全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

胶莱盆地早白垩世瓦屋夼组砂岩中碎屑锆石U-Pb-Hf同位素组成及其构造意义

, PP. 355-368

Keywords: 碎屑锆石,U-Pb-Hf同位素,物源,瓦屋夼组,胶莱盆地,苏鲁造山带

Full-Text   Cite this paper   Add to My Lib

Abstract:

本文报道了胶莱盆地莱阳群最底部瓦屋夼组长石石英砂岩中碎屑锆石的LA-ICP-MSU-Pb年代学和原位Hf同位素分析结果,进而约束了瓦屋夼组砂岩的沉积时代和物源及其构造意义。碎屑锆石多数呈自形?半自形晶,发育岩浆生长环带,暗示它们为岩浆成因;少数晚三叠世锆石呈均匀无结构的阴极发光特点,缺乏岩浆环带,暗示它们为变质锆石。82个谐和年龄的峰值分别为129Ma、158Ma、224Ma、253Ma、461Ma、724Ma、1851Ma和2456Ma。上述定年结果结合原位Hf同位素分析表明:(1)瓦屋夼组的沉积时代为早白垩世(129~106Ma);(2)1851Ma、2456Ma年龄的锆石主要来源于华北克拉通前寒武纪基底岩石;新元古代(729~721Ma)岩浆锆石和晚三叠世(226~216Ma)变质锆石来源于苏鲁造山带;晚古生代锆石记录了华北克拉通北缘同时代的岩浆事件;晚三叠世(231~223Ma)岩浆锆石和158~129Ma锆石则与胶北、胶东同时期的岩浆事件相对应;(3)胶莱盆地与合肥盆地具有不同的沉积时代和物源属性;(4)瓦屋夼组中苏鲁造山带物源的存在,暗示苏鲁高压?超高压变质岩石至少在早白垩世时期已经出露地表。

References

[1]  山东省地质矿产局. 1991. 山东省区域地质志. 北京: 地质出版社: 165?178.
[2]  杨宗永, 何斌. 2013. 华南侏罗纪构造体制转换: 碎屑锆石U-Pb年代学证据. 大地构造与成矿学, 37(4): 580?591.
[3]  张华锋, 李胜荣, 翟明国, 郭敬辉. 2006. 胶东半岛早白垩世地壳隆升剥蚀及其动力学意义. 岩石学报, 22(2): 285?295.
[4]  张岳桥, 李金良, 张田, 董树文, 袁嘉音. 2008. 胶莱盆地及其邻区白垩纪?古新世沉积构造演化历史及其区域动力学意义. 地质学报, 82(9): 1229?1257.
[5]  Ames L, Tilton G R and Zhou G Z. 1993. Timing of collision of the Sino-Korean and Yangtze cratons: U-Pb zircon dating of coesite-bearing eclogites. Geology, 21(4): 339?342.
[6]  Cao H H, Xu W L, Pei F P, Wang Z W, Wang F and Wang Z J. 2013. Zircon U-Pb geochronology and petrogenesis of the Late Paleozoic-Early Mesozoic intrusive rocks in the eastern segment of the northern margin of the North China Block. Lithos, 170?171: 191?207.
[7]  Colombol F. 1994. Normal and reverse unroofing sequences in syntectonic conglomerates as evidence of progressive basinward deformation. Geological Society of America, 22: 235?238.
[8]  Cuthbert S J. 1991. Evolution of the Devonian Hornelen Basin, west Norway: New constraints from petrological studies of metamorphic clasts. Geological Society, London, Special Publications, 57: 343?360.
[9]  Grimes C B, John B E, Kelemen P B, Mazdab F K, Wooden J L, Cheadle M J, Hanghoj K and Schwartz J J. 2007. Trace element chemistry of zircons from oceanic crust: A method for distinguishing detrital zircon provenance. Geology, 35: 643?646.
[10]  Grimmer J C, Ratschbacher L, Williams M M, Franz L, Gaitzsch I, Tichomirowa M, Hacker B R and Zhang Y Q. 2003. When did the ultrahigh-pressure rocks reach the surface? A 207Pb/206Pb zircon, 40Ar/39Ar white mica, Si-in white mica, single-grain provenance study of Dabie Shan synorogenic foreland sediments. Chemical Geology, 197: 87?110.
[11]  Hu Z C, Gao S, Liu Y S, Hu S H, Chen H H and Yuan H L. 2008. Signal enhancement in laser ablation ICP-MS by addition of nitrogen in the central channel gas. Journal of Analytical Atomic Spectrometry, 23: 1093?1101.
[12]  Jiang N, Chen J Z, Guo J H and Chang G H. 2012. In situ zircon U-Pb, oxygen and hafnium isotopic compositions of Jurassic granites from the North China craton: Evidence for Triassic subduction of continental crust and subsequent metamorphism-related 18O depletion. Lithos, 142?143: 84?94.
[13]  Kr?ner A, Wilde S A, Li J H and Wang K Y. 2005. Age and evolution of a late Archaean to early Palaeozoic upper to lower crustal section in the Wutaishan / Hengshan / Fuping terrain of northern China. Journal of Asian Earth Sciences, 24: 577?595.
[14]  Li R W, Sang H and Zhang R. 2003. Geochronology of source materials from high-pressure and ultrahigh- pressure metamorphic rocks in Jurassic sedimentary rocks of Hefei Basin. Chinese Science Bulletin, 48(6): 605?610.
[15]  Li R W, Wan Y S, Cheng Z Y, Zhou J X, Li S Y, Jin F Q, Meng Q R, Li Z and Jiang M S. 2005. Provenance of Jurassic sediments in the Hefei Basin, east-central China and the contribution of high-pressure and ultrahigh-pressure metamorphic rocks from the Dabie Shan. Earth and Planetary Science Letters, 231(3?4): 279?294.
[16]  Li Z X, Zhang L and Powell C M. 1996. Positions of the East Asian cratons in the Neoproterozoic supercontinent Rodinia. Australian Journal of Earth Sciences, 43: 593?604.
[17]  Liu F L, Gerdes A and Liu P H. 2012. U-Pb, trace element and Lu-Hf properties of unique dissolution-reprecipitation zircon from UHP eclogite in SW Sulu terrane, eastern China. Gondwana Research, 22(1): 169?183.
[18]  Liu F L and Liou J G. 2011. Zircon as the best mineral for P-T-time history of UHP metamorphism: A review on mineral inclusions and U-Pb SHRIMP ages of zircons from the Dabie-Sulu UHP rocks. Journal of Asian Earth Sciences, 40: 1?39.
[19]  Liu X M, Gao S, Diwu C R and Ling W L. 2008. Precambrian crustal growth of Yangtze Craton as revealed by detrital zircon studies. American Journal of Science, 308(4): 421?468.
[20]  Ludwig K R. 2003. User’s Manual for Isoplot 3.0: A Geochronological Toolkit for Microsoft Excel. Berkeley Geochronology Center, Special Publication, 4(1): 1?71.
[21]  Peng P, Bleeker W, Ernst R E, S?derlund U and McNicoll V. 2011. U-Pb baddeleyite ages, distribution and geochemistry of 925 Ma mafic dykes and 900 Ma sills in the North China craton: Evidence for a Neoproterozoic mantle plume. Lithos, 127: 210?221.
[22]  Sun J F, Yang J H, Wu F Y and Wilde S A. 2012. Precambrian crustal evolution of the eastern North China Craton as revealed by U-Pb ages and Hf isotopes of detrital zircons from the Proterozoic Jing’eryu Formation. Precambrian Research, 200?203: 184?208.
[23]  Xu J W and Zhu G. 1994. Tectonic models of the Tan-Lu fault zone, eastern China. International Geology Review, 36: 771?784.
[24]  Yang D B, Xu W L, Xu Y G, Pei F P and Wang F. 2013. Provenance of sediments from Mesozoic basins in western Shandong: Implications for the evolution of the North China Block. Journal of Asian Earth Sciences, 76: 12?29.
[25]  Yang J H, Chung S L, Wilde S A, Wu F Y, Chu M F, Lo C H and Fan H R. 2005. Petrogenesis of post-orogenic syenites in the Sulu Orogenic Belt, East China: Geochronological, geochemical and Nd-Sr isotopic evidence. Chemical Geology, 214: 99?125.
[26]  Yang J H, Wu F Y, Shao J A, Wilde S A, Xie L W and Liu X M. 2006. Constraints on the timing of uplift of the Yanshan Fold and Thrust Belt, North China. Earth and Planetary Science Letters, 246: 336?352.
[27]  Yang S H, Wu Y B, Liu X C, Wang J, Peng M and Jiao W F. 2009. U-Pb ages of detrital zircons from meta-sedimentary rock from the Huwan shear zone, western Dabie terrain and their geological significance. Earth Science, 34: 179?188.
[28]  Zhai M G, Cong B L, Guo J H, Liu W J and Li Y G. 2000. Sm-Nd geochronology and petrography of garnet pyroxene granulites in the northern Sulu region of China and their geotectonic implication. Lithos, 52: 2333.
[29]  Zhang J, Zhao Z F, Zheng Y F and Dai M N. 2010. Postcollisional magmatism: Geochemical constraints on the petrogenesis of Mesozoic granitoids in the Sulu orogen, China. Lithos, 119: 512?536.
[30]  Zhang R Y, Liou J G, Zheng J P, Griffin W L, Yang Y H and Jahn B M. 2009a. Petrogenesis of eclogites enclosed in mantle-derived peridotites from the Sulu UHP terrane: Constraints from trace elements in minerals and Hf isotopes in zircon. Lithos, 109: 176?192.
[31]  Zhang S H, Zhao Y, Song B, Hu J M, Liu S W, Yang Y H, Chen F K, Liu X M and Liu J. 2009b. Contrasting Late Carboniferous and Late Permian-Middle Triassic intrusive suites from the northern margin of the North China craton: Geochronology, petrogenesis and tectonic implications. Geological Society of America Bulletin, 121: 181?200.
[32]  Zhao G C, Sun M, Wilde S A and Li S Z. 2005. Late Archean to Paleoproterozoic evolution of the North China Craton: Key issues revisited. Precambrian Research, 136: 177?202.
[33]  Zhao G C, Wilde S A, Cawood P A and Sun M. 2001. Archean blocks and their boundaries in the North China Craton: Lithological, geochemical, structural and P-T path constraints and tectonic evolution. Precambrian Research, 107: 45?73.
[34]  Zhao Z F, Zheng Y F, Zhang J, Dai L Q, Li Q L and Liu X M. 2012. Syn-exhumation magmatism during continental collision: Evidence from alkaline intrusives of Triassic age in the Sulu orogen. Chemical Geology, 328: 70?88.
[35]  Zhou J B, Wilde S A, Liu F L and Han J. 2012. Zircon U-Pb and Lu-Hf isotope study of the Neoproterozoic Haizhou Group in the Sulu orogen: Provenance and tectonic implications. Lithos, 136?139: 261?281.
[36]  顾德林, 张长厚, 陈建强. 1996. 胶南隆起北部地质构造特征及其演化. 武汉: 中国地质大学出版社: 122.
[37]  旷红伟, 柳永清, 吴清资, 程光锁, 许克民, 刘海, 彭楠, 许欢, 陈军, 王宝红, 徐加林, 汪明伟, 章朋. 2013. 山东沭河裂谷带早白垩世晚期恐龙足迹群与古地理背景. 古地理学报, (4): 435?453.
[38]  李守军, 谢传礼. 1997. 山东莱阳盆地莱阳组时代讨论. 地层学杂志, 20(3): 233?238.
[39]  李双应, 孟庆任, 李任伟, 王道轩, 储书武. 2008. 山东胶莱盆地下白垩统莱阳组物质组分特征及其对源区的制约. 岩石学报, 24(10): 2395?2406.
[40]  李向辉, 陈福坤, 李潮峰, 张华锋, 郭敬辉, 杨岳衡. 2007. 苏鲁造山带荣成超高压地体片麻岩锆石年龄和铪同位素组成特征. 岩石学报, 23(2): 351?368.
[41]  林景仟, 谭东绢, 迟效国. 1992. 胶辽半岛中生代花岗岩. 北京: 科学出版社: 1?208.
[42]  凌文黎, 谢先军, 柳小明, 程建萍. 2006. 鲁东中生代标准剖面青山群火山岩锆石 U-Pb 年龄及其构造意义. 中国科学(D辑), 36(5): 401?411.
[43]  刘兵, 温泉波, 刘永江, 李伟民, 冯志强, 周建平, 申亮. 2014. 大兴安岭中段上二叠统下三叠统接触关系――研究来自碎屑锆石年代学的证据. 大地构造与成矿学, (2): 408?420.
[44]  Liu Y S, Gao S, Hu Z C, Gao C G, Zong K Q and Wang D B. 2010. Continental and oceanic crust recycling-induced melt-peridotite interactions in the Trans-North China Orogen: U-Pb dating, Hf isotopes and trace elements in zircons of mantle xenoliths. Journal of Petrology, 51(1?2): 537?571.
[45]  Tang J, Zheng Y F, Wu Y B, Gong B and Liu X M. 2008. Zircon U-Pb age and geochemical constraints on the tectonic affinity of the Jiaodong terrane in the Sulu orogen, China. Precambrian Research, 161: 389?418.
[46]  Wang Q H, Yang D B and Xu W L. 2012. Neoproterozoic basic magmatism in the southeast margin of North China Craton: Evidence from whole-rock geochemistry, U-Pb and Hf isotopic study of zircons from diabase swarms in the Xuzhou-Huaibei area. Science China, Earth Sciences, 55(9): 1461?1479.
[47]  Wang Y J, Zhao G C, Xia X P, Zhang Y H, Fan W M, Li C, Bi X W and Li S Z. 2009. Early Mesozoic unroofing pattern of the Dabie Mountains (China): Constraints from the U-Pb detrital zircon geochronology and Si-in-white mica analysis of synorogenic sediments in the Jianghan Basin. Chemical Geology, 266: 231?241.
[48]  Wu F Y, Yang Y H, Xie L W, Yang J H and Xu P. 2006. Hf isotopic compositions of the standard zircons and baddeleyites used in U-Pb geochronology. Chemical Geology, 234: 105?126.
[49]  Xie S W, Wu Y B, Zhang Z M, Qin Y C, Liu X C, Wang H, Qin Z W, Liu Q and Yang S H. 2012. U-Pb ages and trace elements of detrital zircons from Early Cretaceous sedimentary rocks in the Jiaolai Basin, north margin of the Sulu UHP terrane: Provenances and tectonic implications. Lithos, 154: 346?360.
[50]  Yang D B, Xu W L, Xu Y G, Wang Q H, Pei F P and Wang F. 2012. U-Pb ages and Hf isotope data from detrital zircons in the Neoproterozoic sandstones of northern Jiangsu and southern Liaoning provinces, China: Implications for the Late Precambrian evolution of the southeastern North China Craton. Precambrian Research, 216?219: 162?176.
[51]  Zhang H F, Ying J F, Tang Y J, Li X H, Feng C and Santosh M. 2011. Phanerozoic reactivation of the Archean North China Craton through episodic magmatism: Evidence from zircon U-Pb geochronology and Hf isotopes from the Liaodong Peninsula. Gondwana Research, 19: 446?459.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133