IF 1.5 4区 地球科学 Q2 GEOLOGY
Journal of Geology Pub Date : 2021-01-01 DOI:10.1086/713727
N. Trọng, K. Zong, Yongsheng Liu, Yu Yuan, P. T. Hieu, L. Dung, P. Minh
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引用次数: 6

摘要

东特提斯早古生代以来以大量地体增生和融合为特征,东南亚在其演化过程中起着关键作用。早古生代Kontum花岗岩类包括闪长岩和花岗岩。早奥陶世(485 ~ 473 Ma)本江闪长岩Mg#、Cr、Ni含量高,Nb-Ta负异常、Pb正异常,锆石δ Hf(t)值正(+6.2 ~ +10),可能反映了交代地幔楔的熔融作用。晚奥陶世(457 ~ 453 Ma)甸平含角闪长岩和花岗岩表现出低Mg#、Cr和Ni含量,负Nb-Ta和正Pb异常,负锆石Hf(t)值(- 8.7 ~ - 4.2),反映了古大陆基性地壳在俯冲过程中的改造作用。志留系(422 Ma)戴Loc含白云母花岗岩具有较高的A/CNK和重稀土元素含量,Eu负异常,具有典型的s型花岗岩亲和。负锆石Hf(t)值(- 6.0 ~ +0.6)表明其成因与地壳沉积物的改造有关。结合同时期高压变质作用的广泛发生,认为早古生代孔屯地块岩浆弧的形成是一种超前的增生造山作用。这种岩浆弧体系在原特提斯俯冲期间主导了冈瓦纳北部边缘早古生代的演化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Early Paleozoic Arc Magmatism and Accretionary Orogenesis in the Indochina Block, Southeast Asia
Southeast Asia plays a key role in the evolution of the eastern Tethys, which is characterized by accretion and amalgamation of numerous terranes since early Paleozoic. In the present study, an early Paleozoic granitoid sequence from the Kontum massif in the central Indochina block was investigated to reveal the early Paleozoic accretionary orogenesis of the eastern Tethys. Early Paleozoic Kontum granitoids include diorites and granites. Early Ordovician (485–473 Ma) Ben Giang diorites show high Mg#, Cr and Ni contents, and negative Nb-Ta and positive Pb anomalies as well as positive zircon ɛHf(t) values (+6.2 to +10), probably reflecting the melting of a metasomatized mantle wedge. Late Ordovician (457–453 Ma) Dien Binh hornblende-bearing diorites and granites exhibit low Mg#, Cr and Ni contents, and negative Nb-Ta and positive Pb anomalies as well as negative zircon ɛHf(t) values (−8.7 to −4.2), which is interpreted to reflect the reworking of ancient continental mafic crust during subduction. In contrast, the Silurian (422 Ma) Dai Loc muscovite-bearing granites are characterized by relatively high A/CNK and heavy rare earth element contents, and a negative Eu anomaly, corresponding to a typical S-type granite affinity. Their negative zircon ɛHf(t) values (−6.0 to +0.6) suggest that a petrogenesis linked to reworking of crustal sediments. In combination with the widespread occurrence of coeval high-pressure metamorphism, we suggest that an advancing accretionary orogenesis was responsible for the generation of the early Paleozoic magmatic arc in the Kontum massif. Such magmatic arc systems dominated the early Paleozoic evolution of the northern Gondwana margin during the subduction of the Proto-Tethys.
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来源期刊
Journal of Geology
Journal of Geology 地学-地质学
CiteScore
3.50
自引率
5.60%
发文量
0
审稿时长
3 months
期刊介绍: One of the oldest journals in geology, The Journal of Geology has since 1893 promoted the systematic philosophical and fundamental study of geology. The Journal publishes original research across a broad range of subfields in geology, including geophysics, geochemistry, sedimentology, geomorphology, petrology, plate tectonics, volcanology, structural geology, mineralogy, and planetary sciences. Many of its articles have wide appeal for geologists, present research of topical relevance, and offer new geological insights through the application of innovative approaches and methods.
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