Добірка наукової літератури з теми "Magmatisme riche en K"
Оформте джерело за APA, MLA, Chicago, Harvard та іншими стилями
Ознайомтеся зі списками актуальних статей, книг, дисертацій, тез та інших наукових джерел на тему "Magmatisme riche en K".
Біля кожної праці в переліку літератури доступна кнопка «Додати до бібліографії». Скористайтеся нею – і ми автоматично оформимо бібліографічне посилання на обрану працю в потрібному вам стилі цитування: APA, MLA, «Гарвард», «Чикаго», «Ванкувер» тощо.
Також ви можете завантажити повний текст наукової публікації у форматі «.pdf» та прочитати онлайн анотацію до роботи, якщо відповідні параметри наявні в метаданих.
Статті в журналах з теми "Magmatisme riche en K"
Hernandez, Jean, Francois Dominique de Larouziere, Jean Bolze, and Pierre Bordet. "Le magmatisme neogene betico-rifain et le couloir de decrochement trans-Alboran." Bulletin de la Société Géologique de France III, no. 2 (March 1, 1987): 257–67. http://dx.doi.org/10.2113/gssgfbull.iii.2.257.
Повний текст джерелаMagrina, Benoît, Michel Jébrak, and Michel Cuney. "Le magmatisme de la région de Kwyjibo, Province du Grenville (Canada) : intérêt pour les minéralisations de type fer-oxydes associées." Canadian Journal of Earth Sciences 42, no. 10 (October 1, 2005): 1849–64. http://dx.doi.org/10.1139/e05-103.
Повний текст джерелаProuteau, Gaelle, Rene C. Maury, Manuel Pubellier, Joseph Cotten, and Herve Bellon. "Le magmatisme post-collisionnel du Nord-Ouest de Borneo, produit de la fusion d'un fragment de croute oceanique ancre dans le manteau superieur." Bulletin de la Société Géologique de France 172, no. 3 (May 1, 2001): 319–32. http://dx.doi.org/10.2113/172.3.319.
Повний текст джерелаYuniarni, Rum. "Ciri Petrologi dan Geokimia Batuan Terobosan Gunung Sepikul, Trenggalek, Jawa Timur." Jurnal Geologi dan Sumberdaya Mineral 25, no. 2 (May 21, 2024): 107–16. http://dx.doi.org/10.33332/jgsm.geologi.v25i2.742.
Повний текст джерелаDey, Sukanta, Sibani Kumari Nayak, Aniruddha Mitra, Keqing Zong, and Yongsheng Liu. "Mechanism of Paleoarchean continental crust formation as archived in granitoids from the northern part of Singhbhum Craton, eastern India." Geological Society, London, Special Publications 489, no. 1 (2020): 189–214. http://dx.doi.org/10.1144/sp489-2019-202.
Повний текст джерелаLarsen, Poul-Henrik, Lars Stemmerik, Troels F. D. Nielsen, and David C. Rex. "Lamprophyric dykes in Revdal, Scoresby Land, East Greenland: conflicting field observations and K-Ar age determinations." Bulletin of the Geological Society of Denmark 38 (April 25, 1990): 1–9. http://dx.doi.org/10.37570/bgsd-1990-38-01.
Повний текст джерелаWidana, Kurnia Setiawan, and Bambang Priadi. "Karakteristik Unsur Jejak Dalam Diskriminasi Magmatisme Granitoid Pulau Bangka." EKSPLORIUM 36, no. 1 (May 30, 2015): 1. http://dx.doi.org/10.17146/eksplorium.2015.36.1.2766.
Повний текст джерелаMorin, David, Réjean Hébert, and Louise Corriveau. "Mesoproterozoic deep K-magmatism recorded in a megacryst- and xenolith-bearing minette dyke, western Grenville Province." Canadian Journal of Earth Sciences 42, no. 10 (October 1, 2005): 1881–906. http://dx.doi.org/10.1139/e05-083.
Повний текст джерелаMüntener, Othmar, Peter Ulmer, and Jonathan D. Blundy. "Superhydrous Arc Magmas in the Alpine Context." Elements 17, no. 1 (February 1, 2021): 35–40. http://dx.doi.org/10.2138/gselements.17.1.35.
Повний текст джерелаMulyaningsih, Sri, Sutikno Bronto, Arie Kusniadi, Lilis Apriyanti, L. Budiyanto, and Danis Agoes Wiloso. "The Petrology and Volcano-Stratigraphy of The Muria-Peninsula High-K Volcanic Rocks, Central Java, Indonesia." Journal of Geoscience, Engineering, Environment, and Technology 7, no. 2 (June 30, 2022): 69–80. http://dx.doi.org/10.25299/jgeet.2022.7.2.9602.
Повний текст джерелаДисертації з теми "Magmatisme riche en K"
Alizadeh, Noudeh Shiva. "Evolution pétrologique des séries volcaniques du massif de Talysh (Iran du NW) à la transition Caucase-Caspienne et implications géodynamiques." Electronic Thesis or Diss., Chambéry, 2024. http://www.theses.fr/2024CHAMA053.
Повний текст джерелаThe Cenozoic magmatism of the Central Tethyan orogenic belt, which links the tectonic zones of Iran, the South Armenian Block (lesser Caucasus), and Turkey, remains a topic of debate. This research focuses on the thick geological succession of high-K calc-alkaline shoshonitic volcanic rocks exposed in the Talysh Massif, part of the Alborz magmatic belt, northwestern Iran. The aim of this study is to investigate the relatively unstudied volcanic rocks of the Talysh Massif to better constrain the geodynamic setting of magmatism during regional convergence. A comprehensive study including new field data, mineral chemistry, bulk-rock major and trace element geochemistry, isotope composition (Sr, Nd, Pb, Hf), geochronology 40Ar-39Ar, and zircon U-Pb. We classify them as olivine, clinopyroxene-phyric basalts, clinopyroxene-phyric basalts, amphibole-phyric basalts, tephrites, trachy-andesites, and pyroclastic rocks. They contain multiple crystal populations, including phenocrysts, antecrysts, and xenocrysts: olivine, clinopyroxene, amphibole, and re-equilibrium phlogopite, along with complex oscillatory and reverse zoning, sieve textures, and resorption textures, which suggests that the magmas stalled and differentiated in the crust prior to eruption. Olivine-clinopyroxene-phyric samples in the southern part of the study area exhibit olivine phenocrysts chemically balanced with their host rock, with a slight zoning from high-Mg# cores (Mg# = 90) to rims (Mg# = 80). Furthermore, the amphiboles, biotite 40Ar-39Ar ages of basalts, and zircon U-Pb ages of pyroclastic rocks indicate that volcanic activity took place for ~ 10 Myr (between 49 and 38 Myr). Enrichment in LILE and depletion in Nb, Ta, and Ti are characteristics of the Talysh lavas, which exhibit arc geochemical features. They have isotopic compositions that vary, for 87Sr/86Sr (i) from 0.7045 to 0.7066, for ɛNd(i) from ~-2.2 to +1.7, and ɛHf(i) from -2.5 to +3.6. The rocks have radiogenic lead 206Pb/204Pb ratios from 18.51 to 19.04, 207Pb/204Pb from 15.59 to 15.63, and 208Pb/204Pb from 38.67 to 39.15. The major elements of most primitive samples (MgO > 5 wt%) are comparable to those of melts obtained from low-degree (4–9%) partial melting of a spinel-garnet lherzolite with garnet:spinel ratios of 40:60 to 20:80. The results obtained from clinopyroxene-liquid geothermobarometry indicate a variety of magma reservoirs, ranging from deep levels (79–60 km) to shallower levels (2 km). The isotopic ratios of Sr, Nd, Pb, and Hf, as well as the similar chondrite-normalized REE and primitive-mantle-normalized incompatible trace element patterns along thermobarometry estimates on olivine, clinopyroxene, and amphibole crystals, suggests that the mantle source is an enriched asthenospheric source, and that continental crust was mixed in during the differentiation process. The data are consistent with the partial melting of a garnet-bearing subduction-modified subcontinental mantle and interactions with a spinel-bearing mantle during magmatic ascent. This magmatic flare-up could have been triggered by an asthenosphere upwelling related to the onset of south-dipping subduction of the Transcaucasus basin. Asthenosphere flow and magmatic ascent were likely facilitated by trans-lithospheric strike-slip faults and block rotations highlighted by paleomagnetic data. A transition from calc-alkaline towards a more alkaline magmatic component with time, from south to north of the Talysh massif, suggests a slab steepening in response to roll-back in the Late Eocene. After this period, volcanism stopped in the South Talysh and significantly decreased in the North Talysh massif, where it evolved into an adakitic-type magmatism during the Late Miocene and Quaternary
Cadoux, Anita. "Le magmatisme acide Plio-Pleistocène de la MargeTyrrhénienne (Italie Centrale) : Géochronologie,Pétrogénèse et Implications Géodynamiques." Phd thesis, Université Paris Sud - Paris XI, 2005. http://tel.archives-ouvertes.fr/tel-00138852.
Повний текст джерелаbasiques et intermédiaires, est à la base de la majorité des modèles géodynamiques. Comparativement, le magmatisme acide, correspondant aux premières manifestations sur la marge Tyrrhénienne est beaucoup pour les édifices de la Province Toscane (San Vincenzo, Roccastrada et Amiata). Pour le volcan de Monte Amiata, de nouvelles données isotopiques Sr-Nd et Pb confirment qu'il est en terme de sources un hybride entre les Province Toscane et Romaine. Nous proposons grâce aux âges obtenus un nouveau scénario pour sa mise en place. L'analyse en composantes principales (ACP) des données isotopiques du Pb de toutes les manifestations acides étudiées dans cette thèse a permis d'identifier les deux composants source à l'origine de ces roches. Le composant le plus important est un pôle mantellique
correspondant à un mélange entre DM et HIMU, tandis que le second, dont le rôle est mineur comparé au premier, est un pôle enrichi de type crustal. Les roches acides les plus au Sud (Pontines) montrent une influence plus forte du composant DM+HIMU. Ainsi, même sur des
roches aussi différenciées et à plus petite échelle (l'Italie centrale), on retrouve la tendance générale propre à l'ensemble de la péninsule Italienne et de la Sicile, dérivée de l'étude isotopique des roches basiques, qui montre un mélange général entre DM et HIMU auquel s'ajoute un composant dérivé de la croûte. L'influence du pôle DM-HIMU est croissante du
Nord au Sud de l'Italie. Etendue à l'échelle de la marge Tyrrhénienne italienne, l'ACP permet d'identifier deux
domaines sources, délimités par une discontinuité lithosphérique majeure de l'Italie centrale, le 41ème Parallèle, dans lesquels les composants évoluent différemment. Les caractéristiques du domaine Nord pourraient être contrôlées par un processus de délamination de la lithosphère inférieure, celles du domaine Sud par un retrait rapide du slab, les deux
phénomènes provoquant une remontée asthénosphérique.
Külahci, Doğan Gullu Deniz. "Chronological, magmatological and geochemical study of post-collisional basaltic volcanism in Central Anatolia and its spatio-temporal evolution." Thesis, Clermont-Ferrand 2, 2015. http://www.theses.fr/2015CLF22593/document.
Повний текст джерелаThis thesis revealed the petrological and geochemical characterization of post-collisional Quaternary basalts of Central Anatolia (Erciyes and Hasandağ stratovolcanoes, and dispersed volcanisms of Obruk-Zengen and Karapınar), focusing on the spatiotemporal evolution of the magmatism in Cappadocia (Turkey). K-Ar geochronology indicated the coexistence of alkaline and calc-alkaline basalts from the same location and age. Moreover, the results also show that these basalts may be very young (a few thousand years). The mineralogy of Quaternary basalts from the Cappadocia is as follows: plagioclase, olivine, clinopyroxene, orthopyroxene and oxides (magnetite, ilmenite). Orthopyroxene is observed only in basalts of Erciyes, while it is lacking in Hasandağ and dispersed volcanisms of Obruk-Zengen and Karapınar. The plagioclase phenocrysts often exhibit disequilibrium features attributed to magma mixing process: complex zoning (normal, inverse, oscillatory), concentric zones rich in melt inclusions, resorption features. However, the observed mineralogy is consistent with a dominant fractional crystallization process. The estimated geobarometer show that the origin of magmas of Erciyes is shallower than the other settings. The results in geochemistry confirm not only the mineralogical duality between Erciyes and the other settings but also the coexistence of alkaline (normative nepheline) and calc-alkaline characters of contemporary basalts. All studied basalts are enriched in LREE (Light Rare Earth Elements) and LILE (Large Ion Lithophile Elements). The isotopic data (Sr, Nd, Pb, O) indicate the importance of enriched lithospheric source. All geochemical data also display the signature of other sources and processes such as contamination by the continental crust and heritage of a former subduction
Частини книг з теми "Magmatisme riche en K"
"K-pop nationalism." In Nouveau-riche Nationalism and Multiculturalism in Korea, 144–61. Routledge, 2015. http://dx.doi.org/10.4324/9781315769837-8.
Повний текст джерелаLustrino, Michele, Claudio Chiarabba, and Eugenio Carminati. "Igneous activity in central-southern Italy: Is the subduction paradigm still valid?" In In the Footsteps of Warren B. Hamilton: New Ideas in Earth Science. Geological Society of America, 2022. http://dx.doi.org/10.1130/2021.2553(28).
Повний текст джерелаYang, Zhiming, and David R. Cooke. "Chapter 5 Porphyry Copper Deposits in China." In Mineral Deposits of China, 133–87. Society of Economic Geologists, 2019. http://dx.doi.org/10.5382/sp.22.05.
Повний текст джерелаBaker, T., S. Mckinley, S. Juras, Y. Oztas, J. Hunt, L. Paolillo, S. Pontual, M. Chiaradia, A. Ulianov, and D. Selby. "Chapter 23: Alteration, Mineralization, and Age Relationships at the Kışladağ Porphyry Gold Deposit, Turkey." In Geology of the World’s Major Gold Deposits and Provinces, 467–95. Society of Economic Geologists, 2020. http://dx.doi.org/10.5382/sp.23.23.
Повний текст джерелаZhao, Xinfu, Wei Terry Chen, Xiaochun Li, and Meifu Zhou. "Chapter 13 Iron Oxide Copper-Gold Deposits in China: A Review and Perspectives on Ore Genesis." In Mineral Deposits of China, 553–80. Society of Economic Geologists, 2019. http://dx.doi.org/10.5382/sp.22.13.
Повний текст джерела