Major and trace-element geochemistry of Late Cretaceous clastic rocks in the Jitai Basin, southeast China

Abstract Major, trace and rare earth element (REE) geochemistry of the late Cretaceous lower Zhoutian Formation from the Jitai Basin of Southeast China were measured by inductively coupled plasma mass spectrometry (ICP-MS) analysis to infer the provenance of the sediments and to reconstruct the pala...

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Main Authors: Kai Yan, Chun-lian Wang, Steffen Mischke, Jiu-yi Wang, Li-jian Shen, Xiao-can Yu, Ling-yang Meng
Format: Article
Language:English
Published: Nature Publishing Group 2021-07-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-021-93125-8
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spelling doaj-857c22033b304024a3c98ef07cfadefd2021-07-11T11:26:21ZengNature Publishing GroupScientific Reports2045-23222021-07-0111111510.1038/s41598-021-93125-8Major and trace-element geochemistry of Late Cretaceous clastic rocks in the Jitai Basin, southeast ChinaKai Yan0Chun-lian Wang1Steffen Mischke2Jiu-yi Wang3Li-jian Shen4Xiao-can Yu5Ling-yang Meng6MNR Key Laboratory of Metallogeny and Mineral Assessment, Institute of Mineral Resources, Chinese Academy of Geological SciencesMNR Key Laboratory of Metallogeny and Mineral Assessment, Institute of Mineral Resources, Chinese Academy of Geological SciencesInstitute of Earth Sciences, University of IcelandMNR Key Laboratory of Metallogeny and Mineral Assessment, Institute of Mineral Resources, Chinese Academy of Geological SciencesMNR Key Laboratory of Metallogeny and Mineral Assessment, Institute of Mineral Resources, Chinese Academy of Geological SciencesMNR Key Laboratory of Metallogeny and Mineral Assessment, Institute of Mineral Resources, Chinese Academy of Geological Sciences902 Geological Brigade of Jiangxi Bureau of Exploration and Development for Geology and Mineral ResourcesAbstract Major, trace and rare earth element (REE) geochemistry of the late Cretaceous lower Zhoutian Formation from the Jitai Basin of Southeast China were measured by inductively coupled plasma mass spectrometry (ICP-MS) analysis to infer the provenance of the sediments and to reconstruct the palaeoenvironment and palaeoclimate. The wide range of Sr/Cu ratios point to a fluctuating palaeoclimate, and the negative correlation between the FeO/MnO and Al2O3/MgO ratios and the Sr/Cu ratio indicates that the late Cretaceous climate during the lower Zhoutian Formation in the Jitai Basin can be divided into two parts. The lower part experienced two cooling periods, whilst the upper part was dominated by warm-humid climate. Mostly corresponding trends of the B/Ga, Sr/Ba and Sr/Cu ratios show that the salinity changed consistently with the late Cretaceous climate during the lower Zhoutian Formation in the Jitai Basin. During the lower part, the salinity changed from salt water to fresh/brackish water. In the upper part, water was mainly fresh/brackish, and there were many changes from fresh/brackish water to salt water. The relatively stable Ni/Co, V/Cr, V/(V + Ni) and Ce/Ce* data indicate a long period of oxic conditions. The La-Th-Sc, Th-Sc-Zr/10 and La/Th-Hf data of the silt- and sandstones of the lower Zhoutian Formation show that its provenance was mainly a mixture of felsic upper crust sediments and older sedimentary rocks.https://doi.org/10.1038/s41598-021-93125-8
collection DOAJ
language English
format Article
sources DOAJ
author Kai Yan
Chun-lian Wang
Steffen Mischke
Jiu-yi Wang
Li-jian Shen
Xiao-can Yu
Ling-yang Meng
spellingShingle Kai Yan
Chun-lian Wang
Steffen Mischke
Jiu-yi Wang
Li-jian Shen
Xiao-can Yu
Ling-yang Meng
Major and trace-element geochemistry of Late Cretaceous clastic rocks in the Jitai Basin, southeast China
Scientific Reports
author_facet Kai Yan
Chun-lian Wang
Steffen Mischke
Jiu-yi Wang
Li-jian Shen
Xiao-can Yu
Ling-yang Meng
author_sort Kai Yan
title Major and trace-element geochemistry of Late Cretaceous clastic rocks in the Jitai Basin, southeast China
title_short Major and trace-element geochemistry of Late Cretaceous clastic rocks in the Jitai Basin, southeast China
title_full Major and trace-element geochemistry of Late Cretaceous clastic rocks in the Jitai Basin, southeast China
title_fullStr Major and trace-element geochemistry of Late Cretaceous clastic rocks in the Jitai Basin, southeast China
title_full_unstemmed Major and trace-element geochemistry of Late Cretaceous clastic rocks in the Jitai Basin, southeast China
title_sort major and trace-element geochemistry of late cretaceous clastic rocks in the jitai basin, southeast china
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2021-07-01
description Abstract Major, trace and rare earth element (REE) geochemistry of the late Cretaceous lower Zhoutian Formation from the Jitai Basin of Southeast China were measured by inductively coupled plasma mass spectrometry (ICP-MS) analysis to infer the provenance of the sediments and to reconstruct the palaeoenvironment and palaeoclimate. The wide range of Sr/Cu ratios point to a fluctuating palaeoclimate, and the negative correlation between the FeO/MnO and Al2O3/MgO ratios and the Sr/Cu ratio indicates that the late Cretaceous climate during the lower Zhoutian Formation in the Jitai Basin can be divided into two parts. The lower part experienced two cooling periods, whilst the upper part was dominated by warm-humid climate. Mostly corresponding trends of the B/Ga, Sr/Ba and Sr/Cu ratios show that the salinity changed consistently with the late Cretaceous climate during the lower Zhoutian Formation in the Jitai Basin. During the lower part, the salinity changed from salt water to fresh/brackish water. In the upper part, water was mainly fresh/brackish, and there were many changes from fresh/brackish water to salt water. The relatively stable Ni/Co, V/Cr, V/(V + Ni) and Ce/Ce* data indicate a long period of oxic conditions. The La-Th-Sc, Th-Sc-Zr/10 and La/Th-Hf data of the silt- and sandstones of the lower Zhoutian Formation show that its provenance was mainly a mixture of felsic upper crust sediments and older sedimentary rocks.
url https://doi.org/10.1038/s41598-021-93125-8
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