Journal Publications
[1]中条山岩墙群的时代及其对华北 1.8Ga 大火成岩省事件性质的制约.科学通报, 2023, 68
[2]湖南香花岭晚侏罗世高分异花岗岩的岩石地球化学特征:岩石成因与稀有金属成矿效应.岩石学报, 2022, 38 (7) : 2113-2138.
[3]Late Permian-Triassic ridge subduction beneath the northeastern margin of North China Craton: evidence from the Kaiyuan appinitic to high-Mg intermediate intrusions in northern Liaoning.GSA Bulletin, 2023
[4]The timeline of prolonged accretionary processes in eastern Central Asian Orogenic Belt: Insights from episodic Paleozoic intrusions in central Inner Mongolia, North China.GSA Bulletin, 2022, 134 (3/4) : 629-657.
[5]辽北新太古代晚期岩浆热事件与陆壳生长: 来自清原奥长花岗岩的锆石U-Pb年代学和岩石地球化学证据.岩石学报, 2020, 36 (2) : 333-355.
[6]富闪深成岩的成因及其地球动力学意义.岩石学报, 2016, 32: 1556-1570.
[7]Late Permian high-Mg andesite and basalt association from northern Liaoning, North China: Insights into the final closure of the Paleo-Asian ocean and the orogen–craton boundary.Lithos, 2016, 258-259: 58-76.
[8]Juvenile crustal recycling in an accretionary orogen: Insights from contrasting Early Permian granites from central Inner Mongolia, North China.Lithos, 2016, 264: 524-539.
[9]Petrogenesis of the Middle Triassic Erenhot granitoid batholith in central Inner Mongolia (northern China) with tectonic implication for the Triassic Mo mineralization in the eastern Central Asian Orogenic Belt.Journal of Asian Earth Sciences, 2018, 165: 37-58.
[10]Early Cretaceous gabbro-granite complex from central Inner Mongolia: Insights into initial rifting and crust-mantle interaction in the northern China-Mongolia basin-range tract.Lithos, 2019, 324-325: 859-876.
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袁玲玲
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