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Initiation Timing of the Jiamusi–Yitong Fault Zone in NE China
作者姓名:WEN Quanbo  LIU Yongjiang  LIANG Chenyue  Li Weimin  SHAO Yilun  ZHANG Qian  ZHANG Duo  LIU Xinyue
作者单位:1?College?of?Earth?Sciences,?Jilin?University,?Changchun?130061,?China,2?Key?Lab?of?Submarine?Geosciences?and?Prospecting?Techniques,?MOE,?Institute?for?Advanced?Ocean?Study,?College?of?Marine?Geosciences,?Ocean?University?of?China,?Qingdao?266100,?China 3?Laboratory?for?Marine?Mineral?Resources,?Qingdao?National?Laboratory?for?Marine?Science?and?Technology,?Qingdao 266237,?China,1?College?of?Earth?Sciences,?Jilin?University,?Changchun?130061,?China;4?Key?laboratory?of?Mineral?Resources?Evaluation?in?Northeast?Asia,?Ministry?of?Land?and?Resources, Changchun 130061,1?College?of?Earth?Sciences,?Jilin?University,?Changchun?130061,?China;4?Key?laboratory?of?Mineral?Resources?Evaluation?in?Northeast?Asia,?Ministry?of?Land?and?Resources, Changchun 130061,5 Department of Geology, University of Otago, Dunedin 9016, New Zealand,1?College?of?Earth?Sciences,?Jilin?University,?Changchun?130061,?China,1?College?of?Earth?Sciences,?Jilin?University,?Changchun?130061,?China and 1?College?of?Earth?Sciences,?Jilin?University,?Changchun?130061,?China
基金项目:We thank Dr. Y.J. Hao from Key laboratory of Mineral Resources Evaluation in Northeast Asia, Ministry of Land and Resources, for his help on analysis of the zircon LA–ICP–MS U–Pb ages. This study was funded by the National Key R&D Program of China (Grant No. 2017YFC0601300–01), 973 Program (Grant 2013CB429802), NSFC (Grant 41102140,41303175).
摘    要:The NE–striking Jiamusi–Yitong fault zone(JYFZ) is the most important branch in the northern segment of the Tancheng–Lujiang fault zone. The precise shearing time of its large–scale sinistral strike–slip has yet to determined and must be constrained. Detailed field investigations and comprehensive analyses show that strike–slip faults or ductile shear belts exist as origination structures along the western region of Yitong Graben. The strike of the shear belts trend to the NE–SW with steep mylonitic foliation. The zircon U–Pb dating result for the granite was 264.1±1 Ma in the ductile shear belt of the JYFZ. The microstructural observation(rotated feldspar porphyroclasts, S–C fabrics, and quartz c–axis fabrics, etc.) demonstrated the sinistral shearing of the ductile shear zones. Moreover, the recrystallized quartz types show a transitional stage of the subgrain rotation toward the recrystallization of the grain boundary migration(SR–GBM). Therefore, we suggest that the metamorphic grade of the shear zone in the ductile shear zones should have reached high greenschist facies conditions, and the deformation temperatures should approximately 450–500°C, which is obviously higher than the blocking temperature of muscovite(300–400°C). Hence, the ~(40)Ar/~(39)Ar isochron age of muscovite from ductile shear zones should be a cooling age(162.7±1 Ma). We infer that the sinistral strike–slipping event at the JYFZ occurred in the late Jurassic period, and it was further inferred from the ages of the main geological events in this region that the second sinistral strike–slip age of the Tancheng–Lujiang fault zone occurred during the period of tectonic movements in the Circum–Pacific tectonic domain. This discovery also indicates the age of the Tancheng–Lujiang fault zone that stretches to northeastern China. The initiation of the JYFZ in the late Jurassic is related to the speed and direction of oblique subduction of the west Pacific Plate under the Eurasian continent and is responsible for collision during the Jurassic period.

关 键 词:Origin  structures    sinistral  ductile  shear  belt    microstructures    40Ar  /39Ar  dating    Jiamusi–Yitong  Fault  Zone
收稿时间:2019/5/15 0:00:00
修稿时间:2019/8/24 0:00:00

Initiation Timing of the Jiamusi–Yitong Fault Zone in NE China
Authors:WEN Quanbo  LIU Yongjiang  LIANG Chenyue  Li Weimin  SHAO Yilun  ZHANG Qian  ZHANG Duo and LIU Xinyue
Abstract:The NE–striking Jiamusi–Yitong fault zone (JYFZ) is the most important branch in the northern segment of the Tancheng–Lujiang fault zone. The precise shearing time of its large–scale sinistral strike–slip has yet to determined and must be constrained. Detailed field investigations and comprehensive analyses show that strike–slip faults or ductile shear belts exist as origination structures along the western region of Yitong Graben. The strike of the shear belts trend to the NE–SW with steep mylonitic foliation. The zircon U–Pb dating result for the granite was 264.1±1 Ma in the ductile shear belt of the JYFZ. The microstructural observation (rotated feldspar porphyroclasts, S–C fabrics, and quartz c–axis fabrics, etc.) demonstrated the sinistral shearing of the ductile shear zones. Moreover, the recrystallized quartz types show a transitional stage of the subgrain rotation toward the recrystallization of the grain boundary migration (SR–GBM). Therefore, we suggest that the metamorphic grade of the shear zone in the ductile shear zones should have reached high greenschist facies conditions, and the deformation temperatures should approximately 450–500°C, which is obviously higher than the blocking temperature of muscovite (300–400°C). Hence, the 40Ar /39Ar isochron age of muscovite from ductile shear zones should be a cooling age (162.7±1 Ma). We infer that the sinistral strike–slipping event at the JYFZ occurred in the late Jurassic period, and it was further inferred from the ages of the main geological events in this region that the second sinistral strike–slip age of the Tancheng–Lujiang fault zone occurred during the period of tectonic movements in the Circum–Pacific tectonic domain. This discovery also indicates the age of the Tancheng–Lujiang fault zone that stretches to northeastern China. The initiation of the JYFZ in the late Jurassic is related to the speed and direction of oblique subduction of the west Pacific Plate under the Eurasian continent and is responsible for collision during the Jurassic period.
Keywords:Origin structures  sinistral ductile shear belt  microstructures  40Ar /39Ar dating  Jiamusi–Yitong Fault Zone
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