, (2) gas composition and (3) gas carbon isotope ratios and to compare these results with hydrocarbons in reservoirs. Laboratory cracking of a saturate-rich Devonian oil by confined, dry pyrolysis was performed at T=350-450#°C, P=650 bars and times ranging from 24 h to 33 days. Increasing thermal stress results in the C15+ hydrocarbon fraction cracking to form C6-14 and C1-5 hydrocarbons and pyrobitumen. The C6-14 fraction continues to crack to C1-5 gases plus pyrobitumen at higher temperatures and prolonged heating time and the δ 13Cethane-δ13Cpropane difference becomes greater as oil cracking progresses. There is considerable overlap in product generation and product cracking. Oil cracking products accumulate either because the rate of generation of any product is greater than the rate of removal by cracking of that product or because the product is a stable end member under the experimental conditions. Oil cracking products decrease when the amount of product generated from a reactant is less than the amount of product cracked. If pyrolysis gas compositions are representative of gases generated from oil cracking in nature, then understanding the processes that alter natural gas composition is critical.
dc.subject Devonian
dc.title INSIGHTS INTO OIL CRACKING BASED ON LABORATORY EXPERIMENTS
dc.type Статья
dc.subject.age Paleozoic::Devonian
dc.subject.age Палеозой::Девонская ru


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