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Discovery of hydrocarbon source rocks in the Permian Xinxing Formation in the southern Zhangguangcai range,Northeast China 被引量:1
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作者 Mi-shan Zhong Jin Liu +8 位作者 Hai-peng Wang zi-jie wu Shuai Liang Fu-rong Zhai Qi Wang Yi-long Wang Cheng-bin Zhang Ran Wang Fen-li Wang 《China Geology》 2019年第4期560-562,共3页
1.Objective The study area is located at the southern Zhangguangcai range,which is thought to be the eastern part of the Central Asian Orogenic Belt(CAOB).The study area is closed to the eastern margin of the Songliao... 1.Objective The study area is located at the southern Zhangguangcai range,which is thought to be the eastern part of the Central Asian Orogenic Belt(CAOB).The study area is closed to the eastern margin of the Songliao basin(Fig.1a).No petroleum exploration or related research work have been conducted in this area by far.Based on our most recent geological mapping,numerous hydrocarbon source rocks were firstly discovered within the Xinxing Formation,which is widely exposed from the central Jilin Province to the southeastern Heilongjiang province.The Xinxing Formation covers an area of nearly 1000 km2 with a total thickness of more than 1481 m(Regional Geology of Heilongjiang Province,1993).Therefore,the Xinxing Formation has huge potential to form oil and gas resources.This new discovery of hydrocarbon source rocks within the Xinxing Formation could provide critical clues for oil and gas resources’investigation in Northeast China,also may has important economic significance. 展开更多
关键词 NORTHEAST source southeastern
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New zircon U–Pb ages of the Xinghuadukou Group, Xing’an block and its geological implications
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作者 zi-jie wu Long-wei Qiu +2 位作者 Hai-peng Wang Mi-shan Zhong Pei-long Cui 《China Geology》 2019年第3期393-395,共3页
The Xing’an block (XB) is located in the eastern part of the Xingmeng orogenic belt, bounded by Erguna block (EB) to northwest and the Songnen block (SB) to the southeast (Fig. 1a).
关键词 Xing ZIRCON AGES ITS PB
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Hierarchical porous hard carbon enables integral solid electrolyte interphase as robust anode for sodium-ion batteries 被引量:15
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作者 Xu-Kun Wang Juan Shi +5 位作者 Li-Wei Mi Yun-Pu Zhai Ji-Yu Zhang Xiang-Ming Feng zi-jie wu Wei-Hua Chen 《Rare Metals》 SCIE EI CAS CSCD 2020年第9期1053-1062,共10页
Hard carbon is the most promising anode for sodium-ion battery applications due to the wide availability and low work voltage.However,it often delivers worse electrochemical performance in ester-based electrolytes.Her... Hard carbon is the most promising anode for sodium-ion battery applications due to the wide availability and low work voltage.However,it often delivers worse electrochemical performance in ester-based electrolytes.Herein,a hierarchically porous loose sponge-like hard carbon with a highly disordered phase,prepared from the biomass of platanus bark,exhibits superior rate performance with a capacity of 165 mAh·g-1 at a high current of1 A·g-1,and high retention of 71.5%after 2000 cycles in an ester-based electrolyte.The effect of the hierarchically porous loose sponge-like structure on the formation dynamics of solid electrolyte interphase(SEI),and related properties,was studied via cyclic voltammetry(CV),galvanostatic intermittent titration technique(GITT),X-ray photoelectron spectroscope(XPS),Fourier transform infrared spectroscopy(FTIR)and electrochemical impedance spectroscopy(EIS)analysis.These results reveal that the hierarchically porous structure can construct continued connecting channels and accelerate the electrolyte transport,which is beneficial to the reaction kinetics of SEI.Moreover,the mesoporous structure is conducive to good contact between electrolyte and materials and shortens the Na+diffusion path,which in turn facilitates the charge transfer kinetics in the material. 展开更多
关键词 Sodium-ion battery Hard carbon Hierarchically porous structure SEI Ester-based electrolyte
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