Early Permian Tarim Large Igneous Province in Northwest China (塔里木早二叠世大火成岩省)
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References

Bryan, S.E., Ernst, R.E., 2008. Revised definition of Large Igneous Provinces (LIPs). Earth-Science Reviews, 86(1-4): 175-202.

Campbell, I.H., Czamanske, G.K., Fedorenko, V.A., Hill, R.I., Stepanov, V., 1992. Synchronism of the Siberian Traps and the Permian—Triassic boundary. Science, 258(5089): 1760-1763.

Cao, J., Wang, C.-Y., Xing, C.-M., Xu, Y.-G., 2013. Origin of the Early Permian Wajilitag igneous complex and associated Fe—Ti oxide mineralization in the Tarim Large Igneous Province, NW China. Journal of Asian Earth Sciences. http://dx.doi.org/10.1016/j.jseaes.2013.09.014.

Chen, H.-L., Yang, S.-F., Dong, C.-W., Jia, C.-Z., Wei, G.-Q., Wang, Z.-G., 1997a. The discovery of Permian basic rock belt in Tarim Basin and its tectonic meaning. Geochimica, 26: 77-87 (in Chinese with English abstract).

Chen, H.-L., Yang, S.-F., Dong, C.-W., Zu, G.-Q., Jia, C.-Z., Wei, G.-Q., Wang, Z.-G., 1997b. Research of geological thermal event in the Tarim Basin. Chinese Science Bulletin, 47(7):580-584.

Chen, H.-L., Yang, S.-F., Jia, C.-Z., Dong, C.-W., Wei, G.-Q., 1998. Confirmation of Permian intermediate-acid igneous rock zone and a new understanding of tectonic evolution in the northern part of the Tarim Basin. Acta Mineral. Sin., 18(3): 370-376 (in Chinese with English abstract).

Chen, H.-L., Yang, S.-F., Wang, Q.-H., Luo, J.-C., Jia, C.-Z., Wei, G.-Q., Li, Z.-L., He, G.-Y., Hu, A.-P., 2006. Sedimentary response to the Early—Mid Permian basaltic magmatism in the Tarim plate. Geology in China, 33(3): 545-552 (in Chinese with English abstract).

Chen, H.-L., Yang, S.-F., Li, Z.-L., Yu, X., Luo, J.-C., He, G.-Y., Lin, X.-B., Wang, Q.-H., 2009. Spatial and temporal characteristics of Permian Large Igneous Province in Tarim Basin. Xinjiang Petroleum Geology, 30(2): 179-182 (in Chinese with English abstract).

Chen, M.-M., Tian, W., Zhang, Z.-L., Pan, W.-Q., Song, Y., 2010. Geochronology of the Permian basic-intermediate-acidic magma suite from Tarim, Northwest China and its geological implications. Acta Petrol. Sin., 26(2): 559-572 (in Chinese with English abstract).

Chen, Y., Xu, B., Li, Y., 2004. First mid-Neoproterozoic paleomagnetic result from the Tarim Basin (NW China) and their geodynamic implications. Precambrian Res., 133: 271-281.

Coffin, M.F., Eldholm, O., 1991. Large Igneous Provinces: JOI/USSAC workshop report. The University of Texas at Austin Institute for Geophysics Technical Report, p. 114.

Coffin, M.F., Eldholm, O., 1992. Volcanism and continental break-up: A global compilation of Large Igneous Provinces. In: Storey, B.C., Alabaster, T., Pankhurst, R.J. (Eds.), Magmatism and the Causes of Continental Break-up. Geological Society of London Special Publication, 68: 17-30.

Coffin, M.F., Eldholm, O., 1993a. Scratching the surface: Estimating dimensions of large igneous provinces. Geology, 21(6): 515-518.

Coffin, M.F., Eldholm, O., 1993b. Large Igneous Provinces. Scientific American, 269: 42-49.

Coffin, M.F., Eldholm, O., 1994. Large Igneous Provinces: Crustal structure, dimensions, and external consequences. Reviews of Geophysics, 32(1): 1-36.

Condie, K.C., 2001. Mantle Plumes and their Record in Earth History. Cambridge University Press, p. 320.

Deng, X.-L., Shu, L.-S., Zhu, W.-B., 2008. Geochronology of the Precambrian structure magmatism deformation along the Xindi fault in Xinjiang, NW China. Acta Petrologica Sinica, 24: 2800-2808 (in Chinese).

Ernst, R.E., Buchan, K.L., 2003. Recognizing mantle plumes in the geological record. Annual Review of Earth and Planetary Sciences, 16(16): 469-523.

Ernst, R.E., Desnoyers, D.W., 2004. Lessons from Venus for understanding mantle plumes on Earth. Physics of the Earth and Planetary Interiors, 146(1-2): 195-229.

Ernst, R.E., Buchan, K.L., Campbell, I.H., 2005. Frontiers in Large Igneous Province research. Lithos, 79(3-4): 271-297.

Head, J.W., Coffin, M.F., 1997. Large Igneous Provinces: A planetary perspective. In: Mahoney, J.J., Coffin, M.F. (Eds.), Large Igneous Provinces: Continental, Oceanic, and Planetary Flood Volcanism. AGU Geophys. Monogr. Ser., 100: 411-438.

Hu, A.-Q., Jahn, B.M., Zhang, G.-X., Chen, Y.-B., Zhang, Q.-F., 2000. Crustal evolution and Phanerozoic crustal growth in northern Xinjiang: Nd isotopic evidence. Part I. Isotopic characterization of basement rocks. Tectonophysics, 328(1-2): 15-51.

Jahren, A.H., 2002. The biogeochemical consequences of the mid-Cretaceous superplume. In: Condie, K.C., Abbot, D., Des Marais, D.J. (Eds.), Superplume Events in Earth's History: Causes and Effects. J. Geodyn., 34(Special Issue): 177-191.

Ji, Y.-L., Ding, X.-S., Li, X.-C., 2003. Triassic paleogeographyand sedimentary facies of the Kuqa depression, Tarim Basin. Journal of Geomechanics, 19(13): 268-274 (in Chinese with English abstract).

Jia, C.-Z., 1997. Tectonic Characteristics and Oil-Gas, Tarim Basin. Beijing: Petroleum Industry Press (in Chinese).

Jia, C.-Z., Wei, G.-Q., 2002. The tectonic characteristics of the Tarim Basin and its oil-gas potential. Chinese Science Bulletin, 47: 1-8 (in Chinese).

Jia, C.-Z., Yang, S.-F., Chen, H.-L., Wei, G.-Q., 2001. The Evolution of Tethyan Tectonic Domain and Natural Gas Accumulation in the Basin Groups at the Northern Side of Tethyan. Beijing: Petroleum Industry Press (in Chinese).

Jia, C.-Z., Zhang, S.-B., Wu, S.-Z., 2004. Stratigraphy of the Tarim Basin and Adjacent Areas. Beijing: Science Press, pp. 190-289 (in Chinese).

Jiang, C.-Y., Zhang, P.-B., Lu, D.-R., Bai, K.-Y., 2004a. Petrogenesis and magma source of the ultramafic rocks at Wajilitag region, western Tarim Plate in Xinjiang. Acta Petrol. Sin., 20(6): 1433-1444 (in Chinese with English abstract).

Jiang, C.-Y., Jia, C.-Z., Li, L.-C., Zhang, P.-B., Lu, D.-R., Bai, K.-Y., 2004b. Source of the Fe-riched-type high-Mg magma in Mazhartag region, Xinjiang. Acta Geol. Sin., 78(6): 770-780 (in Chinese with English abstract).

Jiang, C.-Y., Zhang, P.-B., Lu, D.-R., Bai, K.-Y., Wang, Y.-P., Tang, S.-H., Wang, J.-H., Yang, C., 2004c. Petrology, geochemistry and petrogenesis of the Kalpin basalts and their Nd, Sr and Pb isotopic compositions. Geol. Rev., 50(5): 492-500 (in Chinese with English abstract).

Kang, Y.-Z., 2008. Characteristic of the Carboniferous—Permian volcanic rocks and hydrocarbon accumulations in two great basins, Xinjiang area. Petrol. Geol. Exper., 30: 321-327 (in Chinese).

Kerr, A.C., 1998. Oceanic plateau formation: A cause of mass extinction and black shale deposition around the Cenomanian—Turonian boundary. Journal of the Geological Society of London, 155: 619-626.

Lei, R.-X., Wu, C.-Z., Chi, G.-X., Chen, G., Gu, L.-X., Jiang, Y.-H., 2012. Petrogenesis of the Palaeoproterozoic Xishankou pluton, northern Tarim Block, Northwest China: Implications for assembly of the supercontinent Columbia. International Geology Review, 54(15): 1829-1842.

Li, D.-X., Yang, S.-F., Chen, H.-L., Cheng, X.-G., Li, K., Jin, X.-L., Li, Z.-L., Li, Y.-Q., Zou, S.-Y., 2014. Late Carboniferous crustal uplift of the Tarim plate and its constraints on the evolution of the Early Permian Tarim Large Igneous Province. Lithos, 204: 36-46.

Li, H.-Y., Huang, X.-L., Li, W.-X., Cao, J., He, P.-L., Xu, Y.-G., 2013. Age and geochemistry of the Early Permian basalts from Qimugan in the southwestern Tarim Basin. Acta Petrologica Sinica, 29(10): 3353-3368 (in Chinese with English abstract).

Li, Y., Su, W., Kong, P., Qian, Y.-X., Zhang, K.-Y., Zhang, M.-L., Chen, Y., Cai, X.-Y., You, D.-H., 2007. Zircon U—Pb ages of the Early Permian magmatic rocks in the Tazhong—Bachu region, Tarim basin by LA-ICP-MS. Acta Petrologica Sinica, 23(5): 1097-1107 (in Chinese with English abstract).

Li, Y.-J., Song, W.-J., Wu, G.-Y., Wang, Y.-F., Li, Y.-P., Zheng, D.-M., 2005. Jinning granodiorite and diorite deeply concealed in the central Tarim Basin. Science China, Series D, 48: 2061-2068 (in Chinese).

Li, Y.-Q., Li, Z.-L., Sun, Y.-L., Chen, H.-L., Yang, S.-F., Yu, X., 2010. PGE and geochemistry of Wajilitag ultramafic cryptoexplosive brecciated rocks from Tarim Basin: Implications for petrogenesis. Acta Petrologica Sinica, 26(11): 3307-3318 (in Chinese with English abstract).

Li, Y.-Q., Li, Z.-L., Sun, Y.-L., Santosh, M., Langmuir, C.H., Chen, H.-L., Yang, S.-F., Chen, Z.-X., Yu, X., 2012a. Platinum-group elements and geochemical characteristics of the Permian continental flood basalts in the Tarim Basin, Northwest China: Implications for the evolution of the Tarim Large Igneous Province. Chemical Geology, 328: 278-289.

Li, Y.-Q., Li, Z.-L., Chen, H.-L., Yang, S.-F., Yu, X., 2012b. Mineral characteristics and metallogenesis of the Wajilitag layered mafic—ultramafic intrusion and associated Fe—Ti—V oxide deposit in the Tarim Large Igneous Province, Northwest China. Journal of Asian Earth Sciences, 49: 161-1749.

Li, Z.-L., Yang, S.-F., Chen, H.-L., Langmuir, C.-H., Yu, X., Lin, X.-B., Li, Y.-Q., 2008. Chronology and geochemistry of Taxinan basalts from the Tarim Basin: Evidence for Permian plume magmatism. Acta Petrologica Sinica, 24(5): 959-970 (in Chinese with English abstract).

Li, Z.-L., Chen, H.-L., Song, B., Li, Y.-Q., Yang, S.-F., Yu, X., 2011. Temporal evolution of the Permian Large Igneous Province in Tarim Basin in northwestern China. Journal of Asian Earth Sciences, 42(5): 917-927.

Li, Z.-X., Li, X.-H., Kinny, P.D., Wang, J., Zhang, S., Zhou, H., 2003. Geochronology of neoproterozoic syn-rift magmatism in the Yangtze Craton, South China and correlations with other continents: Evidence for a mantle superplume that broke up Rodinia. Precambrian Res., 122(1-4): 85-109.

Lin, C.-S., Li, H., Liu, J.-Y., 2012. Major unconformities, tectonostratigraphic framework, and evolution of the superimposed Tarim Basin, Northwest China. Journal of Earth Science, 23(4): 395-407.

Liu, H., Somerville, I.D., Lin, C.-S., Zhou, S.-J., 2016. Distribution of Palaeozoic tectonic superimposed unconformities in the Tarim Basin, NW China: Significance for the evolution of palaeogeomorphology and sedimentary response. Geological Journal, 51:627-651.

Long, X.-P., Yuan, C., Sun, M., Kröner, A., Zhao, G.-C., Wilde, S., Hu, A.-Q., 2011. Reworking of the Tarim Craton by underplating of mantle plume-derived magmas: Evidence from Neoproterozoic granitoids in the Kuluketage area, NW China. Precambrian Res., 187(1-2): 1-14.

Long, X.-P., Yuan, C., Sun, M., Zhao, G.-C., Xiao, W.-J., Wang, Y.-J., Yang, Y.-H., Hu, A.-Q., 2010. Archean crustal evolution of the northern Tarim Craton, NW China: Zircon U—Pb and Hf isotopic constraints. Precambrian Res., 180(3-4): 272-284.

Lu, S.-N., 1992. The Proterozoic tectonic evolution of Kuruketage, Xinjiang. Journal of Tianjin Geology and Mineral Resources, 26-27: 279-292 (in Chinese with English abstract).

Lu, S.-N., Yuan, G.-B., 2003. Geochronology of Early Precambrian magmatic activities in Aketasdhtage, East Altyn Tagh. Acta Geological Sinica, 77: 61-68 (in Chinesewith English abstract).

Lu, S.-N., Li, H.-K., Zhang, C.-L., Niu, G.-H., 2008. Geological and geochronological evidence for the Precambrian evolution of the Tarim Craton and surrounding continental fragments. Precambrian Res., 160(1-2): 94-107.

Maruyama, S., Santosh, M., Zhao, D., 2007. Superplume, supercontinent, and post-perovskite: Mantle dynamics and anti-plate tectonics on the core-mantle boundary. Gondwana Res.,11(1-2): 7-37.

Naldrett, A.J., 2004. Magmatic Sulfide Deposits: Geology, Geochemistry and Exploration. Berlin: Springer.

Qin, K.-Z., Su, B.-X., Sakyi, P.A., Tang, D.-M., Li, X.-H., Sun, H., Xiao, Q.-H., Liu, P.-P., 2011. SIMS zircon U—Pb geochronology and Sr—Nd isotopes of Ni—Cu-bearing mafic—ultramafic intrusions in Eastern Tianshan and Beishan in correlation with flood basalts in Tarim Basin (NW China): Constraints on a ca. 280 Ma mantle plume. American Journal of Science, 311(3): 237-260.

Shangguan, S.-M., Tian, W., Li, X.-H., Guan, P., Pan, M., Chen, M.-M., Pan, W.-Q., 2011. SIMS zircon U—Pb age of a rhyolite layer from the Halahatang area, northern Tarim, NW China: Constraint on the eruption age of major pulse of Tarim flood basalt. Acta Scientiarum Naturalium Universitatis Pekinensis, 47(3): 561-564 (in Chinese with English abstract).

Shu, L.-S., Deng, X.-L., Zhu, W.-B., Ma, D.-S., Xiao, W.-J., 2011. Precambrian tectonic evolution of the Tarim Block, NW China: New geochronological insights from the Quruqtagh domain. Journal of Asian Earth Sciences, 42(5): 774-790.

Sobel, E.R., 1999. Basin analysis of the Jurassic—Lower Cretaceous southwest Tarim Basin, Northwest China. Geological Society of America Bulletin, 111(5): 709-724.

Storey, B.C., 1995. The role of mantle plumes in continental breakup: Case histories from Gondwana land. Nature, 377: 301-308.

Sun, L.-H., Wang, Y.-J., Fan, W.-M., Peng, T.-P., 2007. Petrogenesis and tectonic significances of the diabase dikes in the Bachu area, Xinjiang. Acta Petrologica Sinica, 23(6): 1369-1380.

Tian, W., Campbell, I.H., Allen, C.M., Guan, P., Pan, W.-Q., Chen, M.-M., Yu, H.-J., Zhu, W.-P., 2010. The Tarim picrite-basalt-rhyolite suite, a Permian flood basalt from Northwest China with contrasting rhyolites produced by fractional crystallization and anatexis. Contributions to Mineralogy and Petrology, 160(3): 407-425.

Veevers, J.J., 1990. Tectonic-climatic supercycle in the billion-year plate-tectoniceon: Permian Pangean icehouse alternates with cretaceous dispersed-continents greenhouse. Sediment. Geol., 68: 1-16.

Wang, T.-Y, Liu, J.-K., 1991. A preliminary investigation on formative phase and rifting of Tarim Basin. In: Jia, R.-X. (Ed.), Research of Petroleum Geology of Northern Tarim Basin. Beijing: China University of Geoscience Press, pp. 115-124 (in Chinese).

Wei, X., Xu, Y.-G., 2013. Petrogenesis of the mafic dikes from Bachu and implications for the magma evolution of the Tarim Large Igneous Province, NW China. Acta Petrologica Sinica, 29: 3323-3335 (in Chinese with English abstract).

Wei, X., Xu, Y.-G., Feng, Y.-X., Zhao, J.-X., 2014. Plume-lithosphere interaction in the generation of the Tarim Large Igneous Province, NW China: Geochronological and geochemical constraints. American Journal of Science, 314: 314-356.

Wignall, P.B., 2001. Large igneous provinces and mass extinctions. Earth Science Reviews,53(1): 1-33.

Wu, C.-D., Lin, C.-S., Shen, Y.-P., 2005. Composition of sandstone and heavy minerals implies the provenance of Kuqa depression in Jurassic, Tarim Basin, China. Progress in Natural Science, 15(7): 633-640.

Xia, L.-Q., Xu, X.-Y., Li, X.-M., Ma, Z.-P., Xia, Z.-C., 2012. Reassessment of petrogenesis of Carboniferous—Early Permian rift-related volcanic rocks in the Chinese Tianshan and its neighboring areas. Geoscience Frontiers, 3(4): 445-471.

Xinjiang BGUR (Xinjiang Bureau of Geology and Mineral Resources), 1993. Regional geology of the Xinjiang Uygur Autonomous Region. Beijing: Geol. Publ. House, pp. 1-48 (in Chinese).

Xu, Y.-G., Wei, X., Luo, Z.-Y., Liu, H.-Q., Cao, J., 2014. The Early Permian Tarim Large Igneous Province: Main characteristics and a plume incubation model. Lithos, 204: 20-35.

Yang, S.-F., Chen, H.-L., Dong, C.-W., Jia, C.-Z., Wang, Z.-G., 1994. The research on the Paleozoic volcanism and geothermal event. Report of the National Key Project of Science and Technology, pp. 85-101 (in Chinese).

Yang, S.-F., Chen, H.-L., Dong, C.-W., Jia, C.-Z., Wang, Z.-G., 1996. The discovery of Permian syenite inside Tarim Basin and its geodynamic significance. Geochimica, 25(2): 121-128 (in Chinese with English abstract).

Yang, S.-F., Chen, H.-L., Ji, D.-W., Li, Z.-L., Dong, C.-W., Jia, C.-Z., Wei, G.-Q., 2005. Geological process of Early to Middle Permian magmatism in Tarim Basin and its geodynamic significance. Geol. J. China Univ., 11(4): 504-511 (in Chinese with English abstract).

Yang, S.-F., Li, Z.-L., Chen, H.-L., Chen, W., Yu, X., 2006a. 40Ar-39Ar dating of basalts from Tarim Basin, NW China and its implication to a Permian thermal tectonic event. J. Zhejiang Univ.-SCI (A), 7(Suppl. II): 320-324.

Yang, S.-F., Li, Z.-L., Chen, H.-L., Xiao, W.-J., Yu, X., Lin, X.-B., Shi, X.-G., 2006b. Discovery of a Permian quartz syenitic porphyritic dike from the Tarim Basin and its tectonic implications. Acta Petrologica Sinica, 22(5): 1405-1412 (in Chinese with English abstract).

Yang, S.-F., Li, Z.-L., Chen, H.-L., Santosh, M., Dong, C.-W., Yu, X., 2007a. Permian bimodal dike of Tarim Basin, NW China: Geochemical characteristics and tectonic implications. Gondwana Res., 12(1-2): 113-120.

Yang, S.-F., Yu, X., Chen, H.-L., Li, Z.-L., Wang, Q.-H., Luo, J.-C., 2007b. Geochemical characteristics and petrogenesis of Permian Xiaohaizi ultrabasic dike in Bachu area, Tarim Basin. Acta Petrologica Sinica, 23(5): 1087-1096 (in Chinese with English abstract).

Yu, X., 2009. Magma Evolution and Deep Geological Processes of Early Permian Tarim Large Igneous Province. Ph.D. Thesis, Zhejiang University (in Chinese with English abstract).

Yu, X., Chen, H.-L., Yang, S.-F., Li, Z.-L., Wang, Q.-H., Lin, X.-B., Xu, Y., Luo, J.-C., 2009. Geochemical features of Permian basalts in Tarim Basin and compared with Emeishan LIPs. Acta Petrologica Sinica, 25(6): 1492-1498 (in Chinese with English abstract).

Yu, X., Chen, H.-L., Yang, S.-F., Li, Z.-L., Wang, Q.-H., Li, Z.-H., 2010. Distribution characters of Permian basalts and their geological significance in the Kalpin area, Xinjiang. J. Stratigr., 34(2): 127-134 (in Chinese with English abstract).

Yu, X., Yang, S.-F., Chen, H.-L., Chen, Z.-Q., Li, Z.-L., Batt, G.E., Li, Y.-Q., 2011. Permian flood basalts from the Tarim Basin, Northwest China: SHRIMP zircon U—Pb dating and geochemical characteristics. Gondwana Res., 20(2-3): 485-497.

Zhan, S., Chen, Y., Xu, B., Wang, B., Faure, M., 2007. Late Neoproterozoic paleomagnetic results from the Sugetbrak Formation of the Aksu area, Tarim Basin (NW China) and their implications to paleogeographic reconstructions and the snowball Earth hypothesis. Precambrian Res., 154: 143-158.

Zhang, C.-L., Dong, Y.-G., Zhao, Y., 2003. Geochemistry of Meso-Proterozoic volcanites in western Kunlun: Evidence for the plate tectonic evolution. Acta Geologica Sinica, 77:237-245.

Zhang, C.-L., Li, X.-H., Li, Z.-X., Lu, S.-N., Ye, H.-M., Li, H.-M., 2007a. Neoproterozoic ultramafic—mafic-carbonatite complex and granitoids in Quruqtagh of northeastern Tarim Block, Western China: Geochronology, geochemistry and tectonic implications. Precambrian Res., 152: 149-169.

Zhang, C.-L., Li, Z.-X., Li, X.-H., Ye, H.-M., 2007b. Early Palaeoproterozoic high-K intrusivecomplex in southwestern Tarim Block, NW China: Age, geochemistry and implications for the Paleoproterozoic tectonic evolution of Tarim. Gondwana Res., 12:101-112.

Zhang, C.-L., Li, X.-H., Li, Z.-X., Ye, H.-M., Li, C.-N., 2008. A Permian layered intrusive complex in the western Tarim Block, northwestern China: Product of a ca. 275-Ma mantle plume. J. Geol., 116(3): 269-287.

Zhang, C.-L., Xu, Y.-G., Li, Z.-X., Wang, H.-Y., Ye, H.-M., 2010a. Diverse Permian magmatism in the Tarim Block, NW China: Genetically linked to the Permian Tarim mantle plume. Lithos, 119(3-4): 537-552.

Zhang, C.-L., Li, Z.-X., Li, X.-H., Xu, Y.-G., Zhou, G., Ye, H.-M., 2010b. A Permian large igneous province in Tarim and Central Asian orogenic belt, NW China: Results of a ca. 275 Ma mantle plume. Geol. Soc. Am. Bull., 122 (11-12): 2020-2040.

Zhang, C.-L., Yang, D.-S., Wang, H.-Y., Takahashi, Y., Ye, H.-M., 2011. Neoproterozoic ultramfic—mafic layered intrusion in Quruqtagh of northeastern Tarim Block, NW China: Two phases of mafic igneous activity of different mantle sources. Gondwana Res., 19:177-190.

Zhang, C.-L., Li, H.-K., Santosh, M., Li, Z.-X., Zou, H.-B., Wang, H.-Y., Ye, H.-M., 2012. Precambrian evolution and cratonization of the Tarim Block, NW China: Petrology, geochemistry, Nd-isotopes and U—Pb zircon geochronology from Archaean gabbro-TTG-potassic granite suite and Paleoproterozoic metamorphic belt. Journal of Asian Earth Sciences, 47: 5-20.

Zhang, C.-L., Zou, H.-B., Li, H.-K., 2013. Tectonic framework and evolution of the Tarim Block, NW China. Gondwana Res., doi.org/10.1016/j.gr.2012.05.009.

Zhang, D.-Y., Zhang, Z.-C., Santosh, M., Cheng, Z.-G., He, H., Kang, J.-L., 2013. Perovskite and baddeleyite from kimberlitic intrusions in the Tarim Large Igneous Province signal onset of an end-Carboniferous mantle plume. Earth Planet. Sci. Lett., 361: 238-248.

Zhang, H.-A., Li, Y.-J., Wu, G.-Y., 2009. Isotopic geochronology of Permian igneous rocks in the Tarim Basin. Chinese Journal of Geology, 44: 137-158 (in Chinese with English abstract).

Zhang, Z.-Y., Zhu, W.-B., Shu, L.-S., Su, J.-B., Zheng, B.-H., 2009. Neoproterozoic ages of the Kuluketage diabase dike swarm in Tarim, NW China, and its relationship to the breakup of Rodinia. Geological Magazine, 146: 150-154.

Zhang, Y.-T., Liu, J.-Q., Guo, Z.-F., 2010. Permian basaltic rocks in the Tarim Basin, NW-China: Implications for plume-lithosphere interaction. Gondwana Res., 18: 596-610.

Zhao, G.-C., Cawood, P.A., 2012. Precambrian geology of China. Precambrian Res., 222-223:13-45.

Zhou, M.-F., Zhao, J.-H., Jiang, C.-Y., 2009. OIB-like, heterogeneous mantle sources of Permian basaltic magmatism in the western Tarim Basin, NW China: Implications for a possible Permian Large Igneous Province. Lithos, 113: 583-594

Zhu, W.-B., Zhang, Z.-Z., Shu, L.-S., Lu, H.-F., Sun, J.-B., Yang, W., 2008. SHRIMP U—Pb zircon geochronology of Neoproterozoic Korla mafic dikes in the northern Tarim Block, NW China: Implications for the long-lasting breakup process of Rodinia. Journal of the Geological Society, 165: 887-890.

Zhu, Y.-X., Jin, Z.-J., Lin, C.-S., Lv, X.-X., Xie, Q.-L., 2005. Relations between the early Permian magmatic rocks and hydrocarbon accumulation in the central Tarim. Petroleum Geology and Experiment, 27(1): 50-54.