安太庠. 1987. 中国南部早古生代牙形石[M]. 北京:北京大学出版社,16-83. 陈朋飞,詹仁斌. 2006. 扬子区下、中奥陶统大湾组及其同期地层[J]. 地层学杂志,30(1):11-20. 陈旭,阮亦萍,彭善池,等. 2001. 中国古生代气候演变[M]. 北京:科学出版社,14-20. 董卫平. 1997. 贵州省岩石地层[M]. 湖北武汉:中国地质大学出版社,48-148. 冯增昭,彭勇民,金振奎,等. 2001. 中国南方早奥陶世岩相古地理[J]. 古地理学报,3(2):11-22. 高振家,陈克强,魏家庸. 2000. 中国岩石地层辞典[M]. 湖北武汉:中国地质大学出版社,1-628. 葛祥英,牟传龙,周恳恳,等. 2013. 湖南地区晚奥陶世桑比期—凯迪期早期沉积特征及沉积模式[J]. 古地理学报,15(1):59-68. 胡修棉,王成善,李祥辉,等. 2006. 藏南上白垩统深水海相红层:岩石类型、沉积环境与颜色成因[J]. 中国科学(D辑),36(9):811-821. 廖翰卿,刘建波,吴荣昌,等. 2013. 华南上扬子区下奥陶统红花园组顶界的穿时性[J]. 古生物学报,52(1):15-31. 刘建波. 2006. 华南早奥陶世生物大辐射期间的海平面变化[A]. 见:戎嘉余(主编). 生物的起源、辐射与多样性演变:华夏化石记录的启示[M]. 北京:科学出版社,335-360,875-877. 刘建波,江崎洋一,足立奈津子,等. 2013. 华南早奥陶世生物礁:类型和分布[A]. 见: 中国石油大学(北京). 第一届国际古地理学会议论文摘要集[C]. 中国石油大学(北京):54-55. 穆恩之,朱兆玲,陈均远,等. 1979. 西南地区的奥陶系[A]. 见:中国科学院南京地质与古生物研究所. 西南地区碳酸盐岩生物地层[M]. 北京:科学出版社,108-154. 苏文博. 2001. 上扬子地台东南缘奥陶纪层序地层学及海平面变化研究[M]. 北京:地质出版社,1-106. 汪啸风,陈旭,陈孝红,等. 1996a. 中国地层典·奥陶系[M]. 北京:地质出版社,1-126. 汪啸风,李志明,陈建强,等. 1996b. 华南早奥陶世海平面变化及其对比[J]. 华南地质与矿产,(3):1-11. 王英华,张秀莲,迟元苓. 1990. 化石岩石学[M]. 北京:中国矿业大学出版社,1-123. 温俊君,刘建波. 2009. 碳酸盐岩生屑颗粒定量研究:点计数法的理论分析与应用[J]. 古地理学报,11(5):581-592. 吴荣昌. 2011. 华南扬子区下、中奥陶统紫台组的牙形类动物群[D]. 江苏南京:中国科学院南京地质古生物研究所,5-50. 吴荣昌,王志浩. 2008. 安徽石台下、中奥陶统紫台组的牙形刺[J]. 微体古生物学报, 25(4):364-383. 吴荣昌,詹仁斌,李贵鹏,等. 2007. 浅论华南扬子区下、中奥陶统紫台组[J]. 地层学杂志,31(4):325-332. 张允白. 2003. 扬子陆块中奥陶世早期鹦鹉螺多样性及古水深学研究[D]. 江苏南京:中国科学院南京地质古生物研究所,7-32. 张允白,周志毅,张俊明. 2002. 扬子陆块早奥陶世末期—中奥陶世Darriwilian初期沉积分异[J]. 地层学杂志,26(4):302-314. 周名魁,王汝植,李志明,等. 1993. 中国南方奥陶—志留纪岩相古地理与成矿作用[M]. 北京:地质出版社,1-111. 周志毅,袁文伟,周志强. 2006. 华南陆块奥陶纪三叶虫的辐射[A]. 见:戎嘉余(主编). 生物的起源、辐射与多样性演变:华夏化石记录的启示[M]. 北京:科学出版社,197-213. 朱忠德,胡明毅,肖传桃,等. 1995. 鄂西南湘西北地区上震旦统至奥陶系石油地质研究[M]. 北京:地质出版社,29-42. 中国科学院南京地质古生物研究所. 1974. 西南地区地层古生物图册[M]. 北京:科学出版社, 23-31. Berner R A. 2006. Geocarbsulf:Acombined model for Phanerozoic atmospheric O2 and CO2[J]. Geochimica et Cosmochimica Acta,70:5653-5664. Chen X,Rong J Y,Wang X F, et al. 1995. Correlation of the Ordovician rocks of China: Charts and Explanatory Notes[J]. International Union of Geological Sciences Publication,31:1-104. Flügel E. 2010. Microfacies of Carbonate Rocks:Analysis,Interpretation and Application(2nd Edition)[M]. Springer-Verlag Berlin Heidelberg:1-929. Kiipli E,Kallaste T,Kiipli T. 2008. Hydrodynamic control of sedimentation in the Ordovician(Arenig-Caradoc)Baltic Basin[J]. Lethaia,41:127-137. Kiipli E,Kiipli T,Kallaste T, et al. 2010. Distribution of phosphorus in the Middle and Upper Ordovician Baltoscandian carbonate paleobasin[J]. Estonian Journal of Earth Science,59(4):247-255. Liu J B. 1998. Lower and Middle Ordovician cyclostratigraphy and radiolarian fauna in North China[D]. Osaka City University: 1-193. Liu J,Zhan R. 2009. Temporal distribution of diagnostic biofabrics in the Lower and Middle Ordovician in North China: Clues to the geobiology of the Great Ordovician Biodiversification Event[J]. Acta Geologica Sinica(English Edition),83(3):513-523. Nielsen A T. 2004. Ordovician sea level changes: A Baltoscandian perspective[A]. In: Webby B D,Paris F,Droser M L,et al(eds). The Great Ordovician Biodiversification Event[C]. New York:Columbia University Press,84-93. Ross J R P,Ross C A. 1992. Ordovician sea level fluctuations[A]. In:Webby B D,Laurie J R(eds). Global Perspectives on Ordovician Geology[M]. Balkema,Rotterdam:327-335. Schlager W. 1981. The paradox of drowned reefs and carbonate platforms[J]. Bulletin of the Geological Society of America,92(4):197-211. Sepkoski J J Jr. 1979. A kinetic model of Phanerozoic taxonomic diversity Ⅱ:Early Phanerozoic families and multiple equilibria[J]. Paleobiology,5(3),222-251. Sepkoski J J Jr. 1981. A factor analytic description of the Phanerozoic marine fossil record[J]. Paleobiology,7(1): 36-53. Turvey S T,Zhou Z Y. 2004. Arenig trilobite association from the Jiangnan Transitional Belt of Northern Hunan,China[J]. Journal of Asian Earth Sciences,23:47-61. Webby B D. 2004. Introduction[A]. In:Webby B D,Paris F,Droser M L, et al(eds). The Great Ordovician Biodiversification Event[M]. New York:Columbia University Press,1-37. Webby B D,Cooper R A,Bergstrm S M, et al. 2004. Stratigraphic framework and time slices[A]. In:Webby B D,Paris F,Droser M L,et al(eds). The Great Ordovician Biodiversification Event[M]. New York:Columbia University Press,41-47. Wilde P. 1987. Model of progressive ventilation of the Late Precambrian-Early Paleozoic ocean[J]. American Journal of Science,287:442-459. Wu R C,Svend S,Wang Z H. 2012. Conodontophorid biodiversification during the Ordovician in South China[J]. Lethaia,45:432-442. Yan K,Servais T,Li J, et al. 2011. Biodiversity patterns of Early-Middle Ordovician marine microphytoplankton in South China[J]. Palaeogeography,Palaeoclimatology,Palaeoecology,299(1):318-334. Young G C,Laurie J R. 1996. An Australian Phanerozoic Timescale[M]. Melbourne:Oxford University Press,1-286. Zhan R B,Rong J Y,Cheng J H, et al. 2005. Early-Mid Ordovician brachiopod diversification in South China[J]. Science in China Series D:Earth Sciences,48(5):662-675. Zhan R B,Jin J S,Rong J Y. 2006. β ̄diversity fluctuations in Early-Mid Ordovician brachiopod communities of South China[J]. Geological Journal,41(3-4):271-288. Zhang Y D,Chen X,Goldman D. 2007. Diversification patterns of Early and Mid Ordovician graptolites in South China[J]. Geological Journal,42(3-4):315-337. Zhang T G,Shen Y N,Algeo T J. 2010. High-resolution carbon isotopic records from the Ordovician of South China:Links to climatic cooling and the Great Ordovician Biodiversification Event(GOBE)[J]. Palaeogeography,Palaeoclimatology,Palaeoecology,289(1):102-112. Zhou Z Y,Bergstrm J,Zhou Z Q, et al. 2011. Trilobite biofacies and palaeogeographic development in the Arenig(Ordovician)of the Yangtze Block,China[J]. Palaeoworld,20(1):15-45.张西娟 |