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A Different Opinion on the Geological Age of the Longzhaogou and Jixi Groups of Eastern Heilongjiang, China 被引量:7
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作者 Sha Jingeng Nanjing Institute of Geology and Palaeontology, Academia Sinica, Nanjing, Jiangsu 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 1992年第2期209-218,223,共11页
The age of the Longzhaogou and Jixi Groups of coal measures in eastern Heilongjiang were previouslyconsidered to be Jurassic or mainly Jurassic. But there occur Middle Barremian-Early Albian Aucellina(bivalvia) fossil... The age of the Longzhaogou and Jixi Groups of coal measures in eastern Heilongjiang were previouslyconsidered to be Jurassic or mainly Jurassic. But there occur Middle Barremian-Early Albian Aucellina(bivalvia) fossils in the Upper Yunshan Formation of the Longzhaogou Group and the Lower Chengzihe For-mation of the Jixi Group, and the Qihulin Formation of the Longzhaogou Group yields Early Cretaceousbivalve and ammonite fossils. Consequently, the geological ages of the two groups are mainly, or even all, Ear-ly Cretaceous. 展开更多
关键词 A Different Opinion on the geological Age of the Longzhaogou and Jixi Groups of Eastern Heilongjiang China
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Geochronology and Petrogenesis of Mesozoic Granitoids in the Geological Corridor of Western Liaoning Province, China 被引量:1
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作者 XU Xuechun ZHENG Changqing CUI Fanghua 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2017年第S1期46-48,共3页
The geological corridor of Western Liaoning province is an area of length 100 km and width 20 km and located in the eastern segment of northern margin of North China Craton(NCC),with the wide distribution of Mesozoi... The geological corridor of Western Liaoning province is an area of length 100 km and width 20 km and located in the eastern segment of northern margin of North China Craton(NCC),with the wide distribution of Mesozoic granitic magmatism.It is the ideal area to study the granitic petrogenesis,the nature of magma source and the tectonic attribute.In this paper,we do the systematic researchesaboutthepetrology,geochronology,geochemistry and Zircon Hf isotopic of granitic rocks.Based on the mentioned above,we have built the geochronological framework and have discussed the petrogenesis,the nature of magma source and the tectonic setting of granitic rocks.And according to the information about the crust-mantle interaction recorded in granitic rocks and the regional data,we also discuss the relationship between Mesozoic granitic magma activities and lithosphere thinning,destruction of Craton mechanism in the eastern segment of northern margin of NCC.The Mesozoic granitic magma activities in The geological corridor of Western Liaoning province are divided into four stages(Fig.1):Late Triassic(230 Ma;28 Ma),early-middle Jurassic(194 Ma;69 Ma),Late Jurassic(161 Ma;55 Ma)and Early Cretaceous(139Ma;21 Ma).The late Triassic granitic rocks are composed of adamellite,monzogranite and diorite.The samples have high Sr,Cr,Ni content and low Yb,Y content,and the sample have high Mg#and high ratio of Sr/Y and La/Yb.The characteristics of inhomogenous negative value ofεHf(t)(-6.40;0.19)in magmatic zircons and ancient crustal TDM2 values of 1.25 Ga;.67 Ga(Fig.2),indicate that the Triassic granitic rocks were formed in a post-collisional extensional tectonic setting aftersubduction of Paleo-Asian Ocean and the subduction of Yangtze Craton,and they are the product of partial melting of ancient lower crust under the condition of the mantle-derived magma underplating,and geochemical features of the high Sr and low Y are inherited from the source of magma which is also enriched in Sr and depleted in Y.The geochemical features and assemblages of rocks formed during Jurassic-early Cretaceous are similar.The early-middle Jurassic granitic rocks are composed of syenogranite,monzogranite,quartz monzonite,granitic porphyry,granodiorite and quartz diorite.The late Jurassic granitic rocks are composed of monzogranite,granitic porphyry,and quartz diorite.The early Cretaceous granitic rocks are composed of monzogranite,quartz syenite,granitic porphyry,and quartz monzodiorite.The samples are characterized by the high SiO;content and total alkalis and are belonged to the high-K calc-alkaline series.And the characteristics of quasi-aluminous to weakly peraluminous(A/CNK<1.1,A/NK>1.0)and the negative relationship between P;O;and SiO;are similar to the characteristics of I-type granite.The samples are enriched in LREE contents and K,Pb and depleted in Nb,Ta,Ti and P.The characteristics of assemblage and geochemical features indicate the Jurassic-Cretaceous granitic rocks formed in the setting of active continental margin related to the subduction.The magmatic zircons of early-middle Jurassic granitic rocks have negativeεHf(t)(-16.60;4.15)and ancient crustal TDM2 values of 1.49 Ga;.28 Ga which indicates the primary magma is from the partial melting of ancient middle-lower crust(Fig.2).These rocks formed in the setting of active continental margin of subduction of Paleo-Pacific plate.The magma source of granitic rocks is from partial melting of the ancient lower-middle curst caused by the underplating of mantle magma,which formed in the condition of fluid derived from the dehydration of subducted slab affected on the lithosphere mantle.The magmatic zircons of late Jurassic granitic rocks have negativeεHf(t)(-26.24;18.56)and ancient crustal TDM2 values of(2.39 Ga;.87 Ga)which indicates the primary magma is from the partial melting of ancient upper-middle crust(Fig.2).And these rocks may be formed in the setting of active continental margin of intense subduction of Paleo-Pacific plate.In the intense subduction,the mantle magma is formed in the interaction of fluid derived from the dehydration of subducted slab with the lithosphere mantle,then further underplated the ancient middle-upper crust and make the ancient middle-upper curst partial melting.In this setting,the late Jurassic rocks are distributed widely in eastern North China.The samples in early Cretaceous have a wide range of values of Hf isotope:-24.92;20.88(139 Ma),-4.72;6.22(130 Ma),-17.30;11.56(125 Ma;21 Ma),and the characteristics of Hf isotope indicate the source of earlyCretaceousmagma(middle-uppercrust,middle-lower crust or juvenile crust)is very complicated(Fig.2).The early Cretaceous granitic rocks were formed in the lithosphere extensional environment when the Paleo-Pacific plate subducted/roll-backed quickly in the direction of NNW with high angle.The regional extension made the asthenosphere upwell and be unstable,and the magma of mantle was formed.Then wide mantle-crust interactions make the crust partial melt,as a result,the source of early Cretaceous igneous rocks which are distributed widely in eastern North China Craton.The participation of depleted mantle components in the process of Late Triassic rock formation in western Liaoning area indicate the time of the lithosphere thinning in the eastern segment of northern margin of NCC begin from the late Triassic(;30 Ma).The double subduction of Paleo-Asian Ocean and Yangtze Craton in the early period is the reason of the lithosphere thinning.After the double subduction,the mantle-derived magma upwell and underplate the lithosphere mantle and lower crust in a post-collisional extensional tectonic setting.As a result,the lithosphere began to thin but the Craton destruction was not obviously in this period.The participation of depleted mantle components makes the continental crust slightly reforms and grows.The eastern segment of northern margin of NCC was in the setting of active continental margin in Jurassic,and the continuing dehydration and metasomatism of subduction slab changed the physical and chemical properties of the lithosphere mantle.The initial weak subduction in early-middle Jurassic makes the lithosphere become thin but no obvious destruction of Craton.And in this period,the continental crust reformed and grew slightly.As the subduction became stronger during late Jurassic,the thickness of lithosphere in eastern segment of northern margin of NCC become thinner and the destruction of Craton occurred locally and the continental crust reformed and grew to some extent.In early Cretaceous,the change of direction and angle of subduction of Paleo-Pacific led to the regional extension,which is the reason for massive mantle material upwelling and intense crust-mantle interaction.And the lithosphere thinning and destruction of Craton reached the peak.As a result,the effects of reconstruction and hyperplasia of continental crust are obviously.In our opinions,the underplating mechanism of mantle-derived magma occurred mainly in the initial stage(early Mesozoic)oflithosphere thinning,and the delamination of lithosphere mantle or lower crust coexisted while erosion action of mantle material occurred in the stage(late Mesozoic)of strong lithosphere thinning and destruction of Craton. 展开更多
关键词 Geochronology and Petrogenesis of Mesozoic Granitoids in the geological Corridor of Western Liaoning Province rock TDM As Pb China
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《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2011年第1期272-272,共1页
Publisher Acta Geologica Sinica-English Edition is published by Blackwell Publishing Asia Pty Ltd 155 Cremorne Street Richmond Vic.3121,Australia Tel:+61(0)3 9274 3100 Fax:+61(0)3 9274 3101
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The simulation of the geological transformation of betulin by mineral clays
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《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 1999年第S1期283-283,共1页
关键词 the simulation of the geological transformation of betulin by mineral clays
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《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2012年第4期I0002-I0002,共1页
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《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2014年第1期I0012-I0012,共1页
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《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2014年第5期1622-1622,共1页
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《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2014年第6期1936-1936,共1页
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《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2012年第2期I0002-I0002,共1页
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《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2013年第2期I0002-I0002,共1页
Acta Geologica Sinicawww.geoj ournals.cn/dzxb/ch/index.aspx Acta Geoscientica Sinicawww.cagsbulletin.com/dqxbcn/ch/index.aspx Geological Reviewwww.geojournals.cn/georev/ch/index.aspx
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《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2013年第5期I0002-I0002,共1页
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《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2011年第4期970-970,共1页
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《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2011年第2期508-508,共1页
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《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2011年第3期734-734,共1页
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《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2013年第3期I0002-I0002,共1页
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《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2013年第4期I0002-I0002,共1页
Acta Geologica Sinicawww.geoj ournals.cn/dzxb/ch/index.aspx Acta Geoscientica Sinicawww.cagsbulletin.com/dqxbcn/ch/index.aspx Geological Reviewwww.geojournals.cn/georev/ch/index.aspx
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Associate Editors-in-Chief
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《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2016年第5期I0003-I0005,共3页
Shuhai XIAO Shuhai XIAO is a geobiologist interested in Proterozoic and Cambrian Earth history. He obtained Bachelor's and Master's degrees from Peking University and Ph.D. from Harvard University. He was an assist... Shuhai XIAO Shuhai XIAO is a geobiologist interested in Proterozoic and Cambrian Earth history. He obtained Bachelor's and Master's degrees from Peking University and Ph.D. from Harvard University. He was an assistant professor at Tulane University (2000-2003), and assistant professor (2003-2005) and associate professor (2005 2008) at Virginia Tech, and is currently Professor of Geobiology at Virginia Tech, USA. 展开更多
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Associate Editors-in-Chief
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《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2016年第1期I0003-I0005,共3页
Shuhai XIAO Shuhai XIAO is a geobiologist interested in Proterozoic and Cambrian Earth history. He obtained Bachelor's and Master's degrees from Peking University and Ph.D. from Harvard University. He was an assista... Shuhai XIAO Shuhai XIAO is a geobiologist interested in Proterozoic and Cambrian Earth history. He obtained Bachelor's and Master's degrees from Peking University and Ph.D. from Harvard University. He was an assistant professor at Tulane University (2000-2003), and assistant professor (2003-2005) and associate professor (2005-2008) at Virginia Tech, and is currently Professor of Geobiology at Virginia Tech, USA. 展开更多
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Associate Editors-in-Chief
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《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2015年第5期I0003-I0005,共3页
Shuhai XIAO Shuhai XIAO is a geobiologist interested in Proterozoic and Cambrian Earth history. He obtained Bachelor's and Master's degrees from Peking University and Ph.D. from Harvard University. He was an assist... Shuhai XIAO Shuhai XIAO is a geobiologist interested in Proterozoic and Cambrian Earth history. He obtained Bachelor's and Master's degrees from Peking University and Ph.D. from Harvard University. He was an assistant professor at Tulane University (2000 2003), and assistant professor (2003 2005) and associate professor (2005-2008) at Virginia Tech, and is currently Professor of Geobiology at Virginia Tech, USA. 展开更多
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Associate Editors-in-Chief
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《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2015年第A02期I0004-I0009,共6页
Shuhai XIAO Shuhai XIAO is a geobiologist interested in Proterozoic and Cambrian Earth history. He obtained Bachelor's and Master's degrees from Peking University and Ph.D. from Harvard University. He was an assist... Shuhai XIAO Shuhai XIAO is a geobiologist interested in Proterozoic and Cambrian Earth history. He obtained Bachelor's and Master's degrees from Peking University and Ph.D. from Harvard University. He was an assistant professor at Tulane University (2000-2003), and assistant professor (2003-2005) and associate professor (2005-2008) at Virginia Tech, and is currently Professor of Geobiology at Virginia Tech, USA. 展开更多
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