首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Contrasting deep crustal compositions between the Altai and East Junggar orogens, SW Central Asian Orogenic Belt: Evidence from zircon Hf isotopic mapping
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Contrasting deep crustal compositions between the Altai and East Junggar orogens, SW Central Asian Orogenic Belt: Evidence from zircon Hf isotopic mapping

机译:对比Altai和East Junggar Orongens,SW中亚洲造山带之间的深层地壳组成:来自锆石的证据表明同位素映射

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There are long-standing uncertainties over the deep crustal composition and basement nature of the Chinese Altai and Junggar orogens of the southwestern Central Asian Orogenic Belt (CAOB). Zircon Lu-Hf isotopic tracer techniques applied to granitoids are helpful in distinguishing old from young deep crustal compositions. This study aims to characterize the basement nature (ancient & juvenile) of the Chinese Altai and East Junggar orogens using Hf isotopic mapping of granitoids (510-200 Ma). Zircon Hf isotopic data (18 new and 79 published samples) indicate that the study area can be divided into six Hf isotopic provinces on the basis of T-DM(C) ages: Province I,>1.4 Ga; II, 1.4-1.2 Ga;III, 1.2-1.0 Ga; IV, 1.0-0.8 Ga; V, 0.8-0.6 Ga; and VI, 0.6-04 Ga. Provinces I, II, and III occur mainly in the central (units 2 and 3) and southern (unit 4) Altai orogen, and have slightly positive zircon epsilon(Hf)(t) values of +0.5 to +9.1 with slightly old T-DM(C) ages of 1.53-0.81 Ga. Provinces IV and V are mainly distributed in the northern (unit 1) and southernmost (unit 5) Altai orogen, with zircon epsilon(Hf)(t) values of +7.5 to +11.1 and young T-DM(C) ages of 0.84-0.60 Ga. In contrast, Province VI (East Junggar orogen) has zircon epsilon(Hf)(t) values of +11.6 to +14.9, with much younger 11-04 ages of 0.59-0.35 Ga, except for the small Taheir area with a negative epsilon(Hf)(t) value of -2.5 and an older T-DM(C) age of 2.5 Ga. There is a sharp contrast between the deep crustal compositions of the Altai and Junggar orogens, which are ancient in central Altai and relatively juvenile in East Junggar. This confirms that significant Neoproterozoic-Phanerozoic continental crustal growth occurred in the southern Altai and Junggar orogens, with juvenile crust occupying similar to 78% of the study area, and that the CAOB is a site of significant Phanerozoic continental growth. The distribution of juvenile and ancient crust in the Altai and East Junggar orogens provides new evidence for the tectonic division of the two orogens by the El-ills fault zone, and explains the heterogeneity of crustal growth in the southwestern CAOB. (C) 2019 Elsevier B.V. All rights reserved.
机译:在中南部的中南部造山带(Caob)的中国阿尔泰和Junggar Origens的深层地壳成分和地下室性质,存在长期存在的不确定因素。锆LU-HF同位素示踪技术适用于花岗岩是有助于区分从年轻的地壳组合物中的老化。本研究旨在使用HF同位素映射来表征中国阿尔泰和East Junggar Origens的地下室性质(古代和少年)(510-200 mA)。锆石HF同位素数据(18个新增和79个已发表的样本)表明研究区域可以根据T-DM(C)年龄的基础分为六个HF同位素省份:省I,> 1.4 GA; II,1.4-1.2 GA; III,1.2-1.0 GA; IV,1.0-0.8 GA; v,0.8-0.6 ga;和VI,0.6-04 GA。省I,II和III主要发生在中央(单位2和3)和南方(第4单元)ALTAIT OREON,并具有略微阳性的锆石ε(HF)(T)值+ 0.5至+9.1,略微旧的T-DM(c)年龄为1.53-0.81 Ga。省IV和v主要分布在北部(1)和最南端(单位5)Altai Orogen,Zircon epsilon(HF)( t)+7.5至+11.1 +11.1的值和年轻的T-DM(c)岁为0.84-0.60 Ga。相比之下,省六(East Junggar Orogen)具有Zircon Epsilon(HF)(T)值+11.6至+14.9 ,在0.59-0.35张Ga的比较小11-04岁,除了带有负ε(hf)(t)值的小的taheir区域,较旧的t-dm(c)年龄为2.5 ga。有阿尔泰和Junggar Origens的深层地壳组合物之间的剧本鲜明对比,这是阿尔泰市中心古代的古代古代少年少年。这证实,南阿尔泰和准噶尔奥古根南部发生了显着的新核古代 - 北极巨蜥大陆地壳增长,占有少年地壳占据了78%的研究区,曹是曹莹,曹是巨大的低古代大陆大陆增长的网站。 Altai和East Junggar Origens的少年和古代地壳的分布为El-Ills断层区的两种Orocens构造的新证据提供了新的证据,并解释了西南曹氏棉花植物的异质性。 (c)2019年Elsevier B.V.保留所有权利。

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