Petrogenesis of an Early Permian bimodal intermediate‐felsic suite in the East Junggar in Central Asian Orogenic Belt and tectonic implications. (7th September 2020)
- Record Type:
- Journal Article
- Title:
- Petrogenesis of an Early Permian bimodal intermediate‐felsic suite in the East Junggar in Central Asian Orogenic Belt and tectonic implications. (7th September 2020)
- Main Title:
- Petrogenesis of an Early Permian bimodal intermediate‐felsic suite in the East Junggar in Central Asian Orogenic Belt and tectonic implications
- Authors:
- Bo, Hongze
Zhang, Zhaochong
Santosh, M.
Cheng, Zhiguo
Xie, Qiuhong
Kong, Weiliang
Liu, Bingxiang
Qin, Jingyi
Li, Botong - Abstract:
- Abstract : The bimodal intermediate‐felsic suites are rare, and their petrogenesis remains unsolved. Here, we report a bimodal intermediate‐felsic magmatic suite from East Junggar (NW China) composed of rhyolites, basaltic andesites, and andesites. The basaltic andesites and andesites are porphyritic with phenocrysts predominantly of plagioclase. The rhyolites are porphyritic with phenocrysts of alkali‐feldspar, quartz, and minor plagioclase. LA–ICP–MS zircon U–Pb dating yielded an age of 284 ± 2 Ma for rhyolites. The basaltic andesites and andesites show SiO2 ranging from 54.67 to 58.26 wt%, and exhibit moderate TiO2 (1.45–1.77 wt%), and K2 O (1.59–2.07 wt%) with low MgO (1.51–2.25 wt%). They display enrichment in HFSE and LILE together with negative Th, Nb, Ta, Ti anomalies, and exhibit low 87 Sr/ 86 Sr( t ) ratios (0.7040–0.7046), high positive ε Nd ( t ) values (+5.82 to +6.16) and young TDM ages (<0.6 Ga). The rhyolites exhibit highSiO2 (>75 wt%), negative Nb, Ta anomalies and significant depletion in Ba, Eu, Sr, Ti, and P. They also show high ε Nd ( t ) values (+5.51 to +7.08) and young TDM ages (<0.6 Ga), which are close to those of the intermediate rocks. Except for elements dominantly controlled by fractional crystallization, the other trace elements of the bimodal suite display similar patterns. Based on these characteristics, the MELTS simulation further suggests that the felsic rocks were possibly evolved from the intermediate magmas through fractionalAbstract : The bimodal intermediate‐felsic suites are rare, and their petrogenesis remains unsolved. Here, we report a bimodal intermediate‐felsic magmatic suite from East Junggar (NW China) composed of rhyolites, basaltic andesites, and andesites. The basaltic andesites and andesites are porphyritic with phenocrysts predominantly of plagioclase. The rhyolites are porphyritic with phenocrysts of alkali‐feldspar, quartz, and minor plagioclase. LA–ICP–MS zircon U–Pb dating yielded an age of 284 ± 2 Ma for rhyolites. The basaltic andesites and andesites show SiO2 ranging from 54.67 to 58.26 wt%, and exhibit moderate TiO2 (1.45–1.77 wt%), and K2 O (1.59–2.07 wt%) with low MgO (1.51–2.25 wt%). They display enrichment in HFSE and LILE together with negative Th, Nb, Ta, Ti anomalies, and exhibit low 87 Sr/ 86 Sr( t ) ratios (0.7040–0.7046), high positive ε Nd ( t ) values (+5.82 to +6.16) and young TDM ages (<0.6 Ga). The rhyolites exhibit highSiO2 (>75 wt%), negative Nb, Ta anomalies and significant depletion in Ba, Eu, Sr, Ti, and P. They also show high ε Nd ( t ) values (+5.51 to +7.08) and young TDM ages (<0.6 Ga), which are close to those of the intermediate rocks. Except for elements dominantly controlled by fractional crystallization, the other trace elements of the bimodal suite display similar patterns. Based on these characteristics, the MELTS simulation further suggests that the felsic rocks were possibly evolved from the intermediate magmas through fractional crystallization of feldspar, clinopyroxene, iron‐titanium oxide, and apatite. In contrast, the magmas parental to basaltic andesites were derived from the remelting of basaltic rocks underplated beneath the lower crust. The petrogenesis of this bimodal suite also provides new insights into Permian crustal reworking in the East Junggar, and suggest that the Junggar Ocean was closed prior to the Early Permian. Abstract : A bimodal intermediate‐felsic magmatic suite is recognized in the East Junggar. The andesites are derived from partial melting of underplated basaltic rocks, and the rhyolites are generated by crystal fractionation of intermediate magmas, which provides new evidence for the crustal reworking process in East Junggar during Early Permian. … (more)
- Is Part Of:
- Geological journal. Volume 56:Number 1(2021)
- Journal:
- Geological journal
- Issue:
- Volume 56:Number 1(2021)
- Issue Display:
- Volume 56, Issue 1 (2021)
- Year:
- 2021
- Volume:
- 56
- Issue:
- 1
- Issue Sort Value:
- 2021-0056-0001-0000
- Page Start:
- 547
- Page End:
- 571
- Publication Date:
- 2020-09-07
- Subjects:
- bimodal suite -- CAOB -- crustal reworking -- East Junggar -- Junggar Ocean
Geology -- Periodicals
551 - Journal URLs:
- http://onlinelibrary.wiley.com/ ↗
- DOI:
- 10.1002/gj.3983 ↗
- Languages:
- English
- ISSNs:
- 0072-1050
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 4133.600000
British Library DSC - BLDSS-3PM
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- 15394.xml