Standard

Hydrocarbon composition of bitumen from deeply buried terrestrial organic matter (zone of apocatagenesis). / Kashirtsev, V. A.; Dolzhenko, K. V.; Fomin, A. N. и др.

в: Russian Geology and Geophysics, Том 58, № 6, 01.06.2017, стр. 702-710.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

Harvard

Kashirtsev, VA, Dolzhenko, KV, Fomin, AN, Kontorovich, AE & Shevchenko, NP 2017, 'Hydrocarbon composition of bitumen from deeply buried terrestrial organic matter (zone of apocatagenesis)', Russian Geology and Geophysics, Том. 58, № 6, стр. 702-710. https://doi.org/10.1016/j.rgg.2016.03.018

APA

Kashirtsev, V. A., Dolzhenko, K. V., Fomin, A. N., Kontorovich, A. E., & Shevchenko, N. P. (2017). Hydrocarbon composition of bitumen from deeply buried terrestrial organic matter (zone of apocatagenesis). Russian Geology and Geophysics, 58(6), 702-710. https://doi.org/10.1016/j.rgg.2016.03.018

Vancouver

Kashirtsev VA, Dolzhenko KV, Fomin AN, Kontorovich AE, Shevchenko NP. Hydrocarbon composition of bitumen from deeply buried terrestrial organic matter (zone of apocatagenesis). Russian Geology and Geophysics. 2017 июнь 1;58(6):702-710. doi: 10.1016/j.rgg.2016.03.018

Author

Kashirtsev, V. A. ; Dolzhenko, K. V. ; Fomin, A. N. и др. / Hydrocarbon composition of bitumen from deeply buried terrestrial organic matter (zone of apocatagenesis). в: Russian Geology and Geophysics. 2017 ; Том 58, № 6. стр. 702-710.

BibTeX

@article{f9472a7e4f344ca1b7c0b374cf893b9f,
title = "Hydrocarbon composition of bitumen from deeply buried terrestrial organic matter (zone of apocatagenesis)",
abstract = "We present new results catagenetic alteration of dispersed organic matter (DOM) and individual hydrocarbon composition of bitumen extracts from the lower mesocatagenesis and apocatagenesis zone, based on the study of core samples from superdeep well SV-27 (Vilui syneclise), which penetrated Permian and Upper Carboniferous coal-bearing strata. The vitrinite reflectance data show a progressive increase in the thermal maturity of DOM at a depth of ~ 4 km. The major biomarker indicators of the thermal history of DOM in the central part of the Vilyui syneclise appear to play only a minor role below this depth, thus reflecting the early stages of mesocatagenesis. The pristane/phytane ratios begin to invert at the same depth. Bitumen extracts from core samples collected from this depth contain new hydrocarbons in trace amounts, which increase with depth. The identified compounds include homologous series of alkenes, 2,4- and 2,7-dimethylalkanes, and alkylcyclohexanes with a prevalence of compounds with an odd carbon number predominance. Unusual differentiation of aliphatic and cyclic hydrocarbons with even and odd carbon-numbered chains occurs at the maximum depth (6458 m). Among aromatic hydrocarbons, four new diastereomers are identified: 17-desmethyl–23-methylmonoaromatic steroids C27. Considerable variations in the composition of bitumen extracts from the apocatagenetically altered core samples appear to reflect the termination of hydrocarbon generation from kerogen and further thermolysis of residual bitumens, including their asphaltene components. This explains the low values of maturity biomarker indicators corresponding to the apocatagenesis grade, since in this case they reflect the composition of hydrocarbons generated during the early stages and later occluded and adsorbed by asphaltenes. “Deep-seated” microoil from Permian, Carboniferous, and Cambrian deposits did not participate in the formation of oil rims and major gas condensate pools in the Vilyui petroleum area.",
keywords = "alkenes, asphaltene-occluded hydrocarbons, biomarkers, dimethylalkanes, meso- and apocatagenesis, Permo-Carboniferous coal-bearing strata, superdeep well SV-27, Vilyui syneclise, vitrinite reflectance, DEPOSITS",
author = "Kashirtsev, {V. A.} and Dolzhenko, {K. V.} and Fomin, {A. N.} and Kontorovich, {A. E.} and Shevchenko, {N. P.}",
year = "2017",
month = jun,
day = "1",
doi = "10.1016/j.rgg.2016.03.018",
language = "English",
volume = "58",
pages = "702--710",
journal = "Russian Geology and Geophysics",
issn = "1068-7971",
publisher = "Elsevier Science B.V.",
number = "6",

}

RIS

TY - JOUR

T1 - Hydrocarbon composition of bitumen from deeply buried terrestrial organic matter (zone of apocatagenesis)

AU - Kashirtsev, V. A.

AU - Dolzhenko, K. V.

AU - Fomin, A. N.

AU - Kontorovich, A. E.

AU - Shevchenko, N. P.

PY - 2017/6/1

Y1 - 2017/6/1

N2 - We present new results catagenetic alteration of dispersed organic matter (DOM) and individual hydrocarbon composition of bitumen extracts from the lower mesocatagenesis and apocatagenesis zone, based on the study of core samples from superdeep well SV-27 (Vilui syneclise), which penetrated Permian and Upper Carboniferous coal-bearing strata. The vitrinite reflectance data show a progressive increase in the thermal maturity of DOM at a depth of ~ 4 km. The major biomarker indicators of the thermal history of DOM in the central part of the Vilyui syneclise appear to play only a minor role below this depth, thus reflecting the early stages of mesocatagenesis. The pristane/phytane ratios begin to invert at the same depth. Bitumen extracts from core samples collected from this depth contain new hydrocarbons in trace amounts, which increase with depth. The identified compounds include homologous series of alkenes, 2,4- and 2,7-dimethylalkanes, and alkylcyclohexanes with a prevalence of compounds with an odd carbon number predominance. Unusual differentiation of aliphatic and cyclic hydrocarbons with even and odd carbon-numbered chains occurs at the maximum depth (6458 m). Among aromatic hydrocarbons, four new diastereomers are identified: 17-desmethyl–23-methylmonoaromatic steroids C27. Considerable variations in the composition of bitumen extracts from the apocatagenetically altered core samples appear to reflect the termination of hydrocarbon generation from kerogen and further thermolysis of residual bitumens, including their asphaltene components. This explains the low values of maturity biomarker indicators corresponding to the apocatagenesis grade, since in this case they reflect the composition of hydrocarbons generated during the early stages and later occluded and adsorbed by asphaltenes. “Deep-seated” microoil from Permian, Carboniferous, and Cambrian deposits did not participate in the formation of oil rims and major gas condensate pools in the Vilyui petroleum area.

AB - We present new results catagenetic alteration of dispersed organic matter (DOM) and individual hydrocarbon composition of bitumen extracts from the lower mesocatagenesis and apocatagenesis zone, based on the study of core samples from superdeep well SV-27 (Vilui syneclise), which penetrated Permian and Upper Carboniferous coal-bearing strata. The vitrinite reflectance data show a progressive increase in the thermal maturity of DOM at a depth of ~ 4 km. The major biomarker indicators of the thermal history of DOM in the central part of the Vilyui syneclise appear to play only a minor role below this depth, thus reflecting the early stages of mesocatagenesis. The pristane/phytane ratios begin to invert at the same depth. Bitumen extracts from core samples collected from this depth contain new hydrocarbons in trace amounts, which increase with depth. The identified compounds include homologous series of alkenes, 2,4- and 2,7-dimethylalkanes, and alkylcyclohexanes with a prevalence of compounds with an odd carbon number predominance. Unusual differentiation of aliphatic and cyclic hydrocarbons with even and odd carbon-numbered chains occurs at the maximum depth (6458 m). Among aromatic hydrocarbons, four new diastereomers are identified: 17-desmethyl–23-methylmonoaromatic steroids C27. Considerable variations in the composition of bitumen extracts from the apocatagenetically altered core samples appear to reflect the termination of hydrocarbon generation from kerogen and further thermolysis of residual bitumens, including their asphaltene components. This explains the low values of maturity biomarker indicators corresponding to the apocatagenesis grade, since in this case they reflect the composition of hydrocarbons generated during the early stages and later occluded and adsorbed by asphaltenes. “Deep-seated” microoil from Permian, Carboniferous, and Cambrian deposits did not participate in the formation of oil rims and major gas condensate pools in the Vilyui petroleum area.

KW - alkenes

KW - asphaltene-occluded hydrocarbons

KW - biomarkers

KW - dimethylalkanes

KW - meso- and apocatagenesis

KW - Permo-Carboniferous coal-bearing strata

KW - superdeep well SV-27

KW - Vilyui syneclise

KW - vitrinite reflectance

KW - DEPOSITS

UR - http://www.scopus.com/inward/record.url?scp=85020291639&partnerID=8YFLogxK

U2 - 10.1016/j.rgg.2016.03.018

DO - 10.1016/j.rgg.2016.03.018

M3 - Article

AN - SCOPUS:85020291639

VL - 58

SP - 702

EP - 710

JO - Russian Geology and Geophysics

JF - Russian Geology and Geophysics

SN - 1068-7971

IS - 6

ER -

ID: 10186986