Citation: | Guan Yanhe, Zeng Renyu, Lai Jianqing, Mao Xiancheng, Su Hui, 2023. Late Paleoproterozoic Metamorphic-Anatexis Events and Their Tectonic Implications in Longshoushan Area, Alxa Block. Earth Science, 48(11): 4034-4052. doi: 10.3799/dqkx.2022.435 |
Altherr, R., Holl, A., Hegner, E., et al., 2000. High- Potassium, Calc-Alkaline I-Type Plutonism in the European Variscides: Northern Vosges (France) and Northern Schwarzwald (Germany). Lithos, 50: 51-73. https://doi.org/10.1016/S0024-4937(99)00052-3
|
Andersson, J., Möller, C., Johansson, L., 2002. Zircon Geochronology of Migmatite Gneisses along the Mylonite Zone (S Sweden): A Major Sveconorwegian Terrane Boundary in the Baltic Shield. Precambrian Research, 114(1-2): 121-147. https://doi.org/10.1016/S0301-9268(01)00220-0
|
Ballouard, C., Branquet, Y., Tartese R., et al., 2016. Nb-Ta Fractionation in Peraluminous Granites: A Marker of the Magmatic-Hydrothermal Transition. Geology, 44(7): e395. https://doi.org/10.1130/G38169Y.1
|
Bau, M., 1996. Controls on the Fractionation of Isovalent Trace Elements in Magmatic and Aqueous Systems: Evidence from Y/Ho, Zr/Hf, and Lanthanide Tetrad Effect. Contributions to Mineralogy and Petrology, 123(3): 323-333. https://doi.org/10.1007/s004100050159
|
Dan, W., Li, X. H., Guo, J. H., et al., 2012. Paleoproterozoic Evolution of the Eastern Alxa Block, Westernmost North China: Evidence from In Situ Zircon U–Pb Dating and Hf–O Isotopes. Gondwana Research, 21(4): 838-864. https://doi.org/10.1016/j.gr.2011.09.004
|
Dan, W., Li, X. H., Wang, Q., et al., 2014. Neoproterozoic S-Type Granites in the Alxa Block, Westernmost North China and Tectonic Implications: In Situ Zircon U-Pb- Hf-O Isotopic and Geochemical Constraints. American Journal of Science, 314(1): 110-153. https://doi.org/10.2475/01.2014.04
|
Dan, W., Li, X. H., Wang, Q., et al., 2016. Phanerozoic Amalgamation of the Alxa Block and North China Craton: Evidence from Paleozoic Granitoids, U–Pb Geochronology and Sr–Nd–Pb–Hf–O Isotope Geochemistry. Gondwana Research, 32: 105-121. https://doi.org/10.1016/j.gr.2015.02.011
|
Dong, C. Y., Liu, D. Y., Li, J. J., et al., 2007a. Palaeoproterozoic Khondalite Belt in the Western North China Craton: New Evidence from SHRIMP Dating and Hf Isotope Composition of Zircons from Metamorphic Rocks in the Bayan Ul-Helan Mountains Area. Chinese Science Bulletin, 52(21): 2984-2994. doi: 10.1007/s11434-007-0404-9
|
Dong, G. A., Yang, H. Y., Liu, D. Y., 2007b. Detrital Zircon SHRIMP U-Pb Geochronology and Geological Significance of Longshoushan Group. Chinese Science Bulletin, 52(6): 688-697. doi: 10.1360/csb2007-52-6-688
|
Douce, P. A. E., 1999. What do Experiments Tell Us about the Relative Contributions of Crust and Mantle to the Origin of Granitic Magmas?. Geological Society, London, Special Publications, 168(1): 55-75. https://doi.org/10.1144/GSL.SP.1999.168.01.05
|
Gan, B. P., Diwu, C. R., Wang, B. L., et al., 2019. Geochronology and Geochemistry of the Paleoproterozoic Granites from the Helanshan Region: Contrains on the Formation and Evolution of Khodalite Belt in the Western North China Craton. Acta Petrologica Sinica, 35(8): 2325-2343 (in Chinese with English abstract). doi: 10.18654/1000-0569/2019.08.03
|
Gao, M. D., Xu, H. J., Zhang, J. F., et al., 2018. Incipient Melt during Partial Melting of the Deeply Subducted Continental Crust: Evidence from Leucosome of Migmatite in Sulu Ultra-High Pressure Terrane. Acta Petrologica Sinica, 34(3): 547-566 (in Chinese with English abstract).
|
Geng, Y. S., Wang, X. S., Shen, Q. H., et al., 2006. Redefinition of the Alxa Group-Complex (Precambrian Metamorphic Basement) in the Alxa Area, Inner Mongolia. Geology in China, 33(1): 138-145 (in Chinese with English abstract). doi: 10.3969/j.issn.1000-3657.2006.01.015
|
Geng, Y. S., Wang, X. S., Shen, Q. H., et al., 2007. Chronology of the Precambrian Metamorphic Series in the Alxa Area, Inner Mongolia. Geology in China, 34(2): 251-261 (in Chinese with English abstract).
|
Gong, J. H., Zhang, J. X., Wang, Z. Q., et al., 2016. Origin of the Alxa Block, Western China: New Evidence from Zircon U-Pb Geochronology and Hf Isotopes of the Longshoushan Complex. Gondwana Research, 36: 359-375. https://doi.org/10.1016/j.gr.2015.06.014
|
Hermann, J., Rubatto, D., Korsakov, A., et al., 2001. Multiple Zircon Growth during Fast Exhumation of Diamondiferous, Deeply Subducted Continental Crust (Kokchetav Massif, Kazakhstan). Contributions to Mineralogy and Petrology, 141(1): 66-82. https://doi.org/141:66-82.10.1007/s004100000218
|
Hollister, L. S., 1993. The Role of Melt in the Uplift and Exhumation of Orogenic Belts. Chemical Geology, 108(1-4): 31-48. https://doi.org/10.1016/0009-2541(93)90316-B
|
Kieffer, B., Arndt, N., Lapierre, H., et al., 2004. Flood and Shield Basalts from Ethiopia: Magmas from the African Superswell. Journal of Petrology, 45(4): 793-834. https://doi.org/10.1093/petrology/egg112
|
Kusky, T. M., Li, J. H., 2003. Paleoproterozoic Tectonic Evolution of the North China Craton. Journal of Asian Earth Sciences, 22(4): 383-397. https://doi.org/10.1016/S1367-9120(03)00071-3
|
LaFlèche, M. R., Camiré, G., Jenner, G. A., 1998. Geochemistry of Post-Acadian, Carboniferous Continental Intraplate Basalts from the Maritimes Basin, Magdalen Islands, Quebec, Canada. Chemical Geology, 148: 115-136. https://doi.org/10.1016/s0009-2541(98)00002-3
|
Li, J. J., Shen, B. F., Li, H. M., et al., 2004. Single- Zircon U-Pb Age of Granodioritic Gneiss in the Bayan UI Area, Western Inner Mongolia. Geological Bulletin of China, 23(12): 1243-1245 (in Chinese with English abstract).
|
Li, J. Y., Qian, Y., Li, Y. J., et al., 2020. Highly Fractionated Granitic Pegmatite of Early Stage of Early Cretaceous in Liaodong Peninsula: Petrogenesis and Tectonic Setting. Earth Science, 45(11): 4054-4071 (in Chinese with English abstract).
|
Liu, F., Robinson, P. T., Gerdes, A., et al., 2010. Zircon U–Pb Ages, REE Concentrations and Hf Isotope Compositions of Granitic Leucosome and Pegmatite from the North Sulu UHP Terrane in China: Constraints on the Timing and Nature of Partial Melting. Lithos, 117(1-4): 247-268. https://doi.org/10.1016/j.lithos.2010.03.002
|
Liu, P. H., Tian, Z. H., Wen, F., et al., 2020. Multiple High-Grade Metamorphic Events of the Jiaobei Terrane, North China Craton: New Evidences from Zircon U-Pb Ages and Trace Elements Compositions of Garnet Amphilbote and Granitic Leucosomes. Earth Science, 45(9): 3196-3216 (in Chinese with English abstract).
|
Liu, Z. C., Wu, F. Y., Ding, L., et al., 2016. Highly Fractionated Late Eocene (~ 35 Ma) Leucogranite in the Xiaru Dome, Tethyan Himalaya, South Tibet. Lithos, 240-243: 337-354. https://doi.org/10.1016/j.lithos.2015.11.026
|
London, D., 2005. Granitic Pegmatites: An Assessment of Current Concepts and Directions for the Future. Lithos, 80(1-4): 281-303. https://doi.org/10.1016/j.lithos.2004.02.009
|
Ma, L., Jiang, S. Y., Hou, M. L., 2014. Geochemistry of Early Cretaceous Calc-Alkaline Lamprophyres in the Jiaodong Peninsula: Implication for Lithospheric Evolution of the Eastern North China Craton. Gondwana Research, 25: 859-872. https://doi.org/10.1016/j.gr.2013.05.012
|
Middlemost, E. A. K., 1994. Naming Materials in the Magma/Igneous Rock System. Earth-Science Reviews, 37(3-4): 215-224.
|
Miyashiro, A., 1974. Volcanic Rock Series in Island Arcs and Active Continental Margins. American Journal of Science, 274(4): 321-355. doi: 10.2475/ajs.274.4.321
|
Pearce, J. A., 1982. Trace Element Characteristics of Lavas from Destructive Plate Boundaries. Andesites, 8: 525-548.
|
Pearce, J. A., 1996. A User's Guide to Basalt Discrimination Diagrams. In: Wyman, D. A., ed., Trace Element Geochemistry of Volcanic Rocks: Applications for Massive Sulphide Exploration. Newfoundland: Geological Association of Canada, 12: 79-113.
|
Pearce, J. A., Cann, J. R., 1973. Tectonic Setting of Basic Volcanic Rocks Determined Using Trace Element Analyses. Earth and Planetary Science Letters, 19(2): 290-300. doi: 10.1016/0012-821X(73)90129-5
|
Qi, J. W., Zhang, S. M., Yang, C. S., et al., 2019. The LA-ICP-MS Zircon U-Pb Age of the Pegmatoidal Alaskite and Its Relationship with Uranium Mineralization in Hongshiquan Area, Gansu Province. Geological Bulletin of China, 38(4): 562-572 (in Chinese with English abstract).
|
Rickwood, P. C., 1989. Boundary Lines within Petrologic Diagrams Which Use Oxides of Major and Minor Elements. Lithos, 22(4): 247-263. https://doi.org/10.1016/0024-4937(89)90028-5
|
Santosh, M., Wan, Y. S., Liu, D. Y., 2009. Anatomy of Zircons from an Ultrahot Orogen: The Amalgamation of the North China Craton within the Supercontinent Columbia. The Journal of Geology, 117(4): 429-443. https://doi.org/10.1086/598949
|
Sawyer, E. W., 2008. Working with Migmatites: Nomenclature for the Constituent Parts. In: Sawyer, E. W., ed., Working with Migmatites. Quebec City, Mineralogical Association of Canada, Quebec, 1-28.
|
Schmidt, M. W., Vielzeuf, D., Auzanneau, E., 2004. Melting and Dissolution of Subducting Crust at High Pressures: The Key Role of White Mica. Earth and Planetary Science Letters, 228(1-2): 65-84. https://doi.org/10.1016/j.epsl.2004.09.020
|
Shen, Q. H., Geng, Y. S., Wang, X. S., et al., 2004. Mineral Characteristics and Metamorphic P-T Condition of Precambrian Amphibolites in Alxa Region. Geological Survey and Research, 27(4): 209-216 (in Chinese with English abstract).
|
Shen, Q. H., Geng, Y. S., Wang, X. S., et al., 2005. Petrology, Geochemistry, Formation Environment and Ages of Precambrian Amphibolites in Alxa Region. Acta Petrologica et Mineralogica, 24(1): 21-31 (in Chinese with English abstract).
|
Shervais, J. W., 1982. Ti-V Plots and the Petrogenesis of Modern and Ophiolitic Lavas. Earth and Planetary Science Letters, 59(1): 101-118. https://doi.org/10.1016/0012-821X(82)90120-0
|
Su, H., Zeng, R. Y., Gan, D. B., et al., 2023. Petrogenesis and Tectonic Implications of Granite Porphyry in the Beidashan Area, Alxa Block: Constraints from Geochemistry, Zircon U-Pb Geochronology and Hf Isotopes. Geoscience (in Chinese with English abstract).
|
Sun, W. D., McDonough, W. F., 1989. Chemical and Isotopic Systematics of Oceanic Basalts: Implications for Mantle Composition and Processes. Geological Society, London, Special Publications, 42: 313-345. https://doi.org/10.1144/gsl.sp.1989.042.01.19
|
Tang, Z. L., 2002. Metallogenic System and Metallogenic Tectonic Dynamics in the Southwest Margin of North China Ancient Land (Longshoushan-Qilian Mountain). Geological Publishing House, Beijing (in Chinese with English abstract).
|
Treuil, M., Joron, J. L., 1975. Utilisation des Elements Hygromagmatophiles Pour la Simplification de la Modélisation Quantitative des Processus Magmatiques: Exemples de l'Afar et de la Dorsale Médio-Atlantique. Soc. Ital. Mineral. Petrol. , 31: 125-174. https://doi.org/10.2113/gssgfbull.s7-xix.6.1197
|
Vermeesch, P., 2006. Tectonic Discrimination Diagrams Revisited. Geochemistry, Geophysics, Geosystems, 7(6): 466-482. https://doi.org/10.1029/2005gc001092
|
Wan, Y. S., Liu, D. Y., Dong, C. Y., et al., 2009. The Precambrian Khondalite Belt in the Daqingshan Area, North China Craton: Evidence for Multiple Metamorphic Events in the Palaeoproterozoic Era. Geological Society, London, Special Publications, 323(1): 73-97. https://doi.org/10.1144/sp323.4
|
Wan, Y. S., Xu, Z. Y., Dong, C. Y., et al., 2013. Episodic Paleoproterozoic (∼2.45, ∼1.95 and ∼1.85 Ga) Mafic Magmatism and Associated High Temperature Metamorphism in the Daqingshan Area, North China Craton: SHRIMP Zircon U–Pb Dating and Whole-Rock Geochemistry. Precambrian Research, 224: 71-93. https://doi.org/10.1016/j.precamres.2012.09.014
|
Wang, Q., 2014. Study on Metamorphism of Longshoushan Baijiazuizi Group (Dissertation). Chang'an University, Xi'an (in Chinese with English abstract).
|
White, R. W., Powell, R., Holland, T. J. B., 2001. Calculation of Partial Melting Equilibria in the System Na2O-CaO-K2O-FeO-MgO-Al2O3-SiO2-H2O (NCKFMASH). Journal of Metamorphic Geology, 19(2): 139-153. https://doi.org/10.1046/j.0263-4929.2000.00303.x
|
Wu, F. Y., Liu, X. C., Ji W. Q., et al., 2017. Highly Fractionated Granites: Recognition and Research. Science China Earth Sciences, 47(7): 745-765 (in Chinese).
|
Wu, F. Y., Zhang, Y. B., Yang, J. H., et al., 2008. Zircon U-Pb and Hf Isotopic Constraints on the Early Archean Crustal Evolution in Anshan of the North China Craton. Precambrian Research, 167(3): 339-362. https://doi.org/10.1016/j.precamres.2008.10.002
|
Wu, Y. B., Zheng, Y. F., Zhang, S. B., et al., 2007. Zircon U–Pb Ages and Hf Isotope Compositions of Migmatite from the North Dabie Terrane in China: Constraints on Partial Melting. Journal of Metamorphic Geology, 25(9): 991-1009. https://doi.org/10.1111/j.1525-1314.2007.00738.x
|
Xiu, Q. Y., Lu, S. N., Yu, H. F., et al., 2002. The Isotopic Age Evidence for Main Longshoushan Group Contributing to Palaeoproterozoic. Progess in Precambrian Research, 25(2): 93-96 (in Chinese with English abstract).
|
Xiu, Q. Y., Yu, H. F., Li, Q., et al., 2004. Disscussion on the Petrogenic Time of Longshoushan Group, Gansu Province. Acta Geologica Sinica, 78(3): 366-373 (in Chinese with English abstract).
|
Xu, W., Liu, F. l., Liu, C. H., 2017. Petrogenesis and Geochemical Characteristics of the North Liaohe Metabasic Rocks, Jiao-Liao-Ji Orogenic Belt and Their Tectonic Significance. Acta Petrologica Sinica, 33(9): 2743-2757 (in Chinese with English abstract).
|
Yang, Q. Y., Santosh, M., Collins, A. S., et al., 2016. Microblock Amalgamation in the North China Craton: Evidence from Neoarchaean Magmatic Suite in the Western Margin of the Jiaoliao Block. Gondwana Research, 31: 96-123. https://doi.org/10.1016/j.gr.2015.04.002
|
Yang, Z. Y., Yuan, W., Tong, Y. B., et al., 2014. Tectonic Affinity Reconnaissance of the Alxa Block in the Pre-Mesozoic. Acta Geoscientica Sinica, 35(6): 673-681 (in Chinese with English abstract).
|
Yin, C. Q., Zhao, G. C., Guo, J. H., et al., 2011. U-Pb and Hf Isotopic Study of Zircons of the Helanshan Complex: Constrains on the Evolution of the Khondalite Belt in the Western Block of the North China Craton. Lithos, 122(1-2): 25-38. https://doi.org/10.1016/j.lithos.2010.11.010
|
Yu, S. Y., Zhang, J. X., Li, S. Z., et al., 2016. "Barrovian-Type" Metamorphism and In Situ Anatexis during Continental Collision: A Case Study from the South Altun Mountains, Western China. Acta Petrologica Sinica, 32(12): 3703-3714 (in Chinese with English abstract).
|
Yu, Y., Li, Z. F., Bai, L. A., et al., 2022. Metallogenic Regularity and Prospecting Direction of Pegmatitic Rare-Metal Deposits in Western Yunnan. Acta Petrologica Sinica, 38(7): 2052-2066 (in Chinese with English abstract). doi: 10.18654/1000-0569/2022.07.14
|
Yuan, W., Yang, Z. Y., 2015. The Alashan Terrane was not Part of North China by the Late Devonian: Evidence from Detrital Zircon U-Pb Geochronology and Hf Isotopes. Gondwana Research, 27(3): 1270-1282. https://doi.org/10.1016/j.gr.2013.12.009
|
Zeng, R. Y., Lai, J. Q., Mao, X. C., et al., 2018. Paleoproterozoic Multiple Tectonothermal Events in the Longshoushan Area, Western North China Craton and Their Geological Implication: Evidence from Geochemistry, Zircon U-Pb Geochronology and Hf Isotopes. Minerals-Basel, 8(9): 361. https://doi.org/10.3390/min8090361
|
Zeng, R. Y., Pan, J. Y., Su, H., et al., 2023. Geochronology and Genetic Mineralogy of Apatite and Zircon from the Huichang Pyroxene Diorite in Southern Jiangxi Province: Implications for Uranium Mineralization. Earth Science, 48(9): 3258-3279 (in Chinese with English abstract).
|
Zhai, M. G., 2011. Craton and the Formation of North China Land Block. Science in China (Series D: Earth Sciences), 41(8): 1037-1046 (in Chinese).
|
Zhai, M. G, Santosh, M., 2011. The Early Precambrian Odyssey of the North China Craton: A Synoptic Overview, Gondwana Research, 20(1): 6-25. https://doi.org/10.1016/j.gr.2011.02.005
|
Zhang, C. L., Gou, L. l., Diwu, C. R., et al., 2018. Early Precambrian Geological Events of the Basement in Western Block of North China Craton and Their Properties and Geological Significance. Acta Petrologica Sinica, 34(4): 981-998 (in Chinese with English abstract).
|
Zhang, J. X., Gong, J. H., 2018. Revisiting the Nature and Affinity of the Alxa Block. Acta Petrologica Sinica, 34(4): 940-962 (in Chinese with English abstract).
|
Zhang, J. X., Gong, J. H., Yu, S. Y., et al., 2013. Neoarchean-Paleoproterozoic Multiple Tectonothermal Events in the Western Alxa Block, North China Craton and Their Geological Implication: Evidence from Zircon U-Pb Ages and Hf Isotopic Composition. Precambrian Research, 235: 36-57. https://doi.org/10.1016/j.precamres.2013.05.002
|
Zhao, G. C., 2009. Metamorphic Evolution of Major Tectonic Units in the Basement of the North China Craton: Key Issues and Discussion. Acta Petrologica Sinica, 25(8): 1772-1792 (in Chinese with English abstract).
|
Zhao, G. C, Sun, M., Wilde, S. A., et al., 2005. Late Archean to Paleoproterozoic Evolution of the North China Craton: Key Issues Revisited. Precambrian Research, 136: 177-202. https://doi.org/10.1016/j.precamres.2004.10.002
|
Zou, L., Guo, J. H., Jiao, S. J., et al., 2022. Paleoproterozoic Ultrahigh-Temperature Metamorphism in the Alxa Block, the Khondalite Belt, North China Craton: Petrology and Phase Equilibria of Quartz-Absent Corundum-Bearing Pelitic Granulites. J. Metamorph. Geol. , https://doi: 10.1111/jmg.12661
|
Zou, L., Guo, J. H., Liu, L. S., et al., 2021. Palaeoproterozoic Granulite-Facies Metamorphism in the Eastern Alxa Block: New Petrological and Geochronological Evidence from the Diebusige Complex. Precambrian Research, 354(7-8): 106051. https://doi.org/10.1016/j.precamres.2020.106051
|
甘保平, 第五春荣, 王伯隆, 等, 2019. 贺兰山古元古代花岗岩年代学及地球化学特征: 对华北克拉通西部孔兹岩带形成和演化的制约. 岩石学报, 35(8): 2325-2343. https://www.cnki.com.cn/Article/CJFDTOTAL-YSXB201908003.htm
|
高名迪, 续海金, 章军锋, 等, 2018. 深俯冲陆壳部分熔融初始熔体的厘定: 来自苏鲁超高压地体混合岩中浅色体证据. 岩石学报, 34(3): 547-566. https://www.cnki.com.cn/Article/CJFDTOTAL-YSXB201803002.htm
|
耿元生, 王新社, 沈其韩, 等, 2006. 内蒙古阿拉善地区前寒武纪变质基底阿拉善群的再厘定. 中国地质, 33(1): 138-145. https://www.cnki.com.cn/Article/CJFDTOTAL-DIZI200601014.htm
|
耿元生, 王新社, 沈其韩, 等, 2007. 内蒙古阿拉善地区前寒武纪变质岩系形成时代的初步研究. 中国地质, 34(2): 251-261. https://www.cnki.com.cn/Article/CJFDTOTAL-DIZI200702006.htm
|
李俊建, 沈保丰, 李惠民, 等, 2004. 内蒙古西部巴彦乌拉山地区花岗闪长岩质片麻岩的单颗粒锆石U-Pb法年龄. 地质通报, 23(12): 1243-1245. https://www.cnki.com.cn/Article/CJFDTOTAL-ZQYD200412013.htm
|
李锦毓, 钱烨, 李予晋, 等, 2020. 辽东半岛早白垩世早期高分异花岗伟晶岩成因与构造背景. 地球科学, 45(11): 4054-4071. doi: 10.3799/dqkx.2020.998
|
刘平华, 田忠华, 文飞, 等, 2020. 华北克拉通胶北地体多期高级变质事件: 来自石榴斜长角闪岩与花岗质浅色体锆石U-Pb定年与稀土元素的新证据. 地球科学, 45(9): 3196-3216. doi: 10.3799/dqkx.2020.228
|
戚佳伟, 张树明, 杨春四, 等, 2019. 甘肃红石泉地区伟晶状白岗岩LA-ICP-MS锆石U-Pb年龄与铀成矿关系. 地质通报, 38(4): 562-572. https://www.cnki.com.cn/Article/CJFDTOTAL-ZQYD201904009.htm
|
沈其韩, 耿元生, 王新社, 等, 2004. 阿拉善地区前寒武纪斜长角闪岩组成矿物特征及变质温压条件. 地质调查与研究, 27(4): 209-216. https://www.cnki.com.cn/Article/CJFDTOTAL-QHWJ200404000.htm
|
沈其韩, 耿元生, 王新社, 等, 2005. 阿拉善地区前寒武纪斜长角闪岩的岩石学、地球化学、形成环境和年代学. 岩石矿物学杂志, 24(1): 21-31. https://www.cnki.com.cn/Article/CJFDTOTAL-YSKW200501003.htm
|
苏惠, 曾认宇, 甘德斌, 等, 2023. 阿拉善北大山地区花岗斑岩岩石成因及构造启示: 元素地球化学、锆石U-Pb年代学及Hf同位素约束. 现代地质.
|
汤中立, 2002. 华北古陆西南缘(龙首山‒祁连山)成矿系统及成矿构造动力学. 北京: 地质出版社.
|
王强, 2014. 龙首山群白家嘴子组变质作用研究(硕士学位论文). 西安: 长安大学.
|
吴福元, 刘小驰, 纪伟强, 等, 2017. 高分异花岗岩的识别与研究. 中国科学: 地球科学, 47(7): 745-765. https://www.cnki.com.cn/Article/CJFDTOTAL-JDXK201707001.htm
|
修群业, 陆松年, 于海峰, 等, 2002. 龙首山岩群主体划归古元古代的同位素年龄证据. 前寒武纪研究进展, 25(2): 93-96. https://www.cnki.com.cn/Article/CJFDTOTAL-QHWJ200202004.htm
|
修群业, 于海峰, 李铨, 等, 2004. 龙首山岩群成岩时代探讨. 地质学报, 78(3): 366-373. https://www.cnki.com.cn/Article/CJFDTOTAL-DZXE200403009.htm
|
许王, 刘福来, 刘超辉, 2017. 胶‒辽‒吉造山带北辽河变基性岩的成因、地球化学属性及其构造意义. 岩石学报, 33(9): 2743-2757. https://www.cnki.com.cn/Article/CJFDTOTAL-YSXB201709006.htm
|
杨振宇, 袁伟, 仝亚博, 等, 2014. 阿拉善地块前中生代构造归属的新认识. 地球学报, 35(6): 673-681. https://www.cnki.com.cn/Article/CJFDTOTAL-DQXB201406002.htm
|
于胜尧, 张建新, 李三忠, 等, 2016. 大陆碰撞过程中的巴罗式变质作用及原地深熔作用: 以南阿尔金为例. 岩石学报, 32(12): 3703-3714. https://www.cnki.com.cn/Article/CJFDTOTAL-YSXB201612010.htm
|
余勇, 李祖福, 白令安, 等, 2022. 滇西伟晶岩型稀有金属矿床成矿规律与找矿方向. 岩石学报, 38(7): 2052-2066. https://www.cnki.com.cn/Article/CJFDTOTAL-YSXB202207014.htm
|
曾认宇, 潘家永, 苏惠, 等, 2023. 赣南会昌辉石闪长岩中磷灰石和锆石的年代学、成因矿物学及铀成矿指示意义. 地球科学, 48(9): 3258-3279. doi: 10.3799/dqkx.2022.127
|
翟明国, 2011. 克拉通化与华北陆块的形成. 中国科学(D辑: 地球科学), 41(8): 1037-1046. https://www.cnki.com.cn/Article/CJFDTOTAL-JDXK201108001.htm
|
张成立, 苟龙龙, 第五春荣, 等, 2018. 华北克拉通西部基底早前寒武纪地质事件、性质及其地质意义. 岩石学报, 34(4): 981-998. https://www.cnki.com.cn/Article/CJFDTOTAL-YSXB201804010.htm
|
张建新, 宫江华, 2018. 阿拉善地块性质和归属的再认识. 岩石学报, 34(4): 940-962. https://www.cnki.com.cn/Article/CJFDTOTAL-YSXB201804008.htm
|
赵国春, 2009. 华北克拉通基底主要构造单元变质作用演化及其若干问题讨论. 岩石学报, 25(8): 1772-1792. https://www.cnki.com.cn/Article/CJFDTOTAL-YSXB200908006.htm
|
![]() |
![]() |