| 241 | 2 | 238 |
| 下载次数 | 被引频次 | 阅读次数 |
南黄海千里岩榴辉岩对研究华北板块和扬子板块碰撞缝合线有重要意义。千里岩榴辉岩变形作用较弱,经历了多期退变质作用。千里岩榴辉岩原岩为拉斑系列的玄武岩,与大别苏鲁造山带榴辉岩相似。千里岩榴辉岩微量与稀土元素配分模式均与大别苏鲁造山带榴辉岩有较大差异。千里岩榴辉岩大离子亲石元素相对于N-MORB富集,高场强元素特征与N-MORB基本一致,无Nb、Ta、Zr、Ti负异常;稀土元素配分形式为LREE亏损的左倾型。千里岩榴辉岩主微量元素判别图与微量元素特征值均指示其形成的构造环境为弧后盆地。榴辉岩的207Pb/204Pb比值不同于华北板块而接近扬子板块,继承性锆石(747±19)Ma的SHRIMP U-Pb年龄说明其原岩经历了仅在扬子板块有记录的晋宁期热事件。该区所在的千里岩隆起区代表了扬子板块的基底。
Abstract:The eclogites in Qianliyan Island,South Yellow Sea is important to conducting further research of Dabie-Sulu Orogen.The degree of eclogite deformation in Qianliyan is low,but they experienced multistage retrometamorphism.The protolith of eclogite from Qianliyan is tholeiitic basalt,similar to that of Dabie-Sulu orogen.The trace element and REE distribution patterns of eclogite show major differences between Qianliyan and Dabie-Sulu orogen.HFSE of eclogite from Qianliyan is similar to NMORB,but LILE is richer than N-MORB.No negative Nb,Ta,Zr,Ti anomalies indicates they are different to IAT.The fractionation between LREE and HREE is not clear and the REE distribution patterns show the depletion of LREE compared with N-MORB.The gneiss shows the relative concentration of LILE and evident depletion of HFSE which is similar to the character of IAT.Its REE distribution patterns are consistent with that of the upper crust.The geochemical discrimination diagrams indicate the eclogites of Qianliyan have both features of N-MORB and IAT,formed in back-arc basin setting.The 207Pb/204 Pb radio shows that the eclogites of Qianliyan are belonged to he Yangtze Cration.The inherited zircon Shrimp U-Pb age(747±19)Ma implies the ecogites had experienced Jinningian magmatic event.In conclusion,the basement of Qianliyan uplift belongs to the Yangtze Cration.
[1]杨森楠.秦岭古生代陆间裂谷系的演化[J].地球科学,1985,10(4):53-62.
[2]杨巍然,王豪.中国板块构造概况[J].地球科学,1991,16(5):505-513.
[3]Yin A,Nie S Y.An indentation model for the North and South China collision and the development of the Tan-Lu and Honam fault systems,eastern Asia[J].Tectonic,1993,12:801-813.
[4]周建波,郑永飞,李龙,等.大别—苏鲁超高压变质带内部的浅变质岩[J].岩石学报,2001,17(1):39-48.
[5]刘光鼎.中国海地球物理场和地球动力学特征[J].地质学报,1992,66(4):300-314.
[6]蔡乾忠.黄海含油气盆地区域地质与大地构造环境[J].海洋地质动态,2002,18(11):8-12.
[7]蔡峰,孙萍.黄海海域的中朝造山带与沉积盆地[J].海洋科学,2006,30(7):69-75.
[8]纪壮义,赵环金,赵光华.黄海海域千里岩岛发育榴辉岩[J].山东地质,1992,8(2):1-2.
[9]韩宗珠,肖莹,于航,等.南黄海千里岩岛榴辉岩的矿物化学及成因探讨[J].海洋湖沼通报,2007(1):83-87.
[10]李敏.南黄海千里岩榴辉岩隆起基底性质及动力学演化机制——来自榴辉岩的岩石学和地球化学证据[D].青岛:中国海洋大学,2011.
[11]马杏垣.江苏响水值内蒙满都拉地学断面南北两段的地质观察[J].地球科学—中国地质大学学报,1989(1):1-7.
[12]来志庆,邹昊,陈淳,等.南黄海千里岩隆起区构造属性及地质演化[J].海洋湖沼通报,2011(4):164-168.
[13]山东省科学技术委员会.山东海岛研究[M].济南:山东科学技术出版社,1995,43-320.
[14]Li S Z,Kusky T M,Zhao G C,et al.Thermochronological Constraints on Two-Stage Extrusion of HP/UHP Terranes in the Dabie-Sulu Orogen,Eastern-Central China[J].Tectonophysics,2011,504:25-42.
[15]廖晶,岳保静,施剑.千里岩隆起在海区延伸问题探讨[J].海洋地质与第四纪地质,2013,33(2):153-162.
[16]汪双双.北祁连乌鞘岭蛇绿岩地球化学特征及其构造意义[D].兰州:兰州大学,2009.
[17]Winchester J A,Floyd P A.Geochemical magma type discrimination:application to altered and metamorphosed basic igneous rocks[J].Earth and Planetary Science Letters,1976,28,459-469.
[18]张安达,刘良,王焰,等.北秦岭榴辉岩的地球化学特征及形成环境[J].西北大学学报(自然科学版),2003,33(2):191-195.
[19]吴元保,陈道公,程昊,等.北大别饶拔寨退变质榴辉岩的地球化学特征[J].地震地质,2000,22(增刊):99-103
[20]刘贻灿,徐树桐,李曙光,等.大别山北部榴辉岩的地球化学特征和Sr,Nd同位素组成及其大地构造意义[J].中国科学(D辑),2000,30(增刊):99-107.
[21]Sun S S,McDonough W F.Chemical and isotopic systematics of oceanic basalts:implications for mantle composition and processes[J].Geological Society Special Publications,1989,42:313-345.
[22]Pearce J A.Trace element characteristics of lava from destructive plate boundaries[M].∥Thorps R S,ed.Andesite.Chichester:Wiley,1983,525-538.
[23]Pearce J A,Alabaster T,Shelton A W,et al.The Oman ophiolite as a Cretaceous arc-basin complex:evidence and implication[J].Phil Trans R Soc Lond,1981,A300:299-317.
[24]彭松柏,李昌年,Kusky Timothy M,等.鄂西黄陵背斜南部元古宙庙湾蛇绿岩的发现及其构造意义[J].地质通报,2010,29(1):8-20.
[25]徐力峰,夏斌,李建峰,等.藏北湖区拉弄蛇绿岩帧状玄武岩地球化学特征及其成因[J].大地构造与成矿学,2010,34(1):105-113.
[26]许继锋,于学元,李献华,等.高度亏损的N-MORB型火山岩的发现:勉略古洋盆存在的新证据[J].科学通报,1997,42(22):2414-2418.
[27]Pearce J A.Lippard S J,Roberts S.Characteristics and tectonic significance of supra-subduction zone ophiolites∥MarginalBasin Geology[J].Geol Soc Lond Spec Pub,1984,l16:77-94.
[28]邢光福.Dupal同位素异常的概念、成因及其地质意义[J].火山地质与矿产,1997,18(4):281-291.
[29]张本仁,韩吟文,许继锋,等.北秦岭新元古代前属于扬子板块的地球化学证据[J].高校地质学报,1998,4(4):369-381.
[30]张本仁,高山,张宏飞,等.秦岭造山带地球化学[M].北京:科学出版社,2003,37-41.
[31]侯青叶,张宏飞,张本仁,等.祁连造山带中部拉脊山古地幔特征及其归属:来自基性火山岩的地球化学证据[J].地球科学—中国地质大学学报,2005,30(1):62-69.
[32]Meschede M A.Method of discriminating between different type of mid-ocean ridge basalts and continental tholeiites with Nb-Zr-Y diagram[J].Chem Geol,1986,56:207-218.
[33]第五春荣,孙勇,刘良,等.北秦岭宽坪岩群的解体及新元古代N-MORB[J].岩石学报,2010,26(7):2025-2038.
[34]欧阳京,汪双双,于漫,等.岛弧环境中不同成因的火成岩组合及其地质意义[J].甘肃地质,2010,19(2):18-26.
[35]廖群安,薛重生,李昌年,等.赣东北地区早古生代登山岩群弧后盆地火山岩的成因与洋壳演化[J].岩石矿物学杂志,1999,18(1):1-7.
[36]张贺.南黄海前陆盆地动力过程与盆山耦合关系研究[D].青岛:中国海洋大学,2013.
基本信息:
DOI:10.16441/j.cnki.hdxb.2014.11.009
中图分类号:P588.3;P736.3
引用信息:
[1]李敏,韩宗珠,许红,等.南黄海千里岩岛榴辉岩的地球化学特征及成因分析[J],2014,44(11):59-66.DOI:10.16441/j.cnki.hdxb.2014.11.009.
基金信息:
国家自然科学基金项目(41376053)资助