Detrital zircon U–Pb ages for the lower Cambrian Mantou Formation in Liaoning, northeastern China: Implications for sediment provenance and the early Palaeozoic palaeogeographic position of the North China Craton with respect to East Gondwana

•Cambrian Mantou Formation of the NCC has two cluster ages with Gondwana affinity.•East Gondwana and Cambrian palaeo-highland of the NCC were major provenances.•The NCC was close to the northeastern Gondwana during the early Paleozoic. The early Palaeozoic palaeogeographic position of the North Chin...

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Published inGeosystems and geoenvironment Vol. 2; no. 4; p. 100215
Main Authors Liu, Jin, Dong, Yachao, Liu, Zhenghong, Liu, Junlai, Li, Wenqing, Li, Gang, Dong, Xiaojie, Gao, Yu, Zhang, Hongxiang
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.11.2023
Elsevier
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Online AccessGet full text
ISSN2772-8838
2772-8838
DOI10.1016/j.geogeo.2023.100215

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Abstract •Cambrian Mantou Formation of the NCC has two cluster ages with Gondwana affinity.•East Gondwana and Cambrian palaeo-highland of the NCC were major provenances.•The NCC was close to the northeastern Gondwana during the early Paleozoic. The early Palaeozoic palaeogeographic position of the North China Craton (NCC), including with respect to Gondwana, remains subject to debate. Detrital zircon chronology of lower Palaeozoic strata in the NCC should give insights into this scientific problem. Previous studies have reported zircon U–Pb ages for lower Palaeozoic clastic rocks from the western, southern, and eastern margins of the NCC. However, data remain limited for western Liaoning Province, northeastern China, in which representative Cambrian–Ordovician strata are well exposed. Data from this region should provide valuable constraints on the early Palaeozoic palaeo-location of the NCC, including with respect to Gondwana. Here we report laser-ablation–inductively coupled plasma–mass spectrometry detrital zircon ages from siltstone–mudstone of the Cambrian Mantou Formation in the Xingcheng area of Liaoning Province. Our new age determinations reveal two major source areas for the Mantou Formation: (1) the northeastern margin of East Gondwana, which yields zircons with ages of 1300–1000 and 600–510 Ma; and (2) the palaeo-highlands of the western NCC, which yields zircons of ca. 2500 and ca. 1800 Ma. Combining these new results with previously published data from lower Palaeozoic strata in the NCC, age spectra for the NCC exhibit dominant age peaks at ca. 2.5, ca. 1.9, ca. 1.0, and ca. 0.5 Ga, similar to those for Cambrian–Ordovician strata in northern India, western Australia, and Antarctica. Therefore, the NCC is interpreted to have been located close to East Gondwana during the early Palaeozoic. Integrating evidence from palaeobiogeography, palaeomagnetism, and detrital zircon geochronology, the NCC is inferred to have been situated near the boundary between northern India and western Australia during the early Cambrian–Middle Ordovician. [Display omitted]
AbstractList The early Palaeozoic palaeogeographic position of the North China Craton (NCC), including with respect to Gondwana, remains subject to debate. Detrital zircon chronology of lower Palaeozoic strata in the NCC should give insights into this scientific problem. Previous studies have reported zircon U–Pb ages for lower Palaeozoic clastic rocks from the western, southern, and eastern margins of the NCC. However, data remain limited for western Liaoning Province, northeastern China, in which representative Cambrian–Ordovician strata are well exposed. Data from this region should provide valuable constraints on the early Palaeozoic palaeo-location of the NCC, including with respect to Gondwana. Here we report laser-ablation–inductively coupled plasma–mass spectrometry detrital zircon ages from siltstone–mudstone of the Cambrian Mantou Formation in the Xingcheng area of Liaoning Province. Our new age determinations reveal two major source areas for the Mantou Formation: (1) the northeastern margin of East Gondwana, which yields zircons with ages of 1300–1000 and 600–510 Ma; and (2) the palaeo-highlands of the western NCC, which yields zircons of ca. 2500 and ca. 1800 Ma. Combining these new results with previously published data from lower Palaeozoic strata in the NCC, age spectra for the NCC exhibit dominant age peaks at ca. 2.5, ca. 1.9, ca. 1.0, and ca. 0.5 Ga, similar to those for Cambrian–Ordovician strata in northern India, western Australia, and Antarctica. Therefore, the NCC is interpreted to have been located close to East Gondwana during the early Palaeozoic. Integrating evidence from palaeobiogeography, palaeomagnetism, and detrital zircon geochronology, the NCC is inferred to have been situated near the boundary between northern India and western Australia during the early Cambrian–Middle Ordovician.
•Cambrian Mantou Formation of the NCC has two cluster ages with Gondwana affinity.•East Gondwana and Cambrian palaeo-highland of the NCC were major provenances.•The NCC was close to the northeastern Gondwana during the early Paleozoic. The early Palaeozoic palaeogeographic position of the North China Craton (NCC), including with respect to Gondwana, remains subject to debate. Detrital zircon chronology of lower Palaeozoic strata in the NCC should give insights into this scientific problem. Previous studies have reported zircon U–Pb ages for lower Palaeozoic clastic rocks from the western, southern, and eastern margins of the NCC. However, data remain limited for western Liaoning Province, northeastern China, in which representative Cambrian–Ordovician strata are well exposed. Data from this region should provide valuable constraints on the early Palaeozoic palaeo-location of the NCC, including with respect to Gondwana. Here we report laser-ablation–inductively coupled plasma–mass spectrometry detrital zircon ages from siltstone–mudstone of the Cambrian Mantou Formation in the Xingcheng area of Liaoning Province. Our new age determinations reveal two major source areas for the Mantou Formation: (1) the northeastern margin of East Gondwana, which yields zircons with ages of 1300–1000 and 600–510 Ma; and (2) the palaeo-highlands of the western NCC, which yields zircons of ca. 2500 and ca. 1800 Ma. Combining these new results with previously published data from lower Palaeozoic strata in the NCC, age spectra for the NCC exhibit dominant age peaks at ca. 2.5, ca. 1.9, ca. 1.0, and ca. 0.5 Ga, similar to those for Cambrian–Ordovician strata in northern India, western Australia, and Antarctica. Therefore, the NCC is interpreted to have been located close to East Gondwana during the early Palaeozoic. Integrating evidence from palaeobiogeography, palaeomagnetism, and detrital zircon geochronology, the NCC is inferred to have been situated near the boundary between northern India and western Australia during the early Cambrian–Middle Ordovician. [Display omitted]
ArticleNumber 100215
Author Dong, Yachao
Gao, Yu
Li, Gang
Dong, Xiaojie
Liu, Zhenghong
Li, Wenqing
Liu, Jin
Liu, Junlai
Zhang, Hongxiang
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  fullname: Liu, Zhenghong
  organization: College of Earth Sciences, Jilin University, Changchun 130061, China
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– sequence: 9
  givenname: Hongxiang
  surname: Zhang
  fullname: Zhang, Hongxiang
  organization: College of Earth Sciences, Jilin University, Changchun 130061, China
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Keywords East Gondwana
Cambrian
North China Craton
Mantou Formation
Detrital zircon chronology
Language English
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Snippet •Cambrian Mantou Formation of the NCC has two cluster ages with Gondwana affinity.•East Gondwana and Cambrian palaeo-highland of the NCC were major...
The early Palaeozoic palaeogeographic position of the North China Craton (NCC), including with respect to Gondwana, remains subject to debate. Detrital zircon...
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StartPage 100215
SubjectTerms Cambrian
Detrital zircon chronology
East Gondwana
Mantou Formation
North China Craton
Title Detrital zircon U–Pb ages for the lower Cambrian Mantou Formation in Liaoning, northeastern China: Implications for sediment provenance and the early Palaeozoic palaeogeographic position of the North China Craton with respect to East Gondwana
URI https://dx.doi.org/10.1016/j.geogeo.2023.100215
https://doaj.org/article/81b8aae7381d4195a3ec46fffd3b562b
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