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    Volume 43 Issue 1
    Jan.  2018
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    Wang Chengcheng, Liu Yican, Yang Yang, Zhang Pingang, Nie Jiazhen, 2018. Metamorphic Evolution of Mafic Granulites from the Wuhe Complex at the Southeastern Margin of the North China Craton. Earth Science, 43(1): 296-316. doi: 10.3799/dqkx.2018.018
    Citation: Wang Chengcheng, Liu Yican, Yang Yang, Zhang Pingang, Nie Jiazhen, 2018. Metamorphic Evolution of Mafic Granulites from the Wuhe Complex at the Southeastern Margin of the North China Craton. Earth Science, 43(1): 296-316. doi: 10.3799/dqkx.2018.018

    Metamorphic Evolution of Mafic Granulites from the Wuhe Complex at the Southeastern Margin of the North China Craton

    doi: 10.3799/dqkx.2018.018
    • Received Date: 2017-09-16
    • Publish Date: 2018-01-15
    • Investigations on metamorphic processes of the Wuhe complex provide new insights into the formation and evolution of Precambrian metamorphic basement at the southeastern margin of the North China Craton (NCC). In this paper, three Paleoproterozoic stages of metamorphic assemblages from mafic granulites in the Wuhe complex is recognized and a clockwise P-T-t path characterized by post-peak near-isothermal decompression and subsequent decompression-cooling by conducting detailed petrographic observations, mineral electron microprobe analysis, zircon LA-ICP-MS U-Pb dating and trace element analysis is reconstructed. The peak HP granulite-facies metamorphism (M1) is characterized by high-Ca cores in granet, high-Al cores in clinopyrexene, plagioclase, quartz and rutile, yielding P-T conditions of 850-900℃ and 1.5 GPa. The medium-pressure (MP) granulite facies assemblage (M2) mainly consists of garnet+orthopyrexene+plagioclase±clinopyrexene surrounding the amphibole porphyroblasts, recording P-T conditions of~900℃ and 1.1-1.2 GPa. Symplectites or coronas composed of hornblende+plagioclase (M3) surrounding the garnet porphyroblasts indicate garnet decompressional reactions occurred at 600-680℃ and 0.65-0.75 GPa. The zircon dating results can be categorized into three groups of~1.90 Ga, ~1.85 Ga and~1.78 Ga, corresponding to the time of HP granulite facies, MP granulite facies and amphibolite facies metamorphism. The comparable metamorphic evolution of mafic granulites from the Wuhe complex to Jiaobei terrane, combined with previous studies on petrogenesis and U-Pb ages of 2.1 Ga granitic rocks, suggest that the Wuhe complex is the west extension of the Jiao-Liao-Ji belt (JLJB) and they constitute a Paleoproterozoic collisional orogen as a whole in the eastern block of the NCC.

       

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    • Anovitz, L.M., 1991.Al Zoning in Pyroxene and Plagioclase:Window on Late Prograde to Early Retrograde P-T Paths in Granulite Terranes.American Mineralogist, 76(7-8):1328-1343. http://www.academia.edu/13089861/Paragenesis_of_sodic_pyroxene-bearing_quartz_schists_implications_for_the_P-T_history_of_the_Sanbagawa_belt
      Bhattacharya, A., Krishnakumar, K.R., Raith, M., et al., 1991.An Improved Set of A-X Parameters for Fe-Mg-Ca Garnets and Refinements of the Orthopyroxene-Garnet Thermometer and the Orthopyroxene-Garnet-Plagioclase-Quartz Barometer.Journal of Petrology, 32(3):629-656. https://dx.doi.org/10.1093/petrology/32.3.629
      Brown, M., 2014.The Contribution of Metamorphic Petrology to Understanding Lithosphere Evolution and Geodynamics.Geoscience Frontiers, 5(4):553-569. https://dx.doi.org/10.1016/j.gsf.2014.02.005
      Duan, Z.Z., Wei, C.J., Qian, J.H., 2015.Metamorphic P-T Paths and Zircon U-Pb Age Data for the Paleoproterozoic Metabasic Dykes of High-Pressure Granulite Facies from Eastern Hebei, North China Craton.Precambrian Research, 271:295-310. https://dx.doi.org/10.1016/j.precamres.2015.10.015
      Eckert, J.O., Newton, R.C., Kleppa, O.J., 1991.The △H of Reaction and Recalibration of Garnet-Pyroxene-Plagioclase-Quartz Geobarometers in the CMAS System by Solution Calorimetry.American Mineralogist, 76(1-2):148-160. https://pubs.geoscienceworld.org/ammin/article-lookup/76/1-2/148
      Ellis, D.J., Green, D.H., 1979.An Experimental Study of the Effect of Ca upon Garnet-Clinopyroxene Fe-Mg Exchange Equilibria.Contributions to Mineralogy and Petrology, 71(1):13-22. https://dx.doi.org/10.1007/bf00371878
      Frost, B.R., Chacko, T., 1989.The Granulite Uncertainty Principle:Limitations on Thermobarometry in Granulites.The Journal of Geology, 97(4):435-450. https://dx.doi.org/10.1086/629321
      Guo, J.H., O'Brien, P.J., Zhai, M.G., 2002.High-Pressure Granulites in the Sanggan Area, North China Craton:Metamorphic Evolution, P-T Paths and Geotectonic Significance.Journal of Metamorphic Geology, 20(8):741-756. https://dx.doi.org/10.1046/j.1525-1314.2002.00401.x
      Guo, S.S., Li, S.G., 2009.SHRIMP Zircon U-Pb Ages for the Paleoproterozoic Metamorphic-Magmatic Events in the Southeast Margin of the North China Craton.Science in China (Series D), 39(6):694-699 (in Chinese). https://dx.doi.org/10.1007/s11430-009-0099-7
      Harley, S.L., 1989.The Origins of Granulites:A Metamorphic Perspective.Geological Magazine, 126(3):215. https://dx.doi.org/10.1017/s0016756800022330
      Jin, S.Q., 1991.Composition Characteristics of Calc-Amphiboles in Different Regional Metamorphic Facies.Chinese Science Bulletin, 36(11):851-854 (in Chinese). http://www.researchgate.net/publication/292397390_Composition_characteristics_of_calc-amphiboles_in_different_regional_metamorphic_facies
      Krogh, E.J., 1988.The Garnet-Clinopyroxene Fe-Mg Geothermometer-A Reinterpretation of Existing Experimental Data.Contributions to Mineralogy and Petrology, 99(1):44-48. https://dx.doi.org/10.1007/bf00399364
      Li, Y.L., Zhang, H.F., Guo, J.H., et al., 2017.Petrogenesis of the Huili Paleoproterozoic Leucogranite in the Jiaobei Terrane of the North China Craton:A Highly Fractionated Albite Granite Forced by K-Feldspar Fractionation.Chemical Geology, 450:165-182. https://dx.doi.org/10.1016/j.chemgeo.2016.12.029
      Liu, F. L., Liu, L. S., Cai, J., et al., 2017a. A Widespread Paleoproterozoic Partial Melting Event within the Jiao-Liao-Ji Belt, North China Craton: Zircon U-Pb Dating of Granitic Leucosomes within Pelitic Granulites and Its Tectonic Implications. Precambrian Research (in Press). https: //dx. doi. org/10. 1016/j. precamres. 2017. 10. 017
      Liu, Y.C., Zhang, P.G., Wang, C.C., et al., 2017b.Petrology, Geochemistry and Zirconology of Impure Calcite Marbles from the Precambrian Metamorphic Basement at the Southeastern Margin of the North China Craton.Lithos, 290-291:189-209. https://dx.doi.org/10.1016/j.lithos.2017.08.011
      Liu, F.L., Liu, P.H., Wang, F., et al., 2014.U-Pb Dating of Zircons from Granitic Leucosomes in Migmatites of the Jiaobei Terrane, Southwestern Jiao-Liao-Ji Belt, North China Craton:Constraints on the Timing and Nature of Partial Melting.Precambrian Research, 245:80-99. https://dx.doi.org/10.1016/j.precamres.2014.01.001
      Liu, L., Yang, X.Y., Santosh, M., et al., 2015a.Neoarchean to Paleoproterozoic Continental Growth in the Southeastern Margin of the North China Craton:Geochemical, Zircon U-Pb and Hf Isotope Evidence from the Huoqiu Complex.Gondwana Research, 28(3):1002-1018. https://dx.doi.org/10.1016/j.gr.2014.08.011
      Liu, Y.C., Deng, L.P., Gu, X.F., et al., 2015b.Application of Ti-in-Zircon and Zr-in-Rutile Thermometers to Constrain High-Temperature Metamorphism in Eclogites from the Dabie Orogen, Central China.Gondwana Research, 27(1):410-423. https://dx.doi.org/10.1016/j.gr.2013.10.011
      Liu, P.H., Liu, F.L., Liu, C.H., et al., 2013a.Petrogenesis, P-T-t Path, and Tectonic Significance of High-Pressure Mafic Granulites from the Jiaobei Terrane, North China Craton.Precambrian Research, 233:237-258. https://dx.doi.org/10.1016/j.precamres.2013.05.003
      Liu, Y.C., Wang, A.D., Li, S.G., et al., 2013b.Composition and Geochronology of the Deep-Seated Xenoliths from the Southeastern Margin of the North China Craton.Gondwana Research, 23(3):1021-1039. https://dx.doi.org/10.1016/j.gr.2012.06.009
      Liu, P.H., Liu, F.L., Wang, F., et al., 2015.P-T-t Paths of the Multiple Metamorphic Events of the Jiaobei Terrane in the Southeastern Segment of the Jiao-Liao-Ji Belt (JLJB), in the North China Craton:Impication for Formation and Evolution of the JLJB.Acta Petrologica Sinica, 31(10):2889-2941 (in Chinese with English abstract).
      Liu, Y, C., Zhang, P.G., Wang, C.C., et al., 2016.Paleoproterozoic Multistage Metamorphic Ages Registered in the Precambrian Basement Rocks at the Southeastern Margin of the North China Craton and Their Geological Implications.Acta Geologica Sinica (English Edition), 90(6):2265-2266. https://dx.doi.org/10.1111/1755-6724.13038
      Liu, Y.C., Wang, A.D., Rolfo, F., et al., 2009.Geochronological and Petrological Constraints on Palaeoproterozoic Granulite Facies Metamorphism in Southeastern Margin of the North China Craton.Journal of Metamorphic Geology, 27(2):125-138. https://dx.doi.org/10.1111/j.1525-1314.2008.00810.x
      Liu, Y.C., Wang, C.C., Zhang, P.G., et al., 2015a.Granulite Facies Metamorphism, Partial Melting and Metasomatism in the Wuhe Complex at the Southeastern Margin of the North China Block.Journal of Earth Sciences and Environment, 37(1):1-11 (in Chinese with English abstract). https://www.sciencedirect.com/science/article/pii/S167498711200059X
      Liu, Y.C., Wang, C.C., Zhang, P.G., et al., 2015b.Growth and Metamorphic Evolution of the Precambrian Lower Crust at the Southeastern Margin of the North China Block.Acta Petrologica Sinica, 31(10):2847-2862 (in Chinese with English abstract). http://www.academia.edu/19260429/Growth_and_metamorphic_evolution_of_the_Precambrian_lower_crust_at_the_southeastern_margin_of_the_North_China_Block
      Liu, Y.S., Hu, Z.C., Gao, S., et al., 2008.In Situ Analysis of Major and Trace Elements of Anhydrous Minerals by LA-ICP-MS without Applying an Internal Standard.Chemical Geology, 257(1-2):34-43. https://dx.doi.org/10.1016/j.chemgeo.2008.08.004
      Liu, Y.S., Hu, Z.C., Zong, K.Q., et al., 2010.Reappraisement and Refinement of Zircon U-Pb Isotope and Trace Element Analyses by LA-ICP-MS.Chinese Science Bulletin, 55(15):1535-1546. https://dx.doi.org/10.1007/s11434-010-3052-4
      Molina, J.F., Moreno, J.A., Castro, A., et al., 2015.Calcic Amphibole Thermobarometry in Metamorphic and Igneous Rocks:New Calibrations Based on Plagioclase/Amphibole Al-Si Partitioning and Amphibole/Liquid Mg Partitioning.Lithos, 232:286-305. https://dx.doi.org/10.1016/j.lithos.2015.06.027
      Pattison, D.R.M., 2003.Temperatures of Granulite-Facies Metamorphism:Constraints from Experimental Phase Equilibria and Thermobarometry Corrected for Retrograde Exchange.Journal of Petrology, 44(5):867-900. https://dx.doi.org/10.1093/petrology/44.5.867
      Powell, R., 1985.Regression Diagnostics and Robust Regression in Geothermometer/Geobarometer Calibration:The Garnet-Clinopyroxene Geothermometer Revisited.Journal of Metamorphic Geology, 3(3):231-243. https://dx.doi.org/10.1111/j.1525-1314.1985.tb00319.x
      Ravna, E.K., 2000a.The Garnet-Clinopyroxene Fe2+-Mg Geothermometer:An Updated Calibration.Journal of Metamorphic Geology, 18(2):211-219. https://dx.doi.org/10.1046/j.1525-1314.2000.00247.x
      Ravna, E.K., 2000b.Distribution of Fe2+ and Mg between Coexisting Garnet and Hornblende in Synthetic and Natural Systems:An Empirical Calibration of the Garnet-Hornblende Fe-Mg Geothermometer.Lithos, 53(3-4):265-277. https://dx.doi.org/10.1016/s0024-4937(00)00029-3
      Rubatto, D., 2002.Zircon Trace Element Geochemistry:Partitioning with Garnet and the Link between U-Pb Ages and Metamorphism.Chemical Geology, 184(1-2):123-138. https://dx.doi.org/10.1016/s0009-2541(01)00355-2
      Spear, F.S., Florence, F.P., 1992.Thermobarometry in Granulites:Pitfalls and New Approaches.Precambrian Research, 55(1-4):209-241. https://dx.doi.org/10.1016/0301-9268(92)90025-j
      Tam, P.Y., Zhao, G.C., Liu, F.L., et al., 2011.Timing of Metamorphism in the Paleoproterozoic Jiao-Liao-Ji Belt:New SHRIMP U-Pb Zircon Dating of Granulites, Gneisses and Marbles of the Jiaobei Massif in the North China Craton.Gondwana Research, 19(1):150-162. https://dx.doi.org/10.1016/j.gr.2010.05.007
      Tam, P.Y., Zhao, G.C., Sun, M., et al., 2012a.Petrology and Metamorphic P-T Path of High-Pressure Mafic Granulites from the Jiaobei Massif in the Jiao-Liao-Ji Belt, North China Craton.Lithos, 155:94-109. https://dx.doi.org/10.1016/j.lithos.2012.08.018
      Tam, P.Y., Zhao, G.C., Zhou, X.W., et al., 2012b.Metamorphic P-T Path and Implications of High-Pressure Pelitic Granulites from the Jiaobei Massif in the Jiao-Liao-Ji Belt, North China Craton.Gondwana Research, 22(1):104-117. https://dx.doi.org/10.1016/j.gr.2011.09.006
      Taylor, W.R., 1998.An Experimental Test of Some Geothermometer and Geobaro-Meter Formulations for Upper Mantle Peridotites with Application to the Thermobarometry of Fertile Lherzolite and Garnet Websterite.Neues Jahrbuch für Mineralogie-Abhandlungen, 172(2):381-408. doi: 10.1007/s00410-012-0767-z.pdf
      Wang, A.D., Liu, Y.C., Gu, X.F., et al., 2012.Late-Neoarchean Magmatism and Metamorphism at the Southeastern Margin of the North China Craton and Their Tectonic Implications.Precambrian Research, 220-221:65-79. https://dx.doi.org/10.1016/j.precamres.2012.07.011
      Wang, A.D., Liu, Y.C., Santosh, M., et al., 2013.Zircon U-Pb Geochronology, Geochemistry and Sr-Nd-Pb Isotopes from the Metamorphic Basement in the Wuhe Complex:Implications for Neoarchean Active Continental Margin along the Southeastern North China Craton and Constraints on the Petrogenesis of Mesozoic Granitoids.Geoscience Frontiers, 4(1):57-71. https://dx.doi.org/10.1016/j.gsf.2012.05.001
      Wang, C.C., Liu, Y.C., Zhang, P.G., et al., 2017.Zircon U-Pb Geochronology and Geochemistry of Two Types of Paleoproterozoic Granitoids from the Southeastern Margin of the North China Craton:Constraints on Petrogenesis and Tectonic Significance.Precambrian Research, 303:268-290. https://dx.doi.org/10.1016/j.precamres.2017.04.015
      Wang, J., Sheng, Y., Pu, X.P., et al., 2014.The Investigation on Metamorphic Petrology and P-T Conditions of Wuhe Complex Rocks:Evidences from Drill ZK02 in the South of Mengcheng Area.Chinese Journal of Geology, 49(2):556-575 (in Chinese with English abstract). https://dx.doi.org/10.3969/j.issn.0563-5020.2014.02.015
      Wang, J., Song, C.Z., 2016.Analysis of Metamorphic P-T Conditions and Zircon U-Pb Age for Garnet Pyroxenite in Bengbu Uplift Tectonic.Chinese Journal of Geology, 51(4):1223-1245 (in Chinese with English abstract). https://dx.doi.org/10.12017/dzkx.2016.056
      Wei, C.J., Qian, J.H., Zhou, X.W., 2014.Paleoproterozoic Crustal Evolution of the Hengshan-Wutai-Fuping Region, North China Craton.Geoscience Frontiers, 5(4):485-497. https://dx.doi.org/10.1016/j.gsf.2014.02.008
      Weinberg, R.F., Hasalová, P., 2015.Water-Fluxed Melting of the Continental Crust:A Review.Lithos, 212-215:158-188. https://dx.doi.org/10.1016/j.lithos.2014.08.021
      Wells, P.R.A., 1977.Pyroxene Thermometry in Simple and Complex Systems.Contributions to Mineralogy and Petrology, 62(2):129-139. https://dx.doi.org/10.1007/bf00372872
      Wu, Y.B., Zheng, Y.F., 2004.Genesis of Zircon and Its Constraints on Interpretation of U-Pb Age.Chinese Science Bulletin, 49(16):1589-1604 (in Chinese). https://dx.doi.org/10.1007/bf03184122
      Xu, W.L., Yang, D.B., Pei, F.P., et al., 2006.Age of the Wuhe Complex in the Bengbu Uplift:Evidence from LA-ICP-MS Zircon U-Pb Dating.Geology in China, 33(1):132-137 (in Chinese with English abstract). doi: 10.1007/s11430-009-0099-7
      Zhai, M.G., 2009.Two Kinds of Granulites (HT-HP and HT-UHT) in North China Craton:Their Genetic Relation and Geotectonic Implications.Acta Petrologica Sinica, 25(8):1753-1771 (in Chinese with English abstract). https://www.researchgate.net/publication/283831884_Two_kinds_of_granulites_HT-HP_and_HT-UHT_in_North_China_Craton_Their_genetic_relation_and_geotectonic_implications
      Zhai, M.G., 2015.Precambrian Geology of China.Spring-Verlag, Berlin. https://dx.doi.org/10.1007/978-3-662-47885-1
      Zhai, M.G., Guo, J.H., Li, Y.G., et al., 1995.The Discovery of Archean Retrograde Eclogites in the North China Craton.Chinese Science Bulletin, 40(17):1590-1594 (in Chinese). https://www.researchgate.net/publication/229404412_Late_Paleozoic_retrograded_eclogites_from_within_the_northern_margin_of_the_North_China_Craton_Evidence_for_subduction_of_the_Paleo-Asian_ocean
      Zhai, M.G., Guo, J.H., Yan, Y.H., et al., 1992.Discovery and Preliminary Study of Archean High-Pressure Basic Granulites in North China.Science in China (Series B), (12):1325-1330 (in Chinese). https://www.researchgate.net/publication/289090929_Discovery_of_High-Pressure_Basic_Granulite_Terrain_in_North_China_Archaean_Craton_and_Preliminary_Study
      Zhang, J., Zhao, G.C., Sun, M., et al., 2006.High-Pressure Mafic Granulites in the Trans-North China Orogen:Tectonic Significance and Age.Gondwana Research, 9(3):349-362. https://dx.doi.org/10.1016/j.gr.2005.10.005
      Zhao, G.C., 2014.Precambrian Evolution of the North China Craton.Elsevier, New York. https://dx.doi.org/10.1016/c2012-0-02689-0
      Zhao, G.C., Cawood, P., Lu, L.Z., 1999.Petrology and P-T History of the Wutai Amphibolites:Implications for Tectonic Evolution of the Wutai Complex, China.Precambrian Research, 93(2-3):181-199. https://dx.doi.org/10.1016/s0301-9268(98)00090-4
      Zhao, G.C., Wilde, S.A., Cawood, P.A., et al., 2000.Petrology and P-T Path of the Fuping Mafic Granulites:Implications for Tectonic Evolution of the Central Zone of the North China Craton.Journal of Metamorphic Geology, 18(4):375-391. https://dx.doi.org/10.1046/j.1525-1314.2000.00264.x
      Zhou, L. G., Zhai, M. G., Lu, J. S., et al., 2017. Paleoproterozoic Metamorphism of High-Grade Granulite Facies Rocks in the North China Craton: Study Advances, Questions and New Issues. Precambrian Research, in Press. https: //dx. doi. org/10. 1016/j. precamres. 2017. 06. 025
      Zou, Y., Zhai, M.G., Santosh, M., et al., 2017.High-Pressure Pelitic Granulites from the Jiao-Liao-Ji Belt, North China Craton:A Complete P-T Path and Its Tectonic Implications.Journal of Asian Earth Sciences, 134:103-121. https://dx.doi.org/10.1016/j.jseaes.2016.10.015
      郭素淑, 李曙光, 2009.华北克拉通东南缘古元古代变质和岩浆事件的锆石SHRIMP U-Pb年龄.中国科学(D辑), 39(6):694-699. https://www.cnki.com.cn/qikan-YSXB201104012.html
      靳是琴, 1991.不同区域变质相中钙质角闪石的成分特征.科学通报, 36(11):851-854. http://www.cqvip.com/qk/94252x/199111/552666.html
      刘平华, 刘福来, 王舫, 等, 2015.胶北地体多期变质事件的P-T-t轨迹及其对胶-辽-吉带形成与演化的制约.岩石学报, 31(10):2889-2941. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=ysxb98201510005
      刘贻灿, 王程程, 张品刚, 等, 2015a.华北板块东南缘五河杂岩的麻粒岩相变质、部分熔融与交代作用.地球科学与环境学报, 37(1):1-11. http://mall.cnki.net/magazine/magadetail/XAGX201501.htm
      刘贻灿, 王程程, 张品刚, 等, 2015b.华北东南缘前寒武纪下地壳的生长和变质演化.岩石学报, 31(10):2847-2862. http://www.ysxb.ac.cn/ysxb/ch/reader/view_abstract.aspx?file_no=20151003
      王娟, 盛勇, 卜香萍, 等, 2014.五河杂岩的变质岩石学及P-T条件分析——来自蒙城南ZK02钻孔的研究.地质科学, 49(2):556-575. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=dzkx201402016
      王娟, 宋传中, 2016.蚌埠隆起区石榴辉石岩变质PT轨迹及年代学研究.地质科学, 51(4):1223-1245. doi: 10.12017/dzkx.2016.056
      吴元保, 郑永飞, 2004.锆石成因矿物学研究及其对U-Pb年龄解释的制约.科学通报, 49(16):1589-1604. doi: 10.3321/j.issn:0023-074X.2004.16.002
      许文良, 杨德彬, 裴福萍, 等, 2006.蚌埠隆起区五河杂岩的形成时代:锆石LA-ICP-MS U-Pb定年证据.中国地质, 33(1):132-137. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=zgdizhi200601014
      翟明国.2009.华北克拉通两类早前寒武纪麻粒岩(HT-HP和HT-UHT)及其相关问题.岩石学报, 25(8):1753-1771. http://npd.nsfc.gov.cn/projectDetail.action?pid=40721062
      翟明国, 郭敬辉, 李永刚, 等, 1995.华北太古宙退变质榴辉岩的发现及其含义.科学通报, 40(17):1590-1590. doi: 10.3321/j.issn:0023-074X.1995.17.016
      翟明国, 郭敬辉, 阎月华, 等, 1992.中国华北太古宙高压基性麻粒岩的发现及初步研究.中国科学(B辑), (12):1325-1330. doi: 10.1360/zb1992-22-12-1325
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