[1] 程日辉,王国栋,王璞珺,高有峰,任延广,王成善,张世红,汪清源. 2009. 松科1井南孔白垩系姚家组沉积序列精细描述: 岩石地层、沉积相与旋回地层. 地学前缘,16(2): 272-287. [Cheng R H,Wang G D,Wang P J,Gao Y F,Ren Y G,Wang C S,Zhang S H,Wang Q Y. 2009. Description of Cretaceous sedimentary sequence of the Yaojia Formation recovered by CCSD-SK-Is borehole in Songliao Basin: Lithostratigraphy,sedimentary facies and cyclic stratigraphy. Earth Science Frontiers,16(2): 272-287] [2] 高有峰. 2010. 松辽盆地上白垩统事件沉积与高分辨率层序地层: 以松科1井岩心资料为基础. 吉林大学博士学位论文. [Gao Y F. 2010. Event deposits and high-resolution sequence stratigraphy of the Upper Cretaceous in Songliao Basin: Based on borehole cores of CCSD-SK-I. Doctoral Dissertation of Jilin University] [3] 高有峰,王璞珺,程日辉,王国栋,万晓樵,吴河勇,王树学. 2009. 松科1井南孔白垩系青山口组一段沉积序列精细描述: 岩石地层、沉积相与旋回地层. 地学前缘,16(2): 314-323. [Gao Y F,Wang P J,Cheng R H,Wang G D,Wan X Q,Wu H Y,Wang S X. 2009. Description of Cretaceous sedimentary sequence of the first member of the Qingshankou Formation recovered by CCSD-SK-Is borehole in Songliao Basin: Lithostratigraphy,sedimentary facies and cyclic stratigraphy. Earth Science Frontiers,16(2): 314-323] [4] 高有峰,王璞珺,王成善,任延广,王国栋,刘万洙,程日辉. 2008. 松科1井南孔选址、岩心剖面特征与特殊岩性层的分布义. 地质学报,82(5): 669-675. [Gao Y F,Wang P J,Wang C S,Ren Y G,Wang G D,Liu W Z,Cheng R H. 2008. Well site selecting,core profile characteristics and distribution of the special lithology in CCSD-SK-I. Acta Geologica Sinica,82(5): 669-675] [5] 顾健. 2008. 白垩纪松辽盆地青山口组一段硫记录与古湖泊变化. 中国地质大学(北京)硕士学位论文. [Gu J. 2008. Records of sulfur burial and paleolimnological change in Unit 1 of Qingshankou Formation,Cretaceous Songliao Basin. Master’s Dissertation of China University of Geosciences(Beijing)] [6] 宁维坤,付丽,霍秋立. 2010. 松辽盆地松科1井晚白垩世沉积时期古湖泊生产力. 吉林大学学报(地球科学版),40(5): 1020-1034. [Ning W K,Fu L,Huo Q L. 2010. Productivity of Paleo-Songliao Lake during the Late Cretaceous in Well CCSD-SK-I,Songliao Basin. Journal of Jilin University(Earth Science Edition),40(5): 1020-1034] [7] 田世峰. 2012. 中、新生代旋回地层学研究及其油气地质意义: 以惠州凹陷和煤山剖面为例. 中国石油大学(华东)博士学位论文. [Tian S F. 2012. Cyclostratigraphy of Mesozoic and Cenozoic and implications hydrocarbon exploration,cases study of the Huizhou Depression and Meishan Section. Doctoral Dissertation of China University of Petroleum(East China)] [8] 涂玉洁. 2012. 松辽盆地白垩纪有孔虫化石与海侵证据. 中国地质大学(北京)硕士学位论文. [Tu Y J. 2012. Foraminifera and seawater incursions events of the Late Cretaceous Songliao Basin. Master’s Dissertation of China University of Geosciences(Beijing)] [9] 王璞珺,高有峰,程日辉,王国栋,吴河勇,万晓樵,杨甘生,汪忠兴. 2009. 松科1井南孔白垩系青山口组二、三段沉积序列精细描述: 岩石地层、沉积相与旋回地层. 地学前缘,16(2): 288-313. [Wang P J,Gao Y F,Cheng R H,Wang G D,Wu H Y,Wan X Q,Yang G S,Wang Z X. 2009. Description of Cretaceous sedimentary sequence of the second and third member of the Qingshankou Formation recovered by CCSD-SK-Is borehole in Songliao Basin: Lithostratigraphy,sedimentary facies and cyclic stratigraphy. Earth Science Frontiers,16(2): 288-313] [10] 吴怀春,张世红,冯庆来,方念乔,杨天水,李海燕. 2011. 旋回地层学理论基础、研究进展和展望. 地球科学(中国地质大学学报),36(3): 409-428. [Wu H C,Zhang S H,Feng Q L,Fang N Q,Yang T S,Li H Y. 2011. Theoretical Basis,Research Advancement and Prospects of Cyclostratigraphy. Earth Science(Journal of China University of Geosciences),36(3): 409-428] [11] 吴欣松,郭娟娟,黄永建,付建伟. 2011. 松辽盆地晚白垩世古气候变化的测井替代指标. 古地理学报,13(1): 103-110. [Wu X S,Guo J J,Huang Y J,Fu J W. 2011. Well logging proxy of the Late Cretaceous palaeoclimate change in Songliao Basin. Journal of Palaeogeography(Chinese Edition),13(1): 103-110] [12] Betts J N,Holland H D. 1991. The oxygen content of ocean bottom waters,the burial efficiency of organic carbon,and the regulation of atmospheric oxygen. Palaeogeography,Palaeoclimatology,Palaeoecology,97: 5-18. [13] Chamberlain C P,Wan X Q,Graham S A,Carroll A R,Doebbert A C,Sageman B B,Blisniuk P,Kent-Corson M L,Wang Z,Wang C S. 2013. Stable isotopic evidence for climate and basin evolution of the Late Cretaceous Songliao basin,China. Palaeogeography,Palaeoclimatology,Palaeoecology,385: 106-124. [14] Haven H L T,Leeuw J W D,Rullkotter J,Damste J S S. 1987. Restricted utility of the pristane/phytane ratio as a paleoenvironmental indicator. Nature,330: 641-643. [15] He H Y,Deng C L,Wang P J,Pan Y Q,Zhu R X. 2012. Toward age determination of the termination of the Cretaceous Normal Superchron. Geochemistry,Geophysics,Geosystems,13: 1-20. [16] Ibach J. 1982. Relationship between sedimentation rate and total organic carbon content in ancient marine sediments. AAPG Bulletin,66: 170-188. [17] Laskar J,Fienga A,Gastineau M,Manche H. 2011. La2010: a new orbital solution for the long-term motion of the Earth. Astronomy and Astrophysics,532: 1-17. [18] Muller P J,Suess E. 1979. Productivity,sedimentation rate and sedimentary organic carbon content in the oceans. Deep-Sea Research,26: 1347-1362. [19] Oana S,Deevey E S. 1960. Carbon 13 in lake waters and its possible bearing on paleolimnology. American journal of science,258: 253-272. [20] Schulz M,Mudelsee M. 2002. REDFIT: Estimating red-noise spectra directly from unevenly spaced paleoclimatic time series. Computers and Geosciences,28: 421-426. [21] Stein R. 1990. Organic carbon content/sedimentation rate relationship and its paleoenvironmental significance for marine sediments. Geo-Marine Letters,10: 37-44. [22] Tyson R V. 2001. Sedimentation rate,dilution,preservation and total organic carbon: Some results of a modelling study. Organic Geochemistry,32: 333-339. [23] Wu H C,Zhang S L,Jiang G Q,Hinnov L,Yang T S,Li H Y,Wan X Q,Wang C S. 2013. Astrochronology of the Early Turonian-Early Campanian terrestrial succession in the Songliao Basin,northeastern China and its implication for long-period behavior of the Solar System. Palaeogeography,Palaeoclimatology,Palaeoecology,385: 55-70. |