滇西南早古生代增生杂岩的确定:对原特提斯洋构造演化的启示

IF 4.6 3区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY China Geology Pub Date : 2023-04-01 DOI:10.31035/cg2023019
Guo-chuan Yan , Bao-di Wang , Han Liu , Juan He , Zhi-min Peng
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引用次数: 0

摘要

吸积复合体研究提供了关于大洋板块俯冲和地球动力学过程的重要知识,代表了古代海盆的灭绝位置。然而,在滇西南澜沧群的时代、物质来源、构造属性等方面,仍存在许多争议。本文对澜沧群9个变质岩进行了LA-ICP-MS碎屑锆石U-Pb定年。三个碎屑锆石的U–Pb年龄主要在590–550 Ma、980–910 Ma和1150–1490 Ma之间,其中最年轻的碎屑锆石的峰值年龄约为560 Ma。六个碎屑锆石U–Pb的年龄主要在440–460 Ma和980–910 Ma之间,最年轻的碎屑锆石的峰值时间约为445 Ma,基性火山岩、中酸性侵入岩和高压变质岩以构造透镜体的形式在片岩中出露,呈现出典型的“块体+基质”混杂岩结构特征。综合区域变形和年代、物质组成特征以及前人资料,认为澜沧群可能是长宁-孟连原特提斯洋向东俯冲形成的早古生代构造增生杂岩,为特提斯演化提供了重要的制约条件。©2023中国地质编辑部。
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Determination of the early Paleozoic accretionary complex in Southwestern Yunnan, China: Implications for the tectonic evolution of the Proto-Tethys Ocean

Accretionary complex study provides important knowledge on the subduction and the geodynamic processes of the oceanic plate, which represents the ancient ocean basin extinction location. Nevertheless, there exist many disputes on the age, material source, and tectonic attribute of the Lancang Group, located in Southwest Yunnan, China. In this paper, the LA-ICP-MS detrital zircon U–Pb chronology of nine metamorphic rocks in the Lancang Group was carried out. The U–Pb ages of the three detrital zircons mainly range from 590–550 Ma, 980–910 Ma, and 1150–1490 Ma, with the youngest detrital zircons having a peak age of about 560 Ma. The U–Pb ages of the six detrital zircons mainly range from 440–460 Ma and 980–910 Ma, and the youngest detrital zircon has a peak age of about 445 Ma. In the Lancang Group, metamorphic acidic volcanic rocks, basic volcanic rocks, intermediate-acid intrusive rocks, and high-pressure metamorphic rocks are exposed in the form of tectonic lens in schist, rendering typical melange structural characteristics of “block + matrix”. Considering regional deformation and chronology, material composition characteristics, and the previous data, this study thinks the Lancang Group may be an early Paleozoic tectonic accretionary complex formed by the eastward subduction of the Changning-Menglian Proto-Tethys Ocean, which provides an important constraint for the Tethys evolution.

©2023 China Geology Editorial Office.

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来源期刊
China Geology
China Geology GEOLOGY-
CiteScore
7.80
自引率
11.10%
发文量
275
审稿时长
16 weeks
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