Geochemical features of dike rocks of the Argentine islands and the near area of the antarctic peninsula (Western Antarctica)

The block of the Antarctic Peninsula is part of a magmatic arc formed along the southwestern part of the paleo-Pacific margin of the Gondwana supercontinent. Currently, subduction processes continue only in its northwestern part — in the region of the South Shetland islands, and to the southwest of...

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Published in:Arctic and Antarctic Research
Main Authors: G. V. Artemenko, V. I. Ganotskiy, Г. В. Артеменко, В. И. Ганоцкий
Other Authors: National Science Center of Ukraine for the presented the opportunity to carry out field research on the Ukrainian Antarctic station “Academician Vernadsky”, State Target Scientific and Technical research program of Ukraine in Antarctica for 2011–2020 years, НАНЦ Украины, представленная возможность выполнить полевые исследования на УАС «Вернадский», Государственная целевая научно-технической программа Украины в Антарктике на 2011–2020 годы
Format: Article in Journal/Newspaper
Language:Russian
Published: Государственный научный центр Российской Федерации Арктический и антарктический научно-исследовательский институт 2018
Subjects:
Online Access:https://www.aaresearch.science/jour/article/view/31
https://doi.org/10.30758/0555-2648-2018-64-3-270-293
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author G. V. Artemenko
V. I. Ganotskiy
Г. В. Артеменко
В. И. Ганоцкий
author2 National Science Center of Ukraine for the presented the opportunity to carry out field research on the Ukrainian Antarctic station “Academician Vernadsky”
State Target Scientific and Technical research program of Ukraine in Antarctica for 2011–2020 years
НАНЦ Украины, представленная возможность выполнить полевые исследования на УАС «Вернадский»
Государственная целевая научно-технической программа Украины в Антарктике на 2011–2020 годы
author_facet G. V. Artemenko
V. I. Ganotskiy
Г. В. Артеменко
В. И. Ганоцкий
author_sort G. V. Artemenko
collection Arctic and Antarctic Research
container_issue 3
container_start_page 270
container_title Arctic and Antarctic Research
container_volume 64
description The block of the Antarctic Peninsula is part of a magmatic arc formed along the southwestern part of the paleo-Pacific margin of the Gondwana supercontinent. Currently, subduction processes continue only in its northwestern part — in the region of the South Shetland islands, and to the southwest of it — there is a passive segment of the continental margin, within which the Argentine islands are located. Here, subduction was completed in the late Miocene-Early Pliocene. In the geological structure of the Argentine islands archipelago, the rocks of the Upper Jurassic volcanic group (AP Volcanic Group) and intrusive batholiths of the batholiths (AP batholiths) are distinguished. In them, there are numerous dikes of basic, medium and acidic compositions. The activation of dyke magmatism on the passive margin of the Antarctic Peninsula was probably connected with subduction processes in its northwestern part.The age sequence of dike formation in the rocks of the Antarctic Peninsula (AP) volcanic Group and intrusions of the gabbroids and granitoids of the Andean complex in the Argentine Islands and the near area of the Antarctic Peninsula is determined. The early dikes of the dacites in the volcanogenic stratum of the AP volcanic Group and the gabbrodiabases in the gabbroids of the Andean complex have a submeridional and northwestern strike. After the introduction of the granitoids of the Andean complex, dikes predominantly of the sublatitudinal and northeasterly strike are formed. The early dikes in the gabbroids of the Andean complex are Fe-Ti cumulates, and in granodiorite intrusions they are represented by aplites, probably formed from the residual magma of these intrusions. Later dikes were formed, probably due to the melting of the metasomatized mantle source at moderate depths under the influence of plumes. To their primitive (initial) melts, the composition of high-magnesian dike rocks is probably close. Products of deep mantle (plume) sources in the sample of selected samples were not detected. The dike rocks ...
format Article in Journal/Newspaper
genre Antarc*
Antarctic
Antarctic Peninsula
Antarctica
Arctic
Argentine Islands
South Shetland Islands
Антарктида
genre_facet Antarc*
Antarctic
Antarctic Peninsula
Antarctica
Arctic
Argentine Islands
South Shetland Islands
Антарктида
geographic Antarctic
Antarctic Peninsula
Argentine
Argentine Islands
Pacific
South Shetland Islands
The Antarctic
geographic_facet Antarctic
Antarctic Peninsula
Argentine
Argentine Islands
Pacific
South Shetland Islands
The Antarctic
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op_doi https://doi.org/10.30758/0555-2648-2018-64-3-270-29310.30758/0555-2648-2018-64-3
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Storey B.C., Garrett S.W. Crustal growth of the Antarctic Peninsula by accretion, magmatism and extension // Geol. Mag. 1985. V. 122. P. 5–14.
Larter R.D., Barker P.F. Effects of ridge cresttrench interaction on Antarctic-Phoenix spreading: Forces on a young subducting plate // J. Geophys. Res. 1991. V. 96 (B12). P. 19583–19607.
Yegorova T., Bakhmutov V., Janik T., Grad M. Joint geophysical and petrological models for the lithosphere structure of the Antarctic Peninsula continental margin // Geophys. J. Int. 2011. V. 184. P. 90–110.
Бахмутов В.Г. Геологический обзор архипелага Аргентинские острова и прилегающей территории Антарктического полуострова // Бюлл. Укр. Антаркт. центра. 1998. Вып. 2. С. 77–84.
Грикуров Г.Э. Геология Антарктического полуострова. М.: Наука, 1973. 120 с.
Curtis R. The petrology of the Graham Coast, Graham Coast, Land // British Antarct. Surv. Sci. Rep. 1966. № 50. P. 3–51.
Elliot D.H. The petrology of the Argentine Islands // British Antarct. Surv. Sci. Rep. 1964. № 41. P. 1–31.
Pankhurst R.J., Riley T.R., Fanning C.M., Kelley S.P. Episodic Silicik Volcanism in Patagonia and the Antarctic Peninsula: Chronology of Magmatism Associated with the Break-up of Gondwana // Journ. of Petrology. 2000. V. 41. № 5. P. 605–625.
Бахмутов В.Г., Гладкочуб Д.П., Шпыра В.В. Возрастная позиция, геодинамическая специфика и палеомагнетизм интрузивных комплексов западного побережья Антарктического полуострова // Геофиз. журн. 2013. Т. 35. № 3. С. 3–30.
Wood D.A. The application of a Th-HfTa diagram to problems of tectonomagmatic classification and to establishing the nature of crustal contamination of basaltic lavas of the British Tertiary Volcanic Province // Earth and Planetary Science Letters. 1980. V. 50. P. 11–30.
Pearce J.A., Peate D.W. Tectonic implication of the composition of volcanic arc magmas // Annual Review of Earth and Planetary Sciences. 1995. V. 23. P. 251–285.
Sun S.S., McDonough W.F. Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and processes // Magmatism in the Ocean Basins / Saunders A.D., Norry M.J. (eds). Geological Society. Special Publication. Cambridge University Press, 1989. № 42. P. 313–345.
https://www.aaresearch.science/jour/article/view/31
op_rights Authors retain the copyright of their papers without restriction and grant the Arctic and Antarctic Research (Russia) journal right of first publication with the work simultaneously licensed under the the CC BY NC 4.0 Creative Commons Attribution License.
Авторы, публикующиеся в данном Журнале, сохраняют авторские права на свое произведение и предоставляют Журналу право публикации на условиях лицензии Creative Commons Attribution International 4.0 CC-BY, которая позволяет неограниченно использовать произведения при условии указания авторства и ссылки на оригинальную публикацию в Журнале.
op_source Arctic and Antarctic Research; Том 64, № 3 (2018); 270-293
Проблемы Арктики и Антарктики; Том 64, № 3 (2018); 270-293
2618-6713
0555-2648
10.30758/0555-2648-2018-64-3
publishDate 2018
publisher Государственный научный центр Российской Федерации Арктический и антарктический научно-исследовательский институт
record_format openpolar
spelling ftjaaresearch:oai:oai.aari.elpub.ru:article/31 2025-04-06T14:36:19+00:00 Geochemical features of dike rocks of the Argentine islands and the near area of the antarctic peninsula (Western Antarctica) Геохимические особенности дайковых пород островов архипелага Арджентайн и прилегающей части Антарктического полуострова (Западная Антарктида) G. V. Artemenko V. I. Ganotskiy Г. В. Артеменко В. И. Ганоцкий National Science Center of Ukraine for the presented the opportunity to carry out field research on the Ukrainian Antarctic station “Academician Vernadsky” State Target Scientific and Technical research program of Ukraine in Antarctica for 2011–2020 years НАНЦ Украины, представленная возможность выполнить полевые исследования на УАС «Вернадский» Государственная целевая научно-технической программа Украины в Антарктике на 2011–2020 годы 2018-09-30 application/pdf https://www.aaresearch.science/jour/article/view/31 https://doi.org/10.30758/0555-2648-2018-64-3-270-293 rus rus Государственный научный центр Российской Федерации Арктический и антарктический научно-исследовательский институт https://www.aaresearch.science/jour/article/view/31/31 Storey B.C., Garrett S.W. Crustal growth of the Antarctic Peninsula by accretion, magmatism and extension // Geol. Mag. 1985. V. 122. P. 5–14. Larter R.D., Barker P.F. Effects of ridge cresttrench interaction on Antarctic-Phoenix spreading: Forces on a young subducting plate // J. Geophys. Res. 1991. V. 96 (B12). P. 19583–19607. Yegorova T., Bakhmutov V., Janik T., Grad M. Joint geophysical and petrological models for the lithosphere structure of the Antarctic Peninsula continental margin // Geophys. J. Int. 2011. V. 184. P. 90–110. Бахмутов В.Г. Геологический обзор архипелага Аргентинские острова и прилегающей территории Антарктического полуострова // Бюлл. Укр. Антаркт. центра. 1998. Вып. 2. С. 77–84. Грикуров Г.Э. Геология Антарктического полуострова. М.: Наука, 1973. 120 с. Curtis R. The petrology of the Graham Coast, Graham Coast, Land // British Antarct. Surv. Sci. Rep. 1966. № 50. P. 3–51. Elliot D.H. The petrology of the Argentine Islands // British Antarct. Surv. Sci. Rep. 1964. № 41. P. 1–31. Pankhurst R.J., Riley T.R., Fanning C.M., Kelley S.P. Episodic Silicik Volcanism in Patagonia and the Antarctic Peninsula: Chronology of Magmatism Associated with the Break-up of Gondwana // Journ. of Petrology. 2000. V. 41. № 5. P. 605–625. Бахмутов В.Г., Гладкочуб Д.П., Шпыра В.В. Возрастная позиция, геодинамическая специфика и палеомагнетизм интрузивных комплексов западного побережья Антарктического полуострова // Геофиз. журн. 2013. Т. 35. № 3. С. 3–30. Wood D.A. The application of a Th-HfTa diagram to problems of tectonomagmatic classification and to establishing the nature of crustal contamination of basaltic lavas of the British Tertiary Volcanic Province // Earth and Planetary Science Letters. 1980. V. 50. P. 11–30. Pearce J.A., Peate D.W. Tectonic implication of the composition of volcanic arc magmas // Annual Review of Earth and Planetary Sciences. 1995. V. 23. P. 251–285. Sun S.S., McDonough W.F. Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and processes // Magmatism in the Ocean Basins / Saunders A.D., Norry M.J. (eds). Geological Society. Special Publication. Cambridge University Press, 1989. № 42. P. 313–345. https://www.aaresearch.science/jour/article/view/31 Authors retain the copyright of their papers without restriction and grant the Arctic and Antarctic Research (Russia) journal right of first publication with the work simultaneously licensed under the the CC BY NC 4.0 Creative Commons Attribution License. Авторы, публикующиеся в данном Журнале, сохраняют авторские права на свое произведение и предоставляют Журналу право публикации на условиях лицензии Creative Commons Attribution International 4.0 CC-BY, которая позволяет неограниченно использовать произведения при условии указания авторства и ссылки на оригинальную публикацию в Журнале. Arctic and Antarctic Research; Том 64, № 3 (2018); 270-293 Проблемы Арктики и Антарктики; Том 64, № 3 (2018); 270-293 2618-6713 0555-2648 10.30758/0555-2648-2018-64-3 Fe-Ti кумулаты Argentine Islands dikes Fe-Ti cumulates multielement diagram REE дайки мультиэлементная диаграмма острова архипелага Арджентайн РЗЭ info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion 2018 ftjaaresearch https://doi.org/10.30758/0555-2648-2018-64-3-270-29310.30758/0555-2648-2018-64-3 2025-03-10T07:54:42Z The block of the Antarctic Peninsula is part of a magmatic arc formed along the southwestern part of the paleo-Pacific margin of the Gondwana supercontinent. Currently, subduction processes continue only in its northwestern part — in the region of the South Shetland islands, and to the southwest of it — there is a passive segment of the continental margin, within which the Argentine islands are located. Here, subduction was completed in the late Miocene-Early Pliocene. In the geological structure of the Argentine islands archipelago, the rocks of the Upper Jurassic volcanic group (AP Volcanic Group) and intrusive batholiths of the batholiths (AP batholiths) are distinguished. In them, there are numerous dikes of basic, medium and acidic compositions. The activation of dyke magmatism on the passive margin of the Antarctic Peninsula was probably connected with subduction processes in its northwestern part.The age sequence of dike formation in the rocks of the Antarctic Peninsula (AP) volcanic Group and intrusions of the gabbroids and granitoids of the Andean complex in the Argentine Islands and the near area of the Antarctic Peninsula is determined. The early dikes of the dacites in the volcanogenic stratum of the AP volcanic Group and the gabbrodiabases in the gabbroids of the Andean complex have a submeridional and northwestern strike. After the introduction of the granitoids of the Andean complex, dikes predominantly of the sublatitudinal and northeasterly strike are formed. The early dikes in the gabbroids of the Andean complex are Fe-Ti cumulates, and in granodiorite intrusions they are represented by aplites, probably formed from the residual magma of these intrusions. Later dikes were formed, probably due to the melting of the metasomatized mantle source at moderate depths under the influence of plumes. To their primitive (initial) melts, the composition of high-magnesian dike rocks is probably close. Products of deep mantle (plume) sources in the sample of selected samples were not detected. The dike rocks ... Article in Journal/Newspaper Antarc* Antarctic Antarctic Peninsula Antarctica Arctic Argentine Islands South Shetland Islands Антарктида Arctic and Antarctic Research Antarctic Antarctic Peninsula Argentine Argentine Islands ENVELOPE(-64.273,-64.273,-65.246,-65.246) Pacific South Shetland Islands The Antarctic Arctic and Antarctic Research 64 3 270 293
spellingShingle Fe-Ti кумулаты
Argentine Islands
dikes
Fe-Ti cumulates
multielement diagram
REE
дайки
мультиэлементная диаграмма
острова архипелага Арджентайн
РЗЭ
G. V. Artemenko
V. I. Ganotskiy
Г. В. Артеменко
В. И. Ганоцкий
Geochemical features of dike rocks of the Argentine islands and the near area of the antarctic peninsula (Western Antarctica)
title Geochemical features of dike rocks of the Argentine islands and the near area of the antarctic peninsula (Western Antarctica)
title_full Geochemical features of dike rocks of the Argentine islands and the near area of the antarctic peninsula (Western Antarctica)
title_fullStr Geochemical features of dike rocks of the Argentine islands and the near area of the antarctic peninsula (Western Antarctica)
title_full_unstemmed Geochemical features of dike rocks of the Argentine islands and the near area of the antarctic peninsula (Western Antarctica)
title_short Geochemical features of dike rocks of the Argentine islands and the near area of the antarctic peninsula (Western Antarctica)
title_sort geochemical features of dike rocks of the argentine islands and the near area of the antarctic peninsula (western antarctica)
topic Fe-Ti кумулаты
Argentine Islands
dikes
Fe-Ti cumulates
multielement diagram
REE
дайки
мультиэлементная диаграмма
острова архипелага Арджентайн
РЗЭ
topic_facet Fe-Ti кумулаты
Argentine Islands
dikes
Fe-Ti cumulates
multielement diagram
REE
дайки
мультиэлементная диаграмма
острова архипелага Арджентайн
РЗЭ
url https://www.aaresearch.science/jour/article/view/31
https://doi.org/10.30758/0555-2648-2018-64-3-270-293