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LA-ICP-MS zircon U-Pb dating of dacite in the Sangthong Au mining area,Luang Prabang-Loei metallogenetic belt,SW Laos
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作者 Lin-nan Guo Zhen-wen Liao +5 位作者 Chun-mei Huang Yong-fei Yang Bin Zhang Si-wei Xu Hui-min Liang Xiang-ting Zeng 《China Geology》 2025年第2期454-456,I0048-I0053,共9页
1.Objective,The Luang Prabang(Laos)-Loei(Thailand)metallogenetic belt,located along the northwestern margin of the Indochina Block(Fig.1a)and endowed nearly 200 t of gold and more than 106 t of copper,is one of the mo... 1.Objective,The Luang Prabang(Laos)-Loei(Thailand)metallogenetic belt,located along the northwestern margin of the Indochina Block(Fig.1a)and endowed nearly 200 t of gold and more than 106 t of copper,is one of the most important gold-copper metallogenic belts in Indo-China Peninsula.It has undergone tectonic changes during the Early Paleozoic to Mesozoic Proto-Paleo Tethys tectonic evolution,recorded by the Luang Prabang tectonic belt,the Nan-Uttaradit suture,and the Dien Bien Phu-Loei suture. 展开更多
关键词 Indochina Block Sangthong Au Mining Area dacite luang prabang tectonic beltthe Tectonic Changes Luang Prabang Loei Metallogenetic Belt Early Paleozoic Mesozoic tectonic changes
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Zircon SHRIMP U–Pb geochronology,geochemistry,and geological significance of dacite in the Zhesang gold district,southeast Yunnan Province,China 被引量:1
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作者 Bo Wang Jiasheng Wang +3 位作者 Jinlong Li Hao Fu Yuehua Ma Bin Ye 《Acta Geochimica》 EI CAS CSCD 2023年第2期290-308,共19页
The Late Paleozoic and Mesozoic tectonic framework of the Nanpanjiang Basin has much been disputed.Herein,the middle-acid volcanic rock,dacite,exposed to the Zhesang gold district,southeast Yunnan Province,has been an... The Late Paleozoic and Mesozoic tectonic framework of the Nanpanjiang Basin has much been disputed.Herein,the middle-acid volcanic rock,dacite,exposed to the Zhesang gold district,southeast Yunnan Province,has been analyzed.The results show that the dacite belongs to a calc-alkaline series,SiO_(2)contents range from 62.79 to 76.66 wt%.Zircon SHRIMP U–Pb dating of dacite demonstrates that they were formed in the Early Triassic(247.8±1.7 Ma,MSWD=1.2).All samples exhibit enrichment in LILE(e.g.Rb,K,Th,and U),and depletion in HFSE(e.g.Nb,Ta,and Ti),which has the geochemical affinity of I-type granite.La–La/Sm and La–La/Yb discrimination diagrams show that the partial melting,mainly of the mafic lower crust,of rocks,plays a major role in the formation process.The dacite has low initial ^(87)Sr/^(86)Sr ratios(0.706954 to 0.708589)and negative ε_(Nd)(t)values(-11.77 to-10.88).Zircons in dacite have ε_(Hf)(t)values of-16.2 to-8.3,and the two-stage Hf model ages are 1799–2301 Ma,mostly concentrated between 1800 and 1900 Ma,indicating that the magma source area is the reconstructed ancient lower crust mixed with some mantle materials,and crystal fractionation process underwent in the late stage of magma migration.This study reveals that the arc-volcanic rocks of the Early Triassic in the southern margin of the Nanpanjiang Basin were formed by the subduction of the Late Paleozoic ocean basin within the border region between China and Vietnam. 展开更多
关键词 dacite Zircon SHRIMP U–Pb geochronology Sr–Nd–Hf isotope GEOCHEMISTRY Arcvolcanic rock Late Paleozoic ocean basin
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Geochronology and Geochemistry of the Subduction-related Rocks with High Sr/Y Ratios in the Zedong Area: Implications for the Magmatism in Southern Lhasa Terrane during Late Cretaceous 被引量:7
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作者 CHEN Yanhong YANG Jingsui +3 位作者 XIONG Fahui ZHANG Lan LAI Shengmin CHEN Mei 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2015年第2期351-368,共18页
The southern Lhasa Terrane is famous for its huge magmatic belt which records the magmatism during Mesozoic and Cenozoic. Although the Mesozoic continental-margin setting in the southern Lhasa Terrane has been identif... The southern Lhasa Terrane is famous for its huge magmatic belt which records the magmatism during Mesozoic and Cenozoic. Although the Mesozoic continental-margin setting in the southern Lhasa Terrane has been identified, details of this tectonic setting and the evolution history during the Late Cretaceous remain unclear. To further constrain these issues, we present zircon LA-ICP-MS U-Pb, Hf isotopic and geochemical data of the Gongbari dacites (of the Sangri Group) which intruded by Paleocene granodiorites from the eastern part of the southern Lhasa Terrane, Tibet. New age data indicate that the dacites were generated at -95.4 Ma, which suggests the Sangri Group volcanism may last to Late Cretaceous. The Gongbari dacites are characterized by high Sr (428-758 ppm) contents, low concentration of heavy rare earth elements and Y (e.g. Yb=0.78-1.14 ppm; Y=8.85-11.4 ppm) with high Sr/Y (41.91-67.59) and La/Yb (22.64-30.64) ratios, similar to those of adakite. The rocks are calc-alkaline, metaluminous, enriched in LILEs, depleted in HFSEs, and have positive tar(t) values (+7.7 to +11.6). The Gongbari dacites were probably produced by partial melting of young and hot subducted Neo- Tethyan oceanic crust under amphibolite to garnet amphibolite-facies conditions. Though the Gangdese Mountains may have formed before Indo-Asian collision, the southern margin of Lhasa Terrane might not go through obviously crustal thickening during the northward subduction of Neo-Tethyan oceanic lithosphere. 展开更多
关键词 Adakitic dacite Sangri Group Neo-Tethyan Ocean Southern Lhasa Terrane Tibet
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Geochemistry and Petrogenesis of Basic and Ultrabasic Rocks Elogo Complex in Ivindo Archean Block (Congo Craton): Geodynamic Implications
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作者 Nelson Lekeba Makamba Vicky Tendresse Télange Bouenitela +1 位作者 Ulrich Verne Matiaba-Bazika Florent Boudzoumou 《Open Journal of Geology》 CAS 2023年第2期107-135,共29页
The Elogo complex is a greenstone belt portion located on the Eastern edge of the Archean Congo craton at the junction with the Paleoproterozoic to Neoproterozoic Sembe Ouesso basin. This study was carried out on this... The Elogo complex is a greenstone belt portion located on the Eastern edge of the Archean Congo craton at the junction with the Paleoproterozoic to Neoproterozoic Sembe Ouesso basin. This study was carried out on this complex to determine the context of the placement of basaltic rocks. Metaluminous tholeiitic basalts (basic and ultrabasic), calc-alkaline basalts, andesitic basalts, and peraluminous calc-alkaline dacites represent greenstones. Tholeiitic and calc-alkaline basalts come from deep enriched and depleted mantle sources, including garnet in fusion residues [Al<sub>2</sub>O<sub>3</sub>/TiO<sub>2</sub> > 16 (16.5 to 35.12) and in some samples between 12.45 to 14.48;CaO/Al<sub>2</sub>O<sub>3</sub> 1 (1.04 to 1.35) in ten samples and (Gb/Yb)<sub>PM</sub> > 1]. The calc-alkaline dacites come from a shallow depleted mantle source [Al<sub>2</sub>O<sub>3</sub>/TiO<sub>2</sub> > 16;CaO/Al<sub>2</sub>O<sub>3</sub> 1]. Tholeiitic and calc-alkaline basalts have a negative Rb, Ba, Ce, and Nb anomaly without negative Ti anomaly, positive Ta, Pb anomalies, and a lack of significant REE [(La/Yb)n = 0.36 to 0.97 and 1 to 2.15;(Ce/Yb)n = 0.27 to 0.96 and 1.04 to 1.72, respectively] fractionation. High Nb/Th (2 to 10) and Nb/U (1.82 to 26) ratios and low La/Ta (5 to 27) ratios are characteristic of divergent margin magmatic sources. Tholeiitic and calc-alkaline basalts correspond to an extensive back-arc basin-type tectonic setting. Calc-alkaline andesitic basalts and dacites show positive Ba, U, Th, K, La, Ce, Pb, and Li anomalies and negative Nb, Ta, and Ti anomalies reflecting crustal contamination and hydrothermal alteration in a compressive tectonic context as a volcanic arc in a subduction regime marking the interruption of the meso-neoarchean Elogo’s opening. Elogo’s opening and closing are probably associated with the emplacement of the greenstone of the meso-neoarchean Gabon Belinga group and the relics of the Mesoarchean greenstones of the Cameroun Ntem complex. 展开更多
关键词 Elogo GREENSTONE ARCHEAN THOLEIITIC Andesitic Basalts dacites Magma Source
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Quaternary Volcanoes of Indian Subcontinent:An Overview
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作者 Tapan Pal 《Episodes》 2020年第1期312-322,共11页
In Indian subcontinent one active volcano and another dormant volcano of Quaternary period are present in the Andaman Java subduction complex.The active Barren volcano throughout its history is erupting mainly tholeii... In Indian subcontinent one active volcano and another dormant volcano of Quaternary period are present in the Andaman Java subduction complex.The active Barren volcano throughout its history is erupting mainly tholeiitic basalt whereas the dormant Norcondam volcano is domal dacite and andesite volcano.In the Barren volcano wall,of 2km wide caldera is made up of prehistoric(~35 Ka)pyroclastics whereas the polygenetic tuff cone and valley fill are the products of historic(1787 yr)to recent activities of subaerial strombolian eruption and transient lava flows. 展开更多
关键词 domal dacite andesite volcanoin polygenetic tuff cone norcondam volcano barren volcano andaman java subduction complexthe valley fill tholeiitic basalt Indian subcontinent
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