Geochemistry, zircon U–Pb dating and Hf isotopies composition of Paleozoic granitoids in Jinchuan, NW China: Constraints on their petrogenesis, source characteristics and tectonic implication

•New geochronological and geochemical data for two Paleozoic granitoids.•The 433.4Ma granite formed by partial melting of the Longshoushan group.•The 361.7Ma granite originated from heterogeneous source materials.•Granitoid magmatism corresponded to different stages of tectonic evolution. Granitoids...

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Published inJournal of Asian earth sciences Vol. 121; pp. 20 - 33
Main Authors Zeng, Renyu, Lai, Jianqing, Mao, Xiancheng, Li, Bin, Ju, Peijiao, Tao, Shilong
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.05.2016
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Abstract •New geochronological and geochemical data for two Paleozoic granitoids.•The 433.4Ma granite formed by partial melting of the Longshoushan group.•The 361.7Ma granite originated from heterogeneous source materials.•Granitoid magmatism corresponded to different stages of tectonic evolution. Granitoids are widely distributed in Jinchuan at the southwestern margin of the North China plate, which is also an important area of mineral deposits. The research subject of this article are two Paleozoic granitoids, a cataclastic syenogranite and a granodiorite porphyry. This study presents whole rock geochemistry and zircon U–Pb–Hf isotope data for the two granitoids to determine their petrogenesis, source characteristics and tectonic significance. The cataclastic syenogranite is characterized by metaluminous composition with high potassium, and LaN/YbN from 39 to 48. The composition with strong negative Eu anomalies and Zircon saturation temperatures (TZr) from 947 to 1072°C classify this intrusion as an A-type granite. The granodiorite porphyry is metaluminous with high sodium, sub-alkaline, LaN/YbN ratios from 27 to 32. These I-type intrusions have no Eu anomalies and TZr ranges from 818 to 845°C. Both the cataclastic syenogranite and granodiorite porphyry show enrichment of LREE and LILE and depletion of HREE and HFSE, except Hf and Zr. Using single zircon LA-ICP-MS U–Pb dating, the emplacement age of the cataclastic syenogranite and granodiorite porphyry are determined at 433.4±3.7Ma and 361.7±4.6Ma, respectively. Zircons from the cataclastic syenogranits have uniform negative εHf(t) values (−11±0.5 to −9±0.5), implying the involvement of an old Palaeoproterozoic crustal source in magma genesis. The zircons from the granodiorite porphyry have εHf(t) values that range from −8±1.0 to +10±0.6, suggesting heterogeneous source materials involving both juvenile and ancient crust reworked crustal components. Based on the geological significance of granites at the southwestern margin of the North China plate, the closure of the North Qilian Ocean occurred at ∼444Ma. Geochemical features suggest that the cataclastic syenogranite and granodiorite porphyry formed in an intraplate extensional and compressional setting, respectively. Hence after a period of extensional post-collisional intraplate evolution, strong compressive forces affected the area.
AbstractList •New geochronological and geochemical data for two Paleozoic granitoids.•The 433.4Ma granite formed by partial melting of the Longshoushan group.•The 361.7Ma granite originated from heterogeneous source materials.•Granitoid magmatism corresponded to different stages of tectonic evolution. Granitoids are widely distributed in Jinchuan at the southwestern margin of the North China plate, which is also an important area of mineral deposits. The research subject of this article are two Paleozoic granitoids, a cataclastic syenogranite and a granodiorite porphyry. This study presents whole rock geochemistry and zircon U–Pb–Hf isotope data for the two granitoids to determine their petrogenesis, source characteristics and tectonic significance. The cataclastic syenogranite is characterized by metaluminous composition with high potassium, and LaN/YbN from 39 to 48. The composition with strong negative Eu anomalies and Zircon saturation temperatures (TZr) from 947 to 1072°C classify this intrusion as an A-type granite. The granodiorite porphyry is metaluminous with high sodium, sub-alkaline, LaN/YbN ratios from 27 to 32. These I-type intrusions have no Eu anomalies and TZr ranges from 818 to 845°C. Both the cataclastic syenogranite and granodiorite porphyry show enrichment of LREE and LILE and depletion of HREE and HFSE, except Hf and Zr. Using single zircon LA-ICP-MS U–Pb dating, the emplacement age of the cataclastic syenogranite and granodiorite porphyry are determined at 433.4±3.7Ma and 361.7±4.6Ma, respectively. Zircons from the cataclastic syenogranits have uniform negative εHf(t) values (−11±0.5 to −9±0.5), implying the involvement of an old Palaeoproterozoic crustal source in magma genesis. The zircons from the granodiorite porphyry have εHf(t) values that range from −8±1.0 to +10±0.6, suggesting heterogeneous source materials involving both juvenile and ancient crust reworked crustal components. Based on the geological significance of granites at the southwestern margin of the North China plate, the closure of the North Qilian Ocean occurred at ∼444Ma. Geochemical features suggest that the cataclastic syenogranite and granodiorite porphyry formed in an intraplate extensional and compressional setting, respectively. Hence after a period of extensional post-collisional intraplate evolution, strong compressive forces affected the area.
Author Tao, Shilong
Ju, Peijiao
Mao, Xiancheng
Lai, Jianqing
Li, Bin
Zeng, Renyu
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Keywords Jinchuan
North Qilian Ocean
Geodynamic setting
Zircon U–Pb dating
Hf isotopies
Granitoid
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Snippet •New geochronological and geochemical data for two Paleozoic granitoids.•The 433.4Ma granite formed by partial melting of the Longshoushan group.•The 361.7Ma...
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SubjectTerms Geodynamic setting
Granitoid
Hf isotopies
Jinchuan
North Qilian Ocean
Zircon U–Pb dating
Title Geochemistry, zircon U–Pb dating and Hf isotopies composition of Paleozoic granitoids in Jinchuan, NW China: Constraints on their petrogenesis, source characteristics and tectonic implication
URI https://dx.doi.org/10.1016/j.jseaes.2016.02.009
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