用户名: 密码: 验证码:
云开地块北缘构造混杂岩的岩石成因探讨
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Petrogenesis of the tectonic mélange on the northern margin of the Yunkai Terrane,South China
  • 作者:周岱 ; 龙文国 ; 柯贤忠 ; 张利国 ; 徐德明 ; 王晶
  • 英文作者:ZHOU Dai;LONG WenGuo;KE XianZhong;ZHANG LiGuo;XU DeMing;WANG Jing;Wuhan Institute of Geology and Mineral Resources,China Geological Survey;Research Centre of Granitic Diagenesis and Mineralization,China Geological Survey;
  • 关键词:云开群 ; 构造混杂岩 ; 岩石成因 ; 武夷-云开造山带
  • 英文关键词:Yunkai Group;;Tectonic mélange;;Petrogenesis;;Wuyi-Yunkai Orogen
  • 中文刊名:YSXB
  • 英文刊名:Acta Petrologica Sinica
  • 机构:中国地质调查局武汉地质调查中心;中国地质调查局花岗岩成岩成矿地质研究中心;
  • 出版日期:2017-03-15
  • 出版单位:岩石学报
  • 年:2017
  • 期:v.33
  • 基金:中国地质调查局项目(12120114039201、121201009000150011、121201009000150015)资助
  • 语种:中文;
  • 页:YSXB201703011
  • 页数:21
  • CN:03
  • ISSN:11-1922/P
  • 分类号:146-166
摘要
华南云开地块北缘的信宜贵子地区见大量变玄武岩与变沉积岩混杂产出。变玄武岩多以构造岩块或透镜体产出,地球化学以中等Mg#、富钠贫钾为特征,属亚碱性的拉斑玄武岩系列。轻稀土元素中等富集,无Eu异常,微量元素以富Nb、显著的Sr-Nb-Ta弱亏损为特征。143Nd/144Nd变化于0.512513~0.512655之间,对应的εNd(t)值介于2.89~4.90之间。构造环境判别表明,变玄武岩原岩可能为弧后盆地玄武岩。2个变玄武岩样品的锆石U-Pb年龄为1031±28Ma、1025±39Ma。变沉积岩基质以片岩、变砂岩和石英岩为主,表现为陆缘碎屑沉积特征。2个石英岩样品的碎屑锆石U-Pb年龄显示变沉积岩原岩具有~1.0Ga的物源峰,其最年轻锆石为777Ma和571Ma,原岩沉积时间大致为南华纪-震旦纪。本次研究认为,信宜贵子构造混杂岩是Grenville期弧后盆地玄武岩与新元古代晚期陆缘碎屑沉积物构造混杂堆积的结果,构造混杂的时间可能为奥陶纪-志留纪。
        Xinyi-Guizi area,in where metabasalts and metasedimentary rocks forming tectonic mélange,locates on the northern margin of the Yunkai terrane,South China. Metabasalts which outcrop as tectonite or lentoids,are characterized by moderate Mg#,high Na,low K,and moderately enriched LREE,no Eu anomaly,high Nb,strongly negative Sr-Nb-Ta anomaly.143Nd/144 Nd =0. 512513 ~ 0. 512655,and εNd(t) = 2. 89 ~ 4. 90. The tectonic setting identification show that the protolith of metabasalts might erupt in back-arc basin setting. Zircons from two metabasalt samples yield U-Pb age of 1031 ± 28 Ma,1025 ± 39 Ma. The metasedimentary rocks are mainly composed of schist,metasandstone and quartzite,dominated by characters of terrigenous clastic deposit. Detrital zircons from two quartzite samples yield ~ 1. 0Ga main peak and youngest U-Pb age of 777 Ma,571Ma respectively. It is concluded that the Guizi tectonic mélange is the result of tectonic accumulation mixed by Grenville back-arc basin basalts and Late Neoproterozoic terrigenous clastic sediments,and the formation age of tectonic mélange may be Ordovician-Silurian.
引文
Andersen T.2002.Correction of common lead in U-Pb analyses that do not report204Pb.Chemical Geology,192(1-2):59-79
    Cawood PA,Wang YJ,Xu YJ and Zhao GC.2013.Locating South China in Rodinia and Gondwana:A fragment of greater India lithosphere.Geology,41(8):903-906
    Chen X,Zhang YD,Fan JX,Cheng JF and Li QJ.2010.Ordovician graptolite-bearing strata in southern Jiangxi with a special reference to the Kwangsian Orogeny.Science China(Earth Sciences),53(11):1602-1610
    Cheng SB,Fu JM,Xu DM,Ma LY,Pang YC and Cao L.2009.Geochemical characteristics and petrogenensis of Xuehuading granitic batholith and its enclaves,South China.Geotectonica et Metallogenia,33(4):588-597(in Chinese with English abstract)
    Defant MJ and Kepezhinskas P.2001.Evidence suggests slab melting in arc magmas.EOS Transactions,American Geophysical Union,82(6):65-69
    Faure M,Shu LS,Wang B,Charvet J,Choulet F and Monie P.2009.Intracontinental subduction:A possible mechanism for the Early Palaeozoic Orogen of SE China.Terra Nova,21(5):360-368
    Gerya TV,Perchuk LL,Triboulet C,Audren C and Sez’ko AI.1997.Petrology of the tumanshet zonal metamorphic complex,eastern sayan.Petrology,5(6):503-533
    Griffin WL,Belousova EA,O’Neill C,O’Reilly SY,Malkovets V,Pearson NJ,Spetsius S and Wilde SA.2014.The world turns over:Hadean-Archean crust-mantle evolution.Lithos,189:2-15
    Guo LT,Hong YR,Huang JC,Chen YH,Huang YH and Xu HS.2005.Discovery of the Kengping spilite-keratophyre series in Xinyi,western Guangdong,China and its geological significance.Geological Bulletin of China,24(7):648-654(in Chinese with English abstract)
    Guo LZ,Shi YS and Ma RS.1980.The geotectonic framework and crustal evolution of South China.In:Scientific Papers on Geology for International Exchange(1 Tectonic Geology and Geological Mechanics).Beijing:Geological Publishing House,109-116(in Chinese)
    Huang GC,Wang XW,Yang SY,Chen LQ and Ling JS.2001.Chronological evidence for the existence of the Meso-to Paleoproterozoic basement in the Yunkai uplift area.Regional Geology of China,20(2):194-199(in Chinese with English abstract)
    Jin SQ.1991.The compositon characteristics of calcic amphiboles in different regional metamorphic facies.Chinese Science Bulletin,36(11):851-854(in Chinese)
    Kepezhinskas P,Defant MJ and Drummond MS.1996.Progressive enrichment of island arc mantle by melt-peridotite interaction inferred from Kamchatka xenoliths.Geochimica et Cosmochimica Acta,60(7):1217-1229
    Kuang YG,Huang YH,Zhuang WM,Zhuo WH and Xiao SM.2001.Establishment of the Yunkai Group-complex in western Guangdong:A new understanding of pre-Devonian metamorphic strata in the Yunkai area.Regional Geology of China,20(2):146-152(in Chinese with English abstract)
    Lao QY,Ye ZH,Hu SL and Sang HQ.1997.The40Ar/39Ar age data of silicalite of Yunkai Group and their geological significance.Acta Geoscientia Sinica,18(Suppl.):98-101(in Chinese with English abstract)
    Li XH,Li WX,Li ZX,Lo CH,Wang J,Ye MF and Yang YH.2009a.Amalgamation between the Yangtze and Cathaysia blocks in South China:Constraints from SHRIMP U-Pb zircon ages,geochemistry and Nd-Hf isotopes of the Shuangxiwu volcanic rocks.Precambrian Research,174(1-2):117-128
    Li ZX,Li XH,Wartho JA,Clark C,Li WX,Zhang CL and Bao CM.2009b.Magmatic and metamorphic events during the Early Paleozoic Wuyi-Yunkai orogeny,southeastern South China:New age constraints and pressure-temperature conditions.Geological Society of America Bulletin,122(5-6):772-793
    Liu BJ and Xu XS.1994.Atlas of the Lithofacies and Palaeogeography of South China.Beijing:Science Press,1-188(in Chinese)
    Liu YS,Zong KQ,Kelemen PB and Gao S.2008.Geochemistry and magmatic history of eclogites and ultramafic rocks from the Chinese continental scientific drill hole:Subduction and ultrahigh-pressure metamorphism of lower crustal cumulates.Chemical Geology,247(1-2):133-153
    Liu YS,Hu ZC,Zong KQ,Gao CG,Gao S,Xu J and Chen HH.2010.Reappraisement and refinement of zircon U-Pb isotope and trace element analyses by LA-ICP-MS.Chinese Science Bulletin,55(15):1535-1546
    Long WG,Xu DM,Wang L,Zhou D,Jin XB and Zhang K.2012.Formation age of hypometamorphic rocks in basement of Yunkai area,South China.Geology and Mineral Resources of South China,28(4):290-297(in Chinese with English abstract)
    Ludwig KR.2003.ISOPLOT 3.00:A Geochronological Toolkit for Microsoft Excel.California:Berkeley Geochronology Center
    Ma CQ,Yang KG and Tang ZH.1994.Magma-dynamics of Granitoids:Theory,Method and a Case Study of the Eastern Hubei Granitoids.Wuhan:China University of Geosciences Press(in Chinese)
    Ma L,Chen HJ,Gan KW,Xu KD,Xu XS,Wu GY,Ye Z,Liang X,Wu SH,Qiu YY,Zhang PL and Ge PP.2004.Geotectonics and Petroleum Geology of Marine Sedimentary Rocks in Southern China.Beijing:Geological Publishing House(in Chinese)
    Nan Y.1989.The discovery of Late Proterozoic microfossil plants in Dongshuikeng,western Guangdong.Regional Geology of China,(2):183-185(in Chinese with English abstract)
    Nan Y.1994.Division and geologic age of Yunkai Group in western Guangdong.Guangdong Geology,9(4):1-11(in Chinese)
    Pearce JA and Norry MJ.1979.Petrogenetic implications of Ti,Zr,Y,and Nb variations in volcanic rocks.Contributions to Mineralogy and Petrology,69(1):33-47
    Pearce JA.1982.Trace element characteristics of lavas from destructive plate boundaries.In:Thorpe RS(ed.).Orogenic Andesites and Related Rocks.Chichester,England:John Wiley and Sons,528-548
    Peng SB,Zhan MG,Peng SM,Zhang YM and Fu JM.1999.The discovery of ophiolitic mélanges and its significance in Yunkai area,western Guangdong.Geology and Mineral Resources of South China,(1):24-25(in Chinese with English abstract)
    Peng SB,Jin ZM,Fu JM,Liu YH,He LQ and Cai MH.2006a.Geochemical characteristics of basic intrusive rocks in the Yunkai uplift,Guangdong-Guangxi,China,and their tectonic significance.Geological Bulletin of China,25(4):434-441(in Chinese with English abstract)
    Peng SB,Jin ZM,Fu JM,He LQ,Cai MH and Liu YH.2006b.The geochemical evidences and tectonic significance of Neoproterozoic ophiolite in Yunkai area,western Guangdong Province,China.Acta Geologica Sinica,80(6):814-825(in Chinese with English abstract)
    Peng SB,Liu SF,Lin MS,Wu CF and Han QS.2016a.Early Paleozoic Subduction in Cathaysia(Ⅰ):New Evidence from Nuodong Ophiolite.Earth Science,41(5):765-778(in Chinese with English abstract)
    Peng SB,Liu SF,Lin MS,Wu CF and Han QS.2016b.Early Paleozoic Subduction in Cathaysia(Ⅱ):New Evidence from Dashuang high magnesian-magnesian andesite.Earth Science,41(6):931-947(in Chinese with English abstract)
    Qin XF,Zhou FS,Hu GA,Li GN,Xie LF,Zhou KH,Huang XQ and Pan YW.2005.First discovery of MORB volcanic rock and its tectonic significance on the north margin of the Yunkai block,southeastern Guangxi.Geological Science and Technology Information,24(3):20-24(in Chinese with English abstract)
    Qin XF,Pan YM,Li J,Li RS,Zhou FS,Hu GA and Zhong FY.2006.Zircon SHRIMP U-Pb geochronology of the Yunkai metamorphic complex in southeastern Guangxi,China.Geological Bulletin of China,25(5):553-559(in Chinese with English abstract)
    Qin XF,Pan YM,Xia B,Li RS,Zhou FS,Hu GA and Lu GB.2007.Geochemical characteristics and tectonic signification of metabasic volcanic rocks in tectonic belt of northern margin of Yunkai block,southeastern Guangxi.Geochimica,36(3):311-322(in Chinese with English abstract)
    Qin XF,Wang ZQ,Hu GA,Cao J and Feng ZH.2013.Geochronology and geochemistry of Hudong gneissic composite pluton in the junction of Guangdong and Guangxi provinces:Implications for Early Paleozoic tectono-magmatism along the northern margin of Yunkai massif.Acta Petrologica Sinica,29(9):3115-3130(in Chinese with English abstract)
    Qiu YX,Zhang YC and Ma WP.1999.The Tectonic Nature and Evolution of Xuefeng Mountains.Beijing:Geological Publishing House,1-153(in Chinese)
    Shu LS,Faure M,Yu JH and Jahn BM.2011.Geochronological and geochemical features of the Cathaysia block(South China):New evidence for the Neoproterozoic breakup of Rodinia.Precambrian Research,187(3-4):263-276
    Shu LS.2012.An analysis of principal features of tectonic evolution in South China Block.Geological Bulletin of China,31(7):1035-1053(in Chinese with English abstract)
    Shu LS.2014.Early Paleozoic geological problems of South China Block.In:Annual Meeting of Chinese Geoscience Union(CGU).Beijing:Chinese Geophysical Society,2283-2285(in Chinese)
    Sun SS and Mc Donough WF.1989.Chemical and isotopic systematics of oceanic basalts:Implications for mantle composition and processes.In:Sanders AD and Norry MJ(eds.).Magmatism in Ocean Basins.Geological Society,London,Special Publication,42(1):313-345
    Wan YS,Liu DY,Wilde SA,Cao JJ,Chen B,Dong CY,Song B and Du LL.2010.Evolution of the Yunkai Terrane,South China:Evidence from SHRIMP zircon U-Pb dating,geochemistry and Nd isotope.Journal of Asian Earth Sciences,37(2):140-153
    Wang L,Long WG,Xu DM,Xu WC,Zhou D,Jin XB,Huang H and Zhang K.2015.Zircon U-Pb geochronology of metamorphic basement in Yunkai area and its implications on the Grenvillian event in the Cathaysia Block.Earth Science Frontiers,22(2):25-40(in Chinese with English abstract)
    Wang LJ,Yu JH,O’Reilly SY,Griffin WL,Sun T,Wei ZY,Shu LSand Jiang SY.2008.Grenvillian orogeny in the Southern Cathaysia Block:Constraints from U-Pb ages and Lu-Hf isotopes in zircon from metamorphic basement.Chinese Science Bulletin,53(19):3037-3050
    Wang YJ,Fan WM,Cawood PA,Ji SC,Peng TP and Chen XY.2007.Indosinian high-strain deformation for the Yunkaidashan tectonic belt,South China:Kinematics and40Ar/39Ar geochronological constraints.Tectonics,26(6):TC6008
    Wang YJ,Zhang AM,Fan WM,Zhao GC,Zhang GW,Zhang YZ,Zhang FF and Li SZ.2011.Kwangsian crustal anatexis within the eastern South China Block:Geochemical,zircon U-Pb geochronological and Hf isotopic fingerprints from the gneissoid granites of Wugong and Wuyi-Yunkai Domains.Lithos,127(1-2):239-260
    Wang YJ,Zhang AM,Cawood PA,Fan WM,Xu JF,Zhang GW and Zhang YZ.2013a.Geochronological,geochemical and Nd-Hf-Os isotopic fingerprinting of an Early Neoproterozoic arc-back-arc system in South China and its accretionary assembly along the margin of Rodinia.Precambrian Research,231:343-371
    Wang YJ,Zhang AM,Fan WM,Zhang YH,and Zhang YZ.2013b.Origin of paleosubduction-modified mantle for Silurian gabbro in the Cathaysia Block:Geochronological and geochemical evidence.Lithos,160-161:37-54
    Wang ZW,Zhou YZ,Zhao FQ,Jin WS and Gan XC.1997.The advance in depth geology research,South China.Advance in Earth Sciences,12(3):259-264(in Chinese with English abstract)
    Wang ZW,Zhou YZ,Zhang HH and Zhou HW.1998.The basement evolution and mineralization of Yunkai massif,South China.Progress in Precambrian Research,21(1):45-53(in Chinese with English abstract)
    Wu YB and Zheng YF.2004.Minerageny study of zircons and its restrict in interpretation of U-Pb ages.Chinese Science Bulletin,49(16):1589-1604(in Chinese)
    Yao WH,Li ZX,Li WX,Su L and Yang JH.2015.Detrital provenance evolution of the Ediacaran-Silurian Nanhua foreland basin,South China.Gondwana Research,28(4):1449-1465
    Yi LW,Ma CQ,Wang LX,Lai ZX,Li XY,Yang YN,Wu F and Hu YR.2014.Discovery of Late Ordovician subvolcanic rocks in South China:Existence of subduction-related dacite from Early Paleozoic.Earth Science,39(6):637-653(in Chinese with English abstract)
    Yu JH,O’Reilly SY,Wang LJ,Griffin WL,Zhou MF,Zhang M and Shu LS.2010.Components and episodic growth of Precambrian crust in the Cathaysia Block,South China:Evidence from U-Pb ages and Hf isotopes of zircons in Neoproterozoic sediments.Precambrian Research,181(1-4):97-114
    Yu JS,Gui XT and Huang L.1991.Sr-Nd-O-H isotope compositions of Silun migmatite field in Luoding,Guangdong.Guangdong Geology,6(3):73-82(in Chinese with English abstract)
    Yuan ZX.1995.Regional Tectonic Control of Ore-forming Process over Gold(Silver)Deposits in Western Guangdong Province and Its Adjacent Areas.Wuhan:China University of Geosciences Press,52-81(in Chinese)
    Zhang AM,Wang YJ,Fan WM,Zhang YZ and Yang J.2012.Earliest Neoproterozoic(ca.1.0Ga)arc-back-arc basin nature along the northern Yunkai Domain of the Cathaysia Block:Geochronological and geochemical evidence from the metabasite.Precambrian Research,220-221:217-233
    Zhang CL,Santosh M,Zhu QB,Chen XY and Huang WC.2015.The Gondwana connection of South China:Evidence from monazite and zircon geochronology in the Cathaysia Block.Gondwana Research,28(3):1137-1151
    Zhang GW,Guo AL,Wang YJ,Li SZ,Dong YP,Liu SF,He DF,Cheng SY,Lu RK and Yao AP.2013.Tectonics of South China continent and its implications.Science China(Earth Sciences),56(11):1804-1828
    Zhang YM and Peng SB.2000.Chronologic framework of the Proterozoic basement and Presinian tectonic evolution in Yunkai region,South China.Geology and Mineral Resources of South China,(1):1-10(in Chinese with English abstract)
    Zhang ZL,Yuan HH and Nan Y.1998.Whole-grain zircon evaporation for age of Luoyu formation,Yunkai Group.Journal of Mineralogy and Petrology,18(1):85-90(in Chinese with English abstract)
    Zhao GC and Guo JH.2012.Precambrian geology of China:Preface.Precambrian Research,222-223:1-12
    Zheng YF,Zhang SB,Zhao ZF,Wu YB,Li XH,Li ZX and Wu FY.2007.Contrasting zircon Hf and O isotopes in the two episodes of Neoproterozoic granitoids in South China:Implications for growth and reworking of continental crust.Lithos,96(1-2):127-150
    Zhong ZQ,You ZD,Zhou HF and Han YJ.1996.The evolution and basic structural framework of the basement of the Yunkai uplift.Regional Geology of China,(1):36-43(in Chinese with English abstract)
    Zhou D and Long WG.2013.Geochronology and Lu-Hf isotope of Early Paleozoic gabbros in Yunkai terrane,South China.In:2013’s National Symposium on Petrology and Geodynamics.Beijing:Geological Society of China,308(in Chinese)
    Zhou GQ,Zheng YM and Wu AS.1996.Pre-Sinian strata in the Yunkai area in Guangdong and Guangxi provinces.Regional Geology of China,(4):296-303(in Chinese with English abstract)
    Zhou XY,Yu JH,Wang LJ,Shen LW and Zhang CH.2015.Compositions and formation of the basement metamorphic rocks in Yunkai terrane,western Guangdong Province,South China.Acta Petrologica Sinica,31(3):855-882(in Chinese with English abstract)
    Zhou YZ,Zeng CY,Li HZ,An YF,Liang J,LüWC,Yang ZJ,He JGand Shen WJ.2012.Geological evolution and ore-prospecting targets in southern segment of Qinzhou Bay-Hangzhou Bay juncture orogenic belt,southern China.Geological Bulletin of China,31(2-3):486-491(in Chinese with English abstract)
    Zhou YZ,Zheng Y,Zeng CY and Liang J.2015.On the understanding of Qinzhou Bay-Hangzhou Bay metallogenic belt,South China.Earth Science Frontiers,22(2):1-6(in Chinese with English abstract)
    陈旭,张元动,樊隽轩,成俊峰,李启剑.2010.赣南奥陶纪笔石地层序列与广西运动.中国科学(地球科学),40(12):1621-1631
    程顺波,付建明,徐德明,马丽艳,庞迎春,曹亮.2009.湖南雪花顶花岗岩及其包体的地质地球化学特征和成因分析.大地构造与成矿学,33(4):588-597
    郭良田,洪裕荣,黄继春,陈宇湖,黄宇辉,许汉森.2005.粤西信宜地区坑坪细碧-角斑岩系的发现及其地质意义.地质通报,24(7):648-654
    郭令智,施央申,马瑞士.1980.华南大地构造格架和地壳演化.见:国际交流地质学术论文集(Ⅰ构造地质、地质力学).北京:地质出版社,109-116
    黄圭成,汪雄武,杨世义,陈龙清,凌井生.2001.两广云开隆起区存在中-古元古代基底的年代学证据.中国区域地质,20(2):194-199
    靳是琴.1991.不同区域变质相中钙质角闪石的成分特征.科学通报,36(11):851-854
    邝永光,黄宇辉,庄文明,卓伟华,肖思明.2001.粤西云开岩群的建立---云开地区前泥盆纪变质地层的再认识.中国区域地质,20(2):146-152
    劳秋元,叶真华,胡世玲,桑海清.1997.云开群硅质岩的40Ar/39Ar年龄及其地质意义.地球学报,18(增刊):98-101
    刘宝珺,许效松.1994.中国南方岩相古地理图集.北京:科学出版社,1-188
    龙文国,徐德明,王磊,周岱,金鑫镖,张鲲.2012.两广云开地区基底深变质岩的形成时代.华南地质与矿产,28(4):290-297
    马昌前,杨坤光,唐仲华.1994.花岗岩类岩浆动力学:理论方法及鄂东花岗岩类例析.武汉:中国地质大学出版社
    马力,陈焕疆,甘克文,徐克定,许效松,吴根耀,葉舟,梁兴,吴少华,邱蕴玉,章平澜,葛芃芃.2004.中国南方大地构造和海相油气地质.北京:地质出版社
    南颐.1989.粤西冻水坑发现晚元古代微古植物化石.中国区域地质,(2):183-185
    南颐.1994.粤西云开群的划分及其地质年代.广东地质,9(4):1-11
    彭松柏,战明国,彭少梅,张业明,付建明.1999.云开地区蛇绿混杂岩的发现及意义.华南地质与矿产,(1):24-25
    彭松柏,金振民,付建明,刘云华,何龙清,蔡明海.2006a.两广云开隆起区基性侵入岩的地球化学特征及其构造意义.地质通报,25(4):434-441
    彭松柏,金振民,付建明,何龙清,蔡明海,刘云华.2006b.云开地区新元古代蛇绿岩的地球化学证据及其构造意义.地质学报,80(6):814-825
    彭松柏,刘松峰,林木森,吴长峰,韩庆森.2016a.华夏早古生代俯冲作用(Ⅰ):来自糯垌蛇绿岩的新证据.地球科学,41(5):765-778
    彭松柏,刘松峰,林木森,吴长峰,韩庆森.2016b.华夏早古生代俯冲作用(Ⅱ):大爽高镁-镁质安山岩新证据.地球科学,41(6):931-947
    覃小锋,周府生,胡贵昂,李广宁,谢凌峰,周开华,黄锡强,潘艺文.2005.云开地块北缘MORB型火山岩的首次发现及其大地构造意义.地质科技情报,24(3):20-24
    覃小锋,潘元明,李江,李容森,周府生,胡贵昂,钟锋运.2006.桂东南云开地区变质杂岩锆石SHRIMP U-Pb年代学.地质通报,25(5):553-559
    覃小锋,潘元明,夏斌,李容森,周府生,胡贵昂,陆国斌.2007.云开地块北缘构造带中变质基性火山岩的地球化学特征及其大地构造意义.地球化学,36(3):311-322
    覃小锋,王宗起,胡贵昂,曹洁,冯佐海.2013.两广交界地区壶垌片麻状复式岩体的年代学和地球化学:对云开地块北缘早古生代构造-岩浆作用的启示.岩石学报,29(9):3115-3130
    丘元禧,张渝昌,马文璞.1999.雪峰山的构造性质与演化:一个陆内造山带的形成演化模式.北京:地质出版社,1-153
    舒良树.2012.华南构造演化的基本特征.地质通报,31(7):1035-1053
    舒良树.2014.华南早古生代地质问题.见:2014年中国地球科学联合学术年会---专题11:华南大陆构造论文集.北京:中国地球物理学会,2283-2285
    王磊,龙文国,徐德明,徐旺春,周岱,金鑫镖,黄皓,张鲲.2015.云开地区变质基底锆石U-Pb年代学及对华夏地块Grenvillian事件的指示.地学前缘,22(2):25-40
    王丽娟,于津海,O’Reilly SY,Griffin WL,孙涛,魏震洋,舒良树,蒋少涌.2008.华夏南部可能存在Grenville期造山作用:来自基底变质岩中锆石U-Pb定年及Lu-Hf同位素信息.科学通报,53(14):1680-1692
    王祖伟,周永章,赵凤清,金文山,甘晓春.1997.华南地区深部地质研究进展.地球科学进展,12(3):259-264
    王祖伟,周永章,张海华,周汉文.1998.云开地块基底演化与成矿作用.前寒武纪研究进展,21(1):45-53
    吴元保,郑永飞.2004.锆石成因矿物学研究及其对U-Pb年龄解释的制约.科学通报,49(16):1589-1604
    易立文,马昌前,王连训,赖中信,李湘玉,杨亚楠,吴飞,胡晏如.2014.华南晚奥陶世次火山岩的发现:早古生代与俯冲有关的英安岩.地球科学报,39(6):637-653
    于津生,桂训唐,黄琳.1991.广东罗定泗纶混合岩田同位素组成特征.广东地质,6(3):73-82
    袁正新.1995.粤西及其邻区的区域构造对金(银)成矿作用的控制.武汉:中国地质大学出版社,52-81
    张国伟,郭安林,王岳军,李三忠,董云鹏,刘少峰,何登发,程顺有,鲁如魁,姚安平.2013.中国华南大陆构造与问题.中国科学(地球科学),43(10):1553-1582
    张业明,彭松柏.2000.云开元古宙陆壳基底年代格架及华南前震旦纪构造演化初论.华南地质与矿产,(1):1-10
    张志兰,袁海华,南颐.1998.用颗粒锆石分层蒸发法确定云开群罗罅组的时代.矿物岩石,18(1):85-90
    钟增球,游振东,周汉文,韩郁菁.1996.两广云开隆起区基底的组成演化及其基本结构格局.中国区域地质,(1):36-43
    周岱,龙文国.2013.华南云开地区早古生代基性岩锆石U-Pb年代学及Lu-Hf同位素组成.见:2013年全国岩石学与地球动力学研讨会摘要集.北京:中国地质学会,308
    周国强,郑有铭,吴安生.1996.两广云开地区前震旦纪地层.中国区域地质,(4):296-303
    周雪瑶,于津海,王丽娟,沈林伟,张春晖.2015.粤西云开地区基底变质岩的组成和形成.岩石学报,31(3):855-882
    周永章,曾长育,李红中,安燕飞,梁锦,吕文超,杨志军,何俊国,沈文杰.2012.钦州湾-杭州湾构造结合带(南段)地质演化和找矿方向.地质通报,31(2-3):486-491
    周永章,郑义,曾长育,梁锦.2015.关于钦-杭成矿带的若干认识.地学前缘,22(2):1-6
    (1)武汉地质调查中心.2011.中南地区地质图(内部资料)

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700