Provenance analysis of the Late Paleozoic sedimentary rocks in the Xilinhot Terrane, NE China, and their tectonic implications

© 2016 Elsevier Ltd The Xilinhot Terrane is located in the eastern segment of the Central Asian Orogenic Belt in NE China, and is a key to a hotly debated issue on the Paleozoic tectonic evolution of this giant progenic belt. To constrain the tectonic evolution of the Xilinhot Terrane in the Late Pa...

Full description

Bibliographic Details
Main Authors: Han, J., Zhou, J., Wilde, Simon, Song, M.
Format: Journal Article
Published: Pergamon-Elsevier Science Ltd 2017
Online Access:http://hdl.handle.net/20.500.11937/54864
_version_ 1848759482330382336
author Han, J.
Zhou, J.
Wilde, Simon
Song, M.
author_facet Han, J.
Zhou, J.
Wilde, Simon
Song, M.
author_sort Han, J.
building Curtin Institutional Repository
collection Online Access
description © 2016 Elsevier Ltd The Xilinhot Terrane is located in the eastern segment of the Central Asian Orogenic Belt in NE China, and is a key to a hotly debated issue on the Paleozoic tectonic evolution of this giant progenic belt. To constrain the tectonic evolution of the Xilinhot Terrane in the Late Paleozoic, we undertook zircon U–Pb dating and geochemical analyses of the Zhesi and Benbatu formations in the Suolun and Xi Ujimqin areas in the Xilinhot Terrane. Samples of the Benbatu Formation yield detrital zircon U–P b ages ranging from 2659 Ma to 316 Ma, with four age populations at: 2659–1826 Ma, 1719–963 Ma, 590–402 Ma, and 396–316 Ma, whereas samples from the Zhesi Formation yield detrital zircon U–Pb ages ranging from 1967 Ma to 250 Ma, with four age populations at: 1967–1278 Ma, 971–693 Ma, 561–403 Ma, and 399–250 Ma. The age groups of both the Benbatu and Zhesi formations in the Xilinhot Terrane are similar to those in other parts of the Central Asian Orogenic Belt (CAOB). This evidence indicates that the Xilinhot Terrane is a microcontinent, and not an accretionary complex as previously thought. Furthermore, the youngest zircon grains in the Benbatu and Zhesi formations yield weighted mean 206 Pb/ 238 U ages of 322 ± 12 Ma (MSDW = 0.12, n = 4) and 257 ± 2.8 Ma (MSDW = 1.6, n = 8), respectively. Combined with fossil data, our new data suggest that the Benbatu and Zhesi formations in the Xilinhot Terrane were possibly deposited at ~322 Ma and ~257 Ma, respectively. Based on the provenance of the Carboniferous–Permian sandstones came from the blocks of NE China, we speculate that the Xilinhot Terrane is the western part of the Songliao block.
first_indexed 2025-11-14T10:00:35Z
format Journal Article
id curtin-20.500.11937-54864
institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T10:00:35Z
publishDate 2017
publisher Pergamon-Elsevier Science Ltd
recordtype eprints
repository_type Digital Repository
spelling curtin-20.500.11937-548642017-09-13T15:50:06Z Provenance analysis of the Late Paleozoic sedimentary rocks in the Xilinhot Terrane, NE China, and their tectonic implications Han, J. Zhou, J. Wilde, Simon Song, M. © 2016 Elsevier Ltd The Xilinhot Terrane is located in the eastern segment of the Central Asian Orogenic Belt in NE China, and is a key to a hotly debated issue on the Paleozoic tectonic evolution of this giant progenic belt. To constrain the tectonic evolution of the Xilinhot Terrane in the Late Paleozoic, we undertook zircon U–Pb dating and geochemical analyses of the Zhesi and Benbatu formations in the Suolun and Xi Ujimqin areas in the Xilinhot Terrane. Samples of the Benbatu Formation yield detrital zircon U–P b ages ranging from 2659 Ma to 316 Ma, with four age populations at: 2659–1826 Ma, 1719–963 Ma, 590–402 Ma, and 396–316 Ma, whereas samples from the Zhesi Formation yield detrital zircon U–Pb ages ranging from 1967 Ma to 250 Ma, with four age populations at: 1967–1278 Ma, 971–693 Ma, 561–403 Ma, and 399–250 Ma. The age groups of both the Benbatu and Zhesi formations in the Xilinhot Terrane are similar to those in other parts of the Central Asian Orogenic Belt (CAOB). This evidence indicates that the Xilinhot Terrane is a microcontinent, and not an accretionary complex as previously thought. Furthermore, the youngest zircon grains in the Benbatu and Zhesi formations yield weighted mean 206 Pb/ 238 U ages of 322 ± 12 Ma (MSDW = 0.12, n = 4) and 257 ± 2.8 Ma (MSDW = 1.6, n = 8), respectively. Combined with fossil data, our new data suggest that the Benbatu and Zhesi formations in the Xilinhot Terrane were possibly deposited at ~322 Ma and ~257 Ma, respectively. Based on the provenance of the Carboniferous–Permian sandstones came from the blocks of NE China, we speculate that the Xilinhot Terrane is the western part of the Songliao block. 2017 Journal Article http://hdl.handle.net/20.500.11937/54864 10.1016/j.jseaes.2016.12.003 Pergamon-Elsevier Science Ltd restricted
spellingShingle Han, J.
Zhou, J.
Wilde, Simon
Song, M.
Provenance analysis of the Late Paleozoic sedimentary rocks in the Xilinhot Terrane, NE China, and their tectonic implications
title Provenance analysis of the Late Paleozoic sedimentary rocks in the Xilinhot Terrane, NE China, and their tectonic implications
title_full Provenance analysis of the Late Paleozoic sedimentary rocks in the Xilinhot Terrane, NE China, and their tectonic implications
title_fullStr Provenance analysis of the Late Paleozoic sedimentary rocks in the Xilinhot Terrane, NE China, and their tectonic implications
title_full_unstemmed Provenance analysis of the Late Paleozoic sedimentary rocks in the Xilinhot Terrane, NE China, and their tectonic implications
title_short Provenance analysis of the Late Paleozoic sedimentary rocks in the Xilinhot Terrane, NE China, and their tectonic implications
title_sort provenance analysis of the late paleozoic sedimentary rocks in the xilinhot terrane, ne china, and their tectonic implications
url http://hdl.handle.net/20.500.11937/54864