個人經歷
教育經歷
2009.9-2014.6中國地質大學(武漢) 地質學 理學博士學位 研究生(博士)畢業礦物學、岩石學、礦床學,導師:鄭建平 教授
2005.9-2009.6中國地質大學(武漢) 地質學 學士學位 大學本科地質學基地班
工作經歷
2019.1-2019.4
美國南阿拉巴馬大學 海洋科學系 訪問學者 與Dr. Xiangli Wang開展同位素合作研究。
2016.12-2017.12
澳大利亞麥考瑞大學 地球與行星科學系,CCFS中心 訪問學者(博士後) 已回國礦物學、岩石學、礦床學專業,合作導師:Suzanne Y. O’Reilly 教授和W.L. Griffin 教授
2014.7-2016.11中國地質大學(武漢) 資源學院 博士後 已出站地質資源與地質工程流動站,合作導師:李建威 教授
研究方向
深部地殼組成及演化
鹼性岩研究
科研項目
1. 中國及鄰區特提斯帶地質體橄欖岩屬性及其地幔動力學, 2016-01-01-2020-12-31, 在研
2. 華北西部陸塊狼山地區下地殼組成與演化,
國家自然科學基金, 2019-01-01-2022-12-31, 在研
3. 華北下地殼增生與再造過程研究, 2012-01-01, 結題
4. 太行山山西段中生代侵入岩時代、成因及其對華北克拉通破壞的回響, 國家自然科學基金, 2014-01-01, 結題
5. 華北北緣集寧–懷安下地殼組成及演化:來自包體及地體麻粒岩相岩石的制約, 國家自然科學基金, 2017-01-01, 在研
6. 隨州矽不飽和與矽飽和-過飽和正長岩的成因關係及其地質意義,
國家自然科學基金, 2016-01-01-2018-12-31, 結題
學術成果
著作
Lower crustal accretion and reworking beneath the North China Craton: evidences from granulite xenoliths. In: Zhai, M.G., (eds.), Main tectonic events and metallogeny of the North China Craton
論文
[1] Ma Q, Zheng JP*, Griffin WL, Zhang M, Tang HY, Su YP, Ping XQ. 2012. Triassic "adakitic" rocks in an extensional setting (North China): melts from the cratonic lower crust. Lithos, 149: 159-173.
[2] 鄭建平*,平先權,夏冰,余淳梅,2013,華北深部岩石圈存在弱的新元古代熱活動的同位素年代學信息:證據及意義. 岩石學報,29(7):2456-2464.
[3] Su YP*, Zheng JP*, Griffin WL, Zhao JH, OReilly SY, Tang HY, Ping XQ, Xiong Q. 2013. Petrogenesis and geochronology of Cretaceous adakitic, I- and A-type granitoids in the NE Yangtez block: Constraints on the eastern subsurface boundary between the North and South China blocks. Lithos, 175-176: 333-350.
[4] Ping XQ, Zheng JP*, Zhao JH, Tang HY, Griffin WL. 2013. Heterogeneous sources of the Triassic granitoid plutons in the southern Qinling orogen: An E-W tectonic division in central China. Tectonics, 32: 396-416.
[5] Tang HY*, Matsumoto T, Zheng JP, Czuppon G, Yu CM, Miyakawa C, Ping XQ. 2014. Heterogeneous lithospheric mantle metasomatism in the eastern North China Craton: He-Ar isotopes in peridotite xenoliths from Cenozoic basalts. Journal of Asian Earth Sciences, 80: 185-196.
[6] Tang HY*, Zheng JP, Yu CM, Ping XQ, Ren HW. 2014. Multistage crust-mantle interactions during the destruction of the North China Craton: Age and composition of the Early Cretaceous intrusions in the Jiaodong Peninsula. Lithos, 190-191: 52-70.
[7] Tang HY*, Zheng JP, Griffin WL, O’Reilly SY, Yu CM, Pearson NJ, Ping XQ, Xia B, Yang HB. 2014. Complex evolution of the lower crust beneath the southeastern North China Craton: the Junan xenoliths and xenocrysts. Lithos, 206-207: 113-126.
[8] 平先權,鄭建平*,熊慶,張志海,夏冰,2014. 揚子西北緣碧口地塊花崗質岩體鋯石U-Pb年齡、Hf同位素特徵及其地質意義. 吉林大學學報(地球科學版),44(4):1200-1218.
[9] Su YP*, Zheng JP*, Wei Y, Li YL, Ping XQ, Huang Y. 2015. Deep-seated crustal xenoliths record multiple Paleoproterozoic tectonothermal events in the northern North China Craton. Precambrian Research, 270: 318-333.
[10] Ping XQ*, Zheng JP*, Tang HY, Xiong Q, Su YP. 2015. Paleoproterozoic multistage evolution of the lower crust beneath the southern North China Craton. Precambrian Research, 269: 162-182.
[11] Li YH, Zheng JP*, Xiong Q, Wang W, Ping XQ, Li XY, Tang HY. 2016. Petrogenesis and tectonic implications of Paleoproterozoic metapelitic rocks in the Archean Kongling Complex from the northern Yangtze Craton, South China. Precambrian Research 276: 158-177.
[12] Su YP*, Zheng JP*, Liang LL, Dai HK, Zhao JH, Chen M, Ping XQ, Liu ZQ, Wang J. 2017. Derivation of A1-type granites by partial melting of newly underplated rocks related with the Tarim mantle plume. Geological Magazine, 1-21.
[13] Su YP*, Zheng JP*, W.L. Griffin, Huang Y, Wei Y, Ping XQ. 2017. Geochronology and geochemistry of deep-seated crustal xenoliths in the northern North China Craton: Implications for the evolution and structure of the lower crust. Lithos 292-293: 1-14.
[14] Li YH, Zheng JP*, Ping XQ, Xiong, Q, Xiang L, Zhang H. 2018. Complex growth and reworking processes in the Yangtze cratonic nucleus. Precambrian Research, 311: 262-277.
[15] Dai HK, Zheng JP*, Xiong Q, Su YP, Pan SK, Ping XQ, Zhou X. 2018. Fertile lithospheric mantle underlying ancient continental crust beneath the northwestern North China craton: Significant effect from the southward subduction of the Paleo–Asian Ocean. Geological Society of America, 131 (1-2): 3-20.
[16] Guo JW, Zheng JP*, Ping XQ, Wan YS, Li YH, Wu YB, Zhao JH, Wang W. 2018. Paleoproterozoic porphyries and coarse-grained granites manifesting a vertical hierarchical structure of Archean continental crust beneath the Yangtze Craton. Precambrian Research 314: 288-305
[17] Deng CZ, Sun DY*, Ping XQ*, Huang H, Zhang LD, Lu S. 2018. Geochemistry of Early Cretaceous volcanic rocks in the Northeastern Great Xing’an Range, northeast China and implication for geodynamic setting. International Geology Review, 1-19.
[18] Deng CZ, Sun DY*, Sun GY*, Lv CL, Qin Z, Ping XQ, Li GH. 2018. Age and geochemistry of Early Ordovician A-type granites in the Northeastern Songnen Block, NE China. Acta Geochimica, 37(6): 805-819.
[19] Ping XQ*, Zheng JP*, Tang HY, Ma Q, W.L. Griffin, Xiong Q, Su YP. 2018. Hadean continental crust in the southern North China Craton: Evidence from the Xinyang felsic granulite xenoliths. Precambrian Research, 307: 155-174.
[20] Wang J, Su YP*, Zheng JP*, Gao SL, Dai HK, Ping XQ. 2019. Geochronology and petrogenesis of Jurassic intraplate alkali basalts in the Junggar terrane, NW China: Implication for low-volume basaltic volcanism. Lithos, 324: 202-215.
[21] Ping XQ*, Zheng JP*, Xiong Q, W.L. Griffin, Yu CM, Su YP. 2019. Downward rejuvenation of the continental lower crust beneath the southeastern North China Craton. Tectonophysics, 750: 213-228.