Global palaeo-plate reconstruction and lithofacies palaeogeography in the Silurian
Wang Honghao1,2 Li Jianghai1,2 Sun Weitong1,2 Li Weibo1,2
1 The Key Laboratory of Orogenic Belts and Crustal Evolution,Ministry of Education,School of Earth and Space Sciences,Peking University,Beijing 100871 2 Institute of Oil and Gas,Peking University,Beijing 100871
Abstract Based on the method of palaeomagnetism,we reconstructed the global plates in Silurian. Furthermore,we added some updated data such as the global tectonic setting,global current system,distribution of climate zone,lithofacies palaeogeography and distribution of source rocks in Silurian to the map of global palaeo-plate reconstruction,so the map of global palaeogeography and the map of global lithofacies and distribution of source rocks in Silurian were compiled. The most important characteristics of global plate tectonics in Silurian is the assembly of Laurussia continent and the long-term breakup event occurred in the north of Gondwana. The global scale transgression events in Early-Middle Silurian resulted in epicontinental sea widely developing in the periphery of each plate,so carbonate platform widely distributed in the periphery of Gondwana and most areas of Siberia and Laurussia in Silurian. High temperature and a wide range of epicontinental sea made contribution to the prosperous of creatures in Silurian,which offered abundant petrologen for the development of source rocks. In addition,the effects of upwelling current and transportation of large rivers in Gondwana resulted in the development of thick black shales in the west of Gondwana(North Africa and Arabia),which is the most important source rocks in Silurian.
About author: Wang Honghao,born in 1989,is a Ph.D. candidate in School of Earth and Space Sciences,Peking University. He is mainly engaged in global palaeo-plate reconstruction. E-mail: whhpeking@163.com.
Cite this article:
Wang Honghao, Li Jianghai, Sun Weitong et al. Global palaeo-plate reconstruction and lithofacies palaeogeography in the Silurian[J]. JOPC, 2016, 18(2): 185-196.
Wang Honghao, Li Jianghai, Sun Weitong et al. Global palaeo-plate reconstruction and lithofacies palaeogeography in the Silurian[J]. JOPC, 2016, 18(2): 185-196.
方大钧,沈忠悦. 2001. 塔里木地块各时代视磁极及板块漂移. 浙江大学学报(理学版),28(1):100-106.[Fang D J,Shen Z Y. 2001. Phanerozoic apparent polar-wander paths of Tarim and plate motion. Journal of Zhejiang Universiy(Science Edition),28(1):100-106] 方大钧,金国海,姜莉萍,王朋岩,王兆梁. 1996. 塔里木盆地古生代古地磁结果及其构造地质意义. 地球物理学报,39(4):522-532.[Fang D J,Jin G H,Jiang L P,Wang P Y,Wang Z L. 1996. Paleozoic paleomagnetic results and the tectonic significance of Tarim Plate. Acta Geophysica Sinica,39(4):522-532] 方大钧,沈忠悦,王朋岩. 2001. 塔里木地块古地磁数据表. 浙江大学学报(理学版),28(1):92-99.[Fang D J,Shen Z Y,Wang P Y. 2001. Paleomagnetic data of Tarim Block. Journal of Zhejiang Universiy(Science Edition),28(1):92-99] 高俊,钱青,龙灵利,张喜,李继磊,苏文. 2009. 西天山的增生造山过程. 地质通报,28(12):1804-1816.[Gao J,Qian Q,Long L L,Zhang X,Li J L,Su W. 2009. Accretionary orogenic process of Western Tianshan,China. Geological Bulletin of China,28(12):1804-1816] 黄宝春,周烑秀,朱日祥. 2008. 从古地磁研究看中国大陆形成与演化过程. 地学前缘,15(3):348-359.[Huang B C,Zhou Y X,Zhu R X. 2008. Discussions on Phanerozoic evolution and formation of continental China,based on paleomagnetic studies. Earth Science Frontiers,15(3):348-359] 黄宝春,朱日祥,Otofuji Y,杨振宇. 2000. 华北等中国主要地块早古生代早期古地理位置探讨. 科学通报,45(4):337-345.[Huang B C,Zhu R X,Otofuji Y,Yang Z Y. 2000. The Early Paleozoic paleogeography of the North China block and the other major blocks of China. Chinese Science Bulletin,45(4):337-345] 李江海,姜洪福. 2013. 全球古板块再造、岩相古地理及古环境图集. 北京:地质出版社.[Li J H,Jiang H F. 2013. World Atlas of Plate Tectonic Reconstruction,Lithofacies Paleogeography and Plaeoenvironment. Beijing:Geological Publishing House] 李江海,王洪浩,李维波,周肖贝. 2014. 显生宙全球古板块再造及构造演化. 石油学报,35(2):207-218.[Li J H,Wang H H,Li W B,Zhou X B. 2014. Discussion on global tectonics evolution from plate reconstruction in Phanerozoic. Acta Petrolei Sinica,35(2):207-218] 刘宝珺,许效松,潘杏南,黄慧琼,徐强. 1993. 中国南方古大陆沉积地壳演化与成矿. 北京:科学出版社.[Liu B J,Xu X S,Pan X N,Huang H Q,Xu Q. 1993. Paleocontinental Sedimentary Crustal Evolution and Mineralization in South China. Beijing:Science Press] 马永生,陈洪德,王国力. 2009. 中国南方层序地层与古地理. 北京:科学出版社.[Ma Y S,Chen H D,Wang G L. 2009. Sequence and Palaeogeography in South China. Beijing:Science Press] 王鸿祯. 1985. 中国古地理图集. 北京:地图出版社.[Wang H Z. 1985. Atlas of the Palaeogeography of China. Beijing:Cartographic Publishing House] 杨振宇,马醒华,孙知明,黄宝春,周烑秀. 1998. 华北地块显生宙古地磁视极移曲线与地块运动. 中国科学(D 辑),28(1):44-56.[Yang Z Y,Ma X H,Sun Z M,Huang B C,Zhou Y X. 1998. Apparent polar wander path and tectonic movement of the North China Block in Phanerozoic. Science in China(Series D),28(1):44-56] 翟永建,周烑秀. 1989. 华南和华北陆块显生宙的古地磁及构造演化. 地球物理学报,32(3):292-307.[Zhai Y J,Zhou Y X. 1989. Paleomagnetism and tectonic evolutions of North and South China Blocks since the Phanerozoic. Acta Geophysica Sinica,32(3):292-307] 朱日祥,杨振宇,马醒华,吴汉宁,孟自芳,方大钧,黄宝春. 1998. 中国主要地块显生宙古地磁视极移曲线与地块运动. 中国科学(D 辑),28(增):1-16.[Zhu R X,Yang Z Y,Ma X H,Wu H N,Meng Z F,Fang D J,Huang B C. 1998. Paleomagnetic constraints on the tectonic history of the major blocks of China duing the Phanerozoic. Science in China(Series D),28(supp.):1-16].
Afa T,Pruner P,Chadima M,torch P. 2007. Structural evolution of the Prague synform(Czech Republic)during Silurian times:An AMS,rock magnetism,and paleomagnetic study of the Svat Jan pod Skalou dikes. Consequences for the nappes emplacement. Geological Society of America Special Papers,423:249-265. Alexyutin M V,Bachtadse V,Alexeiev D V,Nikitina O I. 2005. Palaeomagnetism of Ordovician and Silurian rocks from the Chu-Yili and Kendyktas mountains,south Kazakhstan. Geophysical Journal International,162(2):321-331. Alsharhan A S,Salah M G. 1997. A common source rock for Egyptian and Saudi hydrocarbons in the Red Sea. AAPG Bulletin,81(10):1640-1659. Antoshkina A I. 2007. Silurian sea-level and biotic events in the Timan-northern Ural region: Sedimentological aspects. Acta Palaeontologica Sinica,46:23. Artyushkov E V,Chekhovich P A. 2001. The East Siberian basin in the Silurian:Evidence for no large-scale sea-level changes. Earth and Planetary Science Letters,193(1):183-196. Blakey R C. 2008. Gondwana paleogeography from assembly to breakup:A 500my odyssey. Resolving the late Paleozoic ice. Age in Time and Space. Spec. Pap. Geol. Soc. Am.,441:1-28. Boote D R D,Clark-Lowes D D,Traut M W. 1998. Palaeozoic petroleum systems of North Africa. Geological Society,London,Special Publications,132(1):7-68. Brett C E,Ferretti A,Histon K,Schnlaub H P. 2009. Silurian sequence stratigraphy of the Carnic Alps,Austria. Palaeogeography,Palaeoclimatology,Palaeoecology,279(1):1-28. Buss S R,Fillmore J P. 2001. Spherical averages and applications to spherical splines and interpolation. ACM Transactions on Graphics,20(2):95-126. Cocks L R M,Fortey R A. 1990. Biogeography of Ordovician and Silurian faunas. Geological Society,London,Memoirs,12(1):97-104. Cocks L R M,Torsvik T H. 2007. Siberia,the wandering northern terrane,and its changing geography through the Palaeozoic. Earth-Science Reviews,82(1):29-74. Cocks L R M,Torsvik T H. 2011. The Palaeozoic geography of Laurentia and western Laurussia:A stable craton with mobile margins. Earth-Science Reviews,106(1):1-51. Crowell J C. 1981. Early Paleozoic glaciation and Gondwana drift. Geodynamics Series,2:45-49. Emiliani C. 1992. Planet Earth: Cosmology,Geology,and the Evolution of Life and Environment. Cambridge: Cambridge University Press. Eyles N. 1993. Earths glacial record and its tectonic setting. Earth-Science Reviews,35(1):1-248. Ford D,Golonka J. 2003. Phanerozoic paleogeography,paleoenvironment and lithofacies maps of the circum-Atlantic margins. Marine and petroleum geology,20(3):249-285. Fortey R A,Cocks L R M. 2003. Palaeontological evidence bearing on global Ordovician-Silurian continental reconstructions. Earth-Science Reviews,61(3):245-307. Golonka J. 2000. Cambrian-Neogene Plate Tectonic Maps. Wydawn:Uniwersytetu Jagiellońskiego. Golonka J. 2011. Phanerozoic palaeoenvironment and palaeolithofacies maps of the Arctic region. Geological Society,London,Memoirs,35(1):79-129. Guiraud R,Bosworth W,Thierry J,Delplanque A. 2005. Phanerozoic geological evolution of Northern and Central Africa:An overview. Journal of African Earth Sciences,43(1):83-143. Haq B U,Schutter S R. 2008. A chronology of Paleozoic sea-level changes. Science,322:64-68. Jeleńska M,Bakhmutov V,Konstantinienko L. 2005. Paleomagnetic and rock magnetic data from the Silurian succession of the Dniester basin,Ukraine. Physics of the Earth and Planetary Interiors,149(3):307-320. Johnson M E. 2006. Relationship of Silurian sea-level fluctuations to oceanic episodes and events. GFF,128(2):115-121. Jupp P E,Kent J T. 1987. Fitting smooth paths to speherical data. Applied Statistics,36(1):34-46. Klemme H D,Ulmishek G F. 1991. Effective petroleum source rocks of the world:Stratigraphic distribution and controlling depositional factors(1). AAPG Bulletin,75(12):1809-1851. Komen M I,Yarmolyuk V V,Kravchinsky V A. 2010. Phanerozoic hot spot traces and paleogeographic reconstructions of the Siberian continent based on interaction with the African large low shear velocity province. Earth-Science Reviews,102(1):29-59. Lazauskiene J,Sliaupa S,Brazauskas A,Musteikis P. 2003. Sequence stratigraphy of the Baltic Silurian succession:Tectonic control on the foreland infill. Geological Society,London,Special Publication,208(1):95-115. le Hérissé A,Gourvennec R,Wicander R. 1997. Biogeography of Late Silurian and Devonian acritarchs and prasinophytes. Review of Palaeobotany and Palynology,98(1):105-124. Levashova N M,Degtyarev K E,Bazhenov M L. 2012. Oroclinal bending of the Middle and Late Paleozoic volcanic belts in Kazakhstan:Paleomagnetic evidence and geological implications. Geotectonics,46(4):285-302. Li Z X,Bogdanova S V,Collins A S,Davidson A,Waele B D,Ernst R E,Fitzsimons I C W,Fuck R A,Gladkochub D P,Jacobs J,Karlstrom K E,Lu S,Natapov L M,Pease V,Pisarevsky S A,Thrane K,Vernikovsky V. 2008. Assembly,configuration,and break-up history of Rodinia:A synthesis. Precambrian Research,160(1):179-210. Loydell D K. 1998. Early Silurian sea-level changes. Geological Magazine,135(4):447-471. Lüning S,Craig J,Loydell D K,torch P,Fitches B. 2000. Lower Silurianhot shales in North Africa and Arabia:Regional distribution and depositional model. Earth-Science Reviews,49(1):121-200. Mahmoud M D,Vaslet D,Husseini M I. 1992. The Lower Silurian Qalibah Formation of Saudi Arabia:An important hydrocarbon source rock(1). AAPG Bulletin,76(10):1491-1506. McGillivray J G,Husseini M I. 1992. The Paleozoic petroleum geology of central Arabia(1). AAPG Bulletin,76(10):1473-1490. Metelkin D V,Vernikovsky V A,Kazansky A Y,Bogolepova O K,Gubanov A P. 2005. Paleozoic history of the Kara microcontinent and its relation to Siberia and Baltica:Paleomagnetism,paleogeography and tectonics. Tectonophysics,398(3):225-243. Metelkin D V,Vernikovsky V A,Kazansky A Y. 2011. Siberia-From Rodinia to Eurasia. In:Closson D. Tectonics. InTech,103-136. DOI:10.5772/13660. Metelkin D V,Vernikovsky V A,Kazansky A Y. 2012. Tectonic evolution of the Siberian paleocontinent from the Neoproterozoic to the Late Mesozoic:Paleomagnetic record and reconstructions. Russian Geology and Geophysics,53(7):675-688. Munnecke A,Calner M,Harper D A T. 2010. How does sea level correlate with sea-water chemistry?A progress report from the Ordovician and Silurian. Palaeogeography,Palaeoclimatology,Palaeoecology,296(3):213-216. Nance R D,Gutiérrez-Alonso G,Keppie J D,Linnemann U,Murphy J B,Quesada C,Strachan R A,Woodcock N H. 2012. A brief history of the Rheic Ocean. Geoscience Frontiers,3(2):125-135. Nikishin A M,Ziegler P A,Stephenson R A,Cloetingh S A P L,Furne A V,Fokin P A,Ershov A V,Bolotov S N,Korotaev M V,Alekseev A S,Gorbachev V I,Shipilov E V,Lankreijer A,Bembinova E Y,Shalimov I V. 1996. Late Precambrian to Triassic history of the East European Craton:Dynamics of sedimentary basin evolution. Tectonophysics,268(1):23-63. Pisarevsky S. 2005. New edition of the global paleomagnetic database. Eos,Transactions American Geophysical Union,86(17):170-170. Retallack G J. 2009. Cambrian,Ordovician and Silurian pedostratigraphy and global events in Australia. Australian Journal of Earth Sciences,56(4):571-586. Roberts D. 2003. The Scandinavian Caledonides:Event chronology,palaeogeographic settings and likely modern analogues. Tectonophysics,365(1):283-299. Ross C A,Ross J R P. 1996. Silurian sea-level fluctuations. Geological Society of America Special Papers,306:187-192. Scotese C R. 2006. Plate tectonic maps and continental drift animations. PALEOMAP Project,Arlington,Tex. http://www.scotese.com. Shatsillo A V,Paverman V I,Pavlov V E. 2007. Middle Paleozoic segment of the apparent polar wander path from the Siberian platform:New paleomagnetic evidence for the Silurian of the Nyuya-Berezovskii facial province. Izvestiya,Physics of the Solid Earth,43(10):880-889. Soper N J,Strachan R A,Holdsworth R E,Gayer R A,Greiling R O. 1992. Sinistral transpression and the Silurian closure of Iapetus. Journal of the Geological Society,149(6):871-880. Stampli G M,Borel G D. 2002. A plate tectonic model for the Paleozoic and Mesozoic constrained by dynamic plate boundaries and restored synthetic oceanic isochrones. Earth and Planetary Science Letters,196(1/2):17-33. Torsvik T H,Cocks L R M. 2009. The Lower Palaeozoic palaeogeographical evolution of the northeastern and eastern peri-Gondwanan margin from Turkey to New Zealand. Geological Society,London,Special Publications,325(1):3-21. Torsvik T H,Cocks L R M. 2011. The Palaeozoic palaeogeography of central Gondwana. Geological Society,London,Special Publications,357(1):137-166. Torsvik T H,Smethurst M A. 1999. Plate tectonic modelling:Virtual reality with GMAP. Computers & Geosciences,25(4):395-402. Torsvik T H,Smethurst M A,Burke K,Steinberger B. 2006. Large igneous provinces generated from the margins of the large low-velocity provinces in the deep mantle. Geophysical Journal International,167(3):1447-1460. Torsvik T H,Smethurst M A,Meert J G,Van der Voo R,McKerrow W S,Brasier M D,Sturt B A,Walderhaug H J. 1996. Continental break-up and collision in the Neoproterozoic and Palaeozoic:A tale of Baltica and Laurentia. Earth-Science Reviews,40(3):229-258. Torsvik T H,Steinberger B,Cocks L R M,Burke K. 2008. Longitude:Linking Earths ancient surface to its deep interior. Earth and Planetary Science Letters,276(3):273-282. Torsvik T H,Van der Voo R,Preeden U,Niocaill C M,Steinberger B,Doubrovine P V,van Hinsbergen D J J,Domeier M,Gaina C,Tohver E,Meert J G,McCausland P J A,Cocks L R M. 2012. Phanerozoic polar wander,palaeogeography and dynamics. Earth-Science Reviews,114(3):325-368. Trabucho-Alexandre J,Hay W W,de Boer P L. 2012. Phanerozoic environments of black shale deposition and the Wilson Cycle. Solid Earth,3:29-42. Van der Voo R. 1990. the reliability of paleomagnetic data. Tectonophysics,184(1):1-9. Van der Voo R. 2005. Paleomagnetism of the Atlantic,Tethys and Iapetus Oceans. Cambridge:Cambridge University Press,1-411. van Staal C R,Dewey J F,Mac Niocaill C,McKerrow W S. 1998. The Cambrian-Silurian tectonic evolution of the northern Appalachians and British Caledonides:History of a complex,west and southwest Pacific-type segment of Iapetus. Geological Society,London,Special Publications,143(1):197-242. Veevers J J. 2004. Gondwanaland from 650-500Ma assembly through 320Ma merger in Pangea to 185-100Ma breakup:Supercontinental tectonics via stratigraphy and radiometric dating. Earth-Science Reviews,68(1):1-132. Vérard C,Tait J,Glen R. 2005. Paleomagnetic study of Siluro-Devonian volcanic rocks from the central Lachlan Orogen:Implications for the apparent pole wander path of Gondwana. Journal of Geophysical Research:Solid Earth(1978-2012),110(B6). Vérard C. 2009. Paleomagnetic study of the Late Silurian-Early Devonian Mt Daubeny Formation from the Broken Hill area,New South Wales. Australian Journal of Earth Sciences,56(5):687-710. Williams S E,Müller R D,Landgrebe T C W,Whittaker J M. 2012. An open-source software environment for visualizing and refining plate tectonic reconstructions using high-resolution geological and geophysical data sets. GSA Today,22(4):4-9.张西娟