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敦煌地塊南緣石炭紀埃達克巖的發(fā)現(xiàn)及其地質(zhì)意義*

2014-09-17 08:20:16朱濤王洪亮徐學(xué)義陳雋璐馬中平李智佩朱小輝李平
巖石學(xué)報 2014年2期
關(guān)鍵詞:埃達克巖石學(xué)阿爾金

朱濤 王洪亮 徐學(xué)義 陳雋璐 馬中平 李智佩 朱小輝 李平

國土資源部巖漿作用成礦與找礦重點實驗室,西安地質(zhì)調(diào)查中心,西安 710054

1 引言

敦煌地塊主體位于甘肅省境內(nèi),西與塔里木盆地接壤,南部及東部被阿爾金斷裂截斷,北部與北山造山帶相接。前人研究認為該地塊主要由前寒武紀敦煌巖群、古生代侵入體和中、新生代火山-沉積巖系組成(王洪亮等,2007;徐學(xué)義等,2008)。自1936年孫健初先生在敦煌三危山地區(qū)創(chuàng)名“敦煌系”以來(中國地層典編委會,1996),針對敦煌地區(qū)的研究主要集中在敦煌巖群的物質(zhì)組成、形成時代、構(gòu)造屬性等方面,已有的年代學(xué)研究表明敦煌巖群形成時代主要為新太古代-古元古代(李志琛,1994;梅華林等,1998;孟繁聰?shù)龋?011),并認為其是塔里木地塊東南緣的重要組成部分(李志琛,1994;梅華林等,1998;許志琴等,1999;孟繁聰?shù)龋?011)。

圖1 阿克塞縣青石溝地區(qū)地質(zhì)略圖(據(jù)甘肅省地質(zhì)局第二區(qū)域地質(zhì)測量隊,1977① 甘肅省地質(zhì)局第二區(qū)域地質(zhì)測量隊.1977.1∶20萬多壩溝幅地質(zhì)圖修改)1-敦煌雜巖;2-花兒地組;3-基性、超基性巖;4-花崗巖;5-石英閃長巖;6-斷層;7-采樣點;8-第四系Fig.1 Simpli fi ed geological map of the Qingshigou showing the distribution of intrusions

前人對敦煌地區(qū)發(fā)育的地質(zhì)體年代學(xué)研究表明,該區(qū)存在新太古代(2.67Ga)、古元古代中期(2.1~2.2Ga)、新元古代早期(920~940Ma)、新元古代晚期(760Ma±)、早古生代(440~500Ma)和中生代(100~136Ma)多期構(gòu)造熱事件(梅華林等,1998;張志誠等,2009;張建新等,2011),然而敦煌地區(qū)有關(guān)晚古生代的研究鮮有報道,缺乏對晚古生代侵入體的精細研究。本文對出露于甘肅省阿克塞縣青石溝的黑云母石英閃長巖巖體進行了詳細的野外地質(zhì)、巖石學(xué)、地球化學(xué)、鋯石LA-ICP-MS U-Pb年代學(xué)、Hf同位素地球化學(xué)和Sr-Nd同位素地球化學(xué)研究,分析了該巖體的形成時代和構(gòu)造環(huán)境,希望能為該區(qū)古生代構(gòu)造演化的研究提供信息。

2 地質(zhì)背景及巖石學(xué)特征

研究區(qū)出露地層主要有晚太古代-古元古代敦煌雜巖和薊縣紀花兒地組,同時還發(fā)育早古生代超基性巖和晚古生代侵入體。其中敦煌雜巖由條痕狀-眼球狀混合巖,角閃黑云斜長片麻巖,石榴黑云片巖,含榴二云母石英片巖,石英巖和大理巖等組成,超基性巖形成時代為奧陶紀,侵入體侵位時代以泥盆紀、石炭紀和二疊紀為主(甘肅省地質(zhì)局,1974②甘肅省地質(zhì)局.1974.1∶20萬敦煌幅區(qū)域地質(zhì)調(diào)查報告)。

本文所述青石溝巖體為灰白色,塊狀構(gòu)造,侵位于敦煌雜巖中,剖面中敦煌巖群主要由黑云石英片巖和大理巖組成。其中同位素年齡樣品(09-10-1)采自阿克塞縣多壩溝鄉(xiāng)青石溝內(nèi)(圖1),采樣點坐標為北緯39°23'41.9″、東經(jīng)93°27'54.4″。依據(jù)薄片鏡下觀察,樣品具中-細粒他形粒狀結(jié)構(gòu),有輕微的變質(zhì)變形,主要組成礦物為斜長石(50%)、堿性長石(10%)、石英(15%)、黑云母(20%)及角閃石(5%)。其中斜長石多呈半自形-自形柱狀,聚片雙晶發(fā)育;堿性長石為半自形-他形板狀,表面常高嶺土化;石英主要呈他形粒狀,分布于長石和角閃石礦物的間隙;角閃石呈自形-半自形短柱狀;黑云母呈片狀分布,顆粒邊界常綠泥石化;副礦物主要有鋯石、榍石、磷灰石、綠簾石和磁鐵礦。根據(jù)礦物組合特征將其命名為黑云母石英閃長巖。

3 樣品測試方法

巖石地球化學(xué)分析在西安地質(zhì)調(diào)查中心實驗測試中心完成,其中主量元素測試采用XRF(X射線熒光光譜)分析,微量元素采用ICP-MS(等離子質(zhì)譜法)分析,分析精度均高于10%。

鋯石U-Pb同位素年代學(xué)和Hf同位素分析均在西北大學(xué)大陸動力學(xué)國家重點實驗室完成。其中,鋯石U-Pb年代學(xué)的鋯石微量元素分析和U-Pb年齡測定在Hewlett Packard公司的 Agilient 7500a ICP-MS、德國 Lambda Physik公司的ComPex102 Excimer激光器(工作物質(zhì)ArF,波長193nm)以及MicroLas公司的GeoLas 200M光學(xué)系統(tǒng)的聯(lián)機上進行,激光束斑直徑為30μm,激光剝蝕樣品的深度為20~40μm。數(shù)據(jù)處理采用GLITTER4.0程序,年齡計算以標準鋯石91500為外標進行同位素比值分餾校正,元素濃度計算采用NIST610做為標,29Si為內(nèi)標(Yuan et al.,2004),樣品的諧和圖、加權(quán)平均年齡計算及圖件繪制采用Isoplot軟件(Ludwig,2003)。

鋯石原位Hf同位素測定在Nu Plasma HR多接收電感耦合等離子體質(zhì)譜儀(MC-ICP-MS)上完成,激光剝蝕系統(tǒng)為Geolas 2005 193nm準分子激光取樣系統(tǒng),激光的脈沖頻率為10Hz,激光束直徑為32μm,176Lu和176Yb對176Hf的同質(zhì)異位素干擾通過監(jiān)測175Lu和172Yb信號強度,采用175Lu/176Lu=0.02655和176Yb/172Yb=0.5886(Chu et al.,2002)進行校正,以標準鋯石91500、GJ-1與樣品鋯石交叉分析對儀器漂移進行外部監(jiān)控。分析結(jié)果所獲得標準樣品91500和GJ-1的176Hf/177Hf值分別為 0.282283±0.000041(n=4,2σ)和0.282019±0.000029(n=4,2σ),在誤差范圍內(nèi)與參考值吻合(Elhlou et al.,2006;Wu et al.,2006)。計算εHf(t)時,球粒隕石的176Hf/177Hf比值為0.282772,176Lu/177Hf的比值為0.0332(Blichert-Toft and Albarede.,1997),單階段 Hf模式年齡(tDM1)計算時,虧損地幔的值采用176Hf/177Hf=0.28325,176Lu/177Hf=0.0384(Griffin et al.,2000),兩階段Hf模式年齡(tDM2)計算時,下地殼的176Lu/177Hf比值為0.022(Amelin et al.,2000)。

Sr-Nd同位素分析在中國地質(zhì)大學(xué)(武漢)Finnigan MAT-261儀器上完成,分析流程見文獻(Zhang et al.,2002)。采用86Sr/87Sr=0.1194和146Nd/144Nd=0.7219分別對Sr和Nd同位素比值標準化(Zhang et al.,2002)。實驗中,Sr和 Nd空白值分別 <1ng和 <50pg,標樣 Jndi-1的143Nd/144Nd值為 0.512095±0.000006(2σ),標樣 NBS987的87Sr/86Sr值為0.710281±0.000008(2σ)。

4 巖石地球化學(xué)特征

4.1 主量元素特征

青石溝巖體代表性樣品的主量元素和微量元素分析結(jié)果見表1。結(jié)果表明巖石具有富Si、Al、Na以及貧K的特征(SiO2=62.28% ~64.76%;Al2O3=16.40% ~17.37%;MgO=1.74% ~1.95%,Mg#=41.11~42.97;Na2O=4.05% ~4.45%,K2O=2.33% ~2.54%,Na2O/K2O=1.59~1.85)。樣品的A/CNK值介于0.99~1.05之間,平均1.01,屬于準鋁質(zhì)-過鋁質(zhì)系列巖石(圖2)。里特曼指數(shù)(σ)為2.30~2.71,在SiO2-Na2O-K2O-CaO圖中(圖2),樣品點全部落在鈣堿性系列巖石范圍內(nèi),樣品的主元素特征表明青石溝巖體為鈣堿性準鋁-過鋁質(zhì)黑云母石英閃長巖。

4.2 微量元素特征

微量元素分析結(jié)果顯示青石溝黑云母石英閃長巖稀土總量介于139×10-6~189×10-6之間,在球粒隕石標準化稀土配分模式圖上(圖3),呈輕稀土富集的右傾型稀土配分模式,(La/Yb)N=12.30~20.86,不發(fā)育 Eu異常(δEu=1.13~1.36);在微量元素原始地幔蛛網(wǎng)圖上(圖3),富集大離子親石元素(如 Rb、Ba、K 等),虧損 Nb、Ta、P、Ti等高場強元素。同時,樣品具有較高的Sr、Ba及較低的Yb、Y含量(Sr=642×10-6~722×10-6;Ba=2030×10-6~2160×10-6;Yb=0.88×10-6~1.16×10-6;Y=10.30×10-6~12.90×10-6),Sr/Y=52.20~66.85,表現(xiàn)出與埃達克巖相似的微量元素地球化學(xué)特征。

圖2 青石溝巖體的A/NK-A/CNK圖解(據(jù)Maniar and Piccoli,1989)和SiO2-(Na2O+K2O-CaO)圖解(據(jù)Frost et al.,2001)Fig.2 Diagram of A/NK vs.A/CNK(after Maniar and Piccoli,1989)and diagram of SiO2vs.Na2O+K2O-CaO(after Frost et al.,2001)for Qingshigou intrusive body

表1 青石溝閃長巖體主量元素(wt%)和微量元素(×10-6)組成Table 1 Major elements(wt%)and trace elements(×10-6)compositions of Qingshigou intrusive body

圖3 青石溝閃長巖球粒隕石標準化稀土配分模式圖和微量元素原始地幔標準化蛛網(wǎng)圖(標準化值據(jù)Sun and McDonough,1989)Fig.3 Chondrite-normalized REE patterns and primitive mantle-normalized trace element patterns of Qingshigou intrusive body (normalization values after Sun and McDonough,1989)

5 同位素年代學(xué)

5.1 鋯石U-Pb年代學(xué)

巖體中的鋯石多為自形長柱狀,粒度介于100~300μm之間,具有清晰的巖漿振蕩環(huán)帶(圖4),鋯石顆粒均具有較高的Th/U比值(0.59~1.64),顯示出典型的巖漿成因鋯石特征 (Belousova et al.,2002;Hoskin and Schaltegger.,2003)。本文對(09-10-1)鋯石樣品進行了30次分析,所有測點顯示了一致的分析結(jié)果,206Pb/238U表面年齡變化于330~342Ma(表2),并在諧和線上形成一個年齡集中區(qū),其206Pb/238U加權(quán)平均年齡為335.0±1.5Ma(圖4),說明青石溝巖體形成于早石炭世中期。

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圖4 青石溝閃長巖CL圖像和鋯石LA-ICPMS U-Pb年齡諧和圖Fig.4 Zircon CL images and U-Pb age concordia diagram

表3 青石溝巖體Sr-Nd同位素組成Table 3 Whole-rock Sr-Nd composition of the Qingshigou intrusive body

5.2 Sr-Nd同位素組成

所有樣品的Sm/Nd比值變化介于0.179~0.196之間,與陸殼巖石(0.15~0.24)相似(Hawkesworth and Calsteren,1984)。Sr-Nd同位素分析顯示巖體的初始(87Sr/86Sr)i值介于0.7069~0.7071之間,初始(143Nd/144Nd)i值介于0.5118~0.5120之間,εNd(t)介于 -9.54~ -11.20間(表3),具有明顯的殼源巖漿特征。根據(jù)Nd同位素相關(guān)計算公式,利用巖體的形成時代(335Ma)計算獲得青石溝黑云母石英閃長巖Nd模式年齡tDM介于1.83~1.98Ga,遠遠大于巖漿侵位年齡,說明樣品源區(qū)應(yīng)為古元古代地殼物質(zhì)。

5.3 鋯石Hf同位素

對樣品進行Hf同位素測試可知,30個測點的176Yb/177Hf和176Lu/177Hf比值范圍分別為 0.014003~0.050817和0.000545~0.001987(表4),176Lu/177Hf比值均小于 0.002,表明這些鋯石形成后沒有明顯的放射性成因Hf的積累,所測定的176Hf/177Hf基本代表了其形成時體系的Hf同位素組成(吳福元等,2007)。測試結(jié)果表明,30個測點的εHf(t)值為-7.6~-16.6,表現(xiàn)出明顯的殼源特征,對應(yīng)二階段模式年齡介于1533~1954Ma間,與全巖Sr-Nd同位素測試結(jié)果一致,表明青石溝黑云母石英閃長巖的源區(qū)可能是中元古代-古元古代地殼物質(zhì)。

6 討論

6.1 巖漿來源及其源區(qū)性質(zhì)

青石溝巖體具有高 SiO2(>56%;平均63.75%)、高Al2O3(>15%;平均 17.03%)和低 MgO(<3%;平均1.82%)的主量元素地球化學(xué)特征,強烈富集Sr(>400×10-6;平均693×10-6)、虧損重稀土元素Yb(<1.9×10-6;平均1.05×10-6)和Y(<18×10-6;平均11.79×10-6),具有較高的Sr/Y比值(52.20~66.85),與埃達克質(zhì)巖石的地球化學(xué)特征一致。在Sr/Y-Y圖解(圖5a)和(La/Yb)N-YbN(圖5b)圖解上,所有樣品均落入典型埃達克巖區(qū)域。表明青石溝黑云母石英閃長巖體為埃達克質(zhì)巖石。

埃達克巖的提出起初是解釋與年輕(≤25Ma)俯沖大洋巖石圈有關(guān)的新生代島弧環(huán)境形成的火山巖和侵入巖(Defant and Drummond,1990)。隨著研究的深入,越來越多具有與埃達克巖相似地球化學(xué)屬性的巖石被發(fā)現(xiàn)(Castillo,2006,2012;張旗等,2004;張旗,2008)。而對具有高Sr/Y、La/Yb比值,輕稀土富集,重稀土虧損,高度富集Sr、Ba和虧損Y、Sc元素的硅質(zhì)富鈉巖漿巖進行的研究表明該類巖石包括太古宙TTG巖系、新生代的高硅埃達克巖以及顯生宙富鈉花崗巖(Topuz et al.,2005),該類巖石的成因問題一直存在諸多爭議(張旗等,2004,2008;Condie,2005;Martin et al.,2005)。就目前研究成果,埃達克巖成因模式主要有:(1)俯

沖洋殼玄武質(zhì)組分的部分熔融(Defant and Drummond,1990,1993)產(chǎn)生的流體和楔形地幔橄欖巖發(fā)生不同程度的反應(yīng)所形成的埃達克巖(Smithies,2000;Prouteau et al.,2001);(2)含水玄武質(zhì)巖漿高壓條件下發(fā)生結(jié)晶分異作用(Prouteau and Scaillet,2003);(3)受玄武質(zhì)巖漿底侵作用或陸內(nèi)俯沖的上地殼脫水作用產(chǎn)生的流體誘發(fā)的增厚下地殼的熔融(Wareham et al.,1997;張旗等,2001a,b;Chung et al.,2003;Wang et al.,2005);(4)古老的拆沉下地殼發(fā)生部分熔融產(chǎn)生的流體和地幔橄欖巖相互作用形成的高Mg#埃達克巖(Xu et al.,2002;Gao et al.,2004)。

圖5 青石溝閃長巖Sr/Y-Y圖(a,據(jù)Defant and Drummond,1993)和YbN-(La/Yb)N圖(b,據(jù)Drummond and Defant,1990)Fig.5 Sr/Y vs.Y(a,Defant and Drummond,1993)and YbN-(La/Yb)N(b,after Drummond and Defant,1990)of Qingshigou intrusive body

就青石溝巖體而言,其Na2O值為4.05% ~4.45%,平均4.26%,Na2O/K2O比值介于1.59~1.85之間,平均1.74,均低于俯沖板片熔融形成的埃達克質(zhì)巖石的Na2O值(4.88%)和 Na2O/K2O比值(2.5~6.5)(Sajona et al.,2000),同時青石溝巖體的87Sr/86Sr=0.7069~0.7071,較俯沖洋殼板片部分熔融的埃達克巖(87Sr/86Sr<0.7040)高(Defant and Drummond.,1990,1993),巖體具有較低的εNd(t)值(-9.39~ -11.03)和 εHf(t)值(-7.6~ -16.6)以及較高的Pb含量,表現(xiàn)出明顯的殼源特征,Nd模式年齡介于1.83~1.98Ga之間,Hf模式年齡為1.53~1.95Ga,與俯沖洋殼板片部分熔融的埃達克巖明顯不同。巖體較小的Nb值(7.78×10-6~9.05×10-6)與洋島玄武巖(大于20×10-6,Reagan and Gill,1989)Nb值存在明顯差異,且?guī)r體具有較低的Cr、Ni值,說明其并非含水玄武質(zhì)巖漿結(jié)晶分異的產(chǎn)物。較低的MgO含量(平均1.82%)和Cr(15.7×10-6~20.6×10-6)、Ni(10.2×10-6~12.3×10-6)含量,與拆沉下地殼部分熔融的高Mg#,富Cr富Ni的特征存在較大差別(Gao et al.,2004)。巖體所具有的高Sr低Yb,高Sr/Y比,無Eu異常的特征,表明巖漿源區(qū)主要殘留相礦物為石榴石和角閃石(圖5),無或極少斜長石,這些特征表明該巖體為下地殼基性巖石高程度熔融所產(chǎn)生,且該巖體Mg#(41.11~42.97,平均41.71)與下地殼部分熔融產(chǎn)生的巖漿Mg#(小于45)相似(Rapp et al.,1999);因此本文研究認為青石溝巖體形成于加厚下地殼中玄武巖的熔融。

通過青石溝巖體的同位素地球化學(xué)研究表明,巖漿源區(qū)具有明顯的殼源特征(εNd(t)值-9.39~-11.03、εHf(t)值-7.6~-16.6),并且有較大的Nd和Hf模式年齡(Nd模式年齡1.83~1.98Ga,Hf模式年齡1.53~1.95Ga),因此我們認為青石溝巖體的源區(qū)為元古代地殼物質(zhì),結(jié)合前人對敦煌雜巖年代學(xué)的研究(孟繁聰?shù)龋?011;辛后田等,2011),推測青石溝巖體的源區(qū)可能為敦煌雜巖的組成部分。

6.2 地球動力學(xué)意義

前人通過對研究區(qū)西南側(cè)紅柳溝-拉配泉地區(qū)的研究,從不同角度對紅柳溝-拉配泉蛇綠巖帶進行了論述,并將其演化與北祁連地區(qū)進行對比,提出紅柳溝-拉配泉蛇綠巖帶是北祁連蛇綠巖帶西延部分的認識(許志琴等,1999;張建新和孟繁聰,2006;張建新等,2007;楊經(jīng)綏等,2008;陳柏林等,2010),并且認為北祁連縫合帶是阿拉善-敦煌地塊和祁連-柴達木陸塊的主要邊界(Song et al.,2009a,b),研究表明北祁連洋的開啟時限為新元古代-寒武紀(560~495Ma)(史仁燈等,2004;曾建元等,2007),閉合時限為奧陶紀(490~440Ma),并于早泥盆世(420~400Ma)強烈造山(Song et al.,2006;宋述光等,2009)。

近年來眾多學(xué)者對紅柳溝-拉配泉蛇綠構(gòu)造混雜巖帶進行了大量的研究,研究結(jié)果表明該帶的形成時限為寒武紀黔東世-早奧陶世(521~479Ma)(劉良,1999;車自成等,2002;修群業(yè)等,2007;楊經(jīng)綏等,2008;張志誠等,2009;高曉峰等,2012),該帶南北兩側(cè)分布著一系列與洋盆閉合和洋殼俯沖相關(guān)的花崗巖體,巖體形成時代分布于500~462Ma之間(郝杰等,2006;曹玉亭等,2010;康磊等,2011;張占武等,2012),另外還發(fā)育眾多同碰撞-碰撞后S型花崗巖體,形成于474~404Ma(吳才來等,2005;戚學(xué)祥等,2005;楊經(jīng)綏等,2008)。

已有研究表明,塔里木-敦煌地區(qū)自奧陶紀發(fā)育濱-淺海穩(wěn)定類型碎屑巖-碳酸鹽巖組合,早志留世存在有限洋盆,早泥盆世開始發(fā)育陸內(nèi)山間磨拉石沉積(徐學(xué)義等,2008)。本文所述形成于石炭紀(335Ma)的青石溝黑云母石英閃長巖的存在,充分表明早石炭世敦煌地區(qū)存在相對較厚的地殼,結(jié)合研究區(qū)東部橋灣晚石炭世(303Ma)殼?;旌匣◢弾r體的存在(馮繼成等,2012)和塔里木、北山地區(qū)大量二疊紀基性巖漿事實(夏林圻等,2006,2008;趙澤輝等,2006;Yang et al.,2007),表明區(qū)域演化在晚石炭世逐步轉(zhuǎn)為陸內(nèi)伸展階段。因此,我們初步認為敦煌地區(qū)早石炭世為陸陸俯沖(地殼加厚)逐漸向陸內(nèi)伸展體制的轉(zhuǎn)化時期。

7 結(jié)論

(1)鋯石U-Pb年代學(xué)研究表明,青石溝黑云母石英閃長巖形成時代為335±2Ma,為早石炭世早期。

(2)具有埃達克質(zhì)巖石地球化學(xué)特征的青石溝巖體為加厚下地殼熔融的產(chǎn)物,其源區(qū)為元古代地殼物質(zhì),可能是敦煌雜巖的組成部分。

(3)結(jié)合區(qū)域地質(zhì)特征和青石溝巖體所具有的地球化學(xué)和同位素特征,初步認為敦煌地區(qū)早石炭世構(gòu)造環(huán)境由陸陸俯沖(地殼增厚)逐漸向陸內(nèi)伸展體制轉(zhuǎn)化。

致謝張旗研究員和另一位匿名審稿人對文章提出了諸多意見和建議;西安地質(zhì)礦產(chǎn)研究所張二朋和馮益民研究員、西北大學(xué)孫勇教授在成文過程中給予了指導(dǎo)和幫助;樣品測試過程中得到了西北大學(xué)大陸動力國家重點實驗室柳小明、弓虎軍、第五春榮、戴夢寧、張紅等老師的大力幫助;成文過程中還得到了西北大學(xué)陳亮、秦江鋒、楊釗博士和西安地質(zhì)礦產(chǎn)研究所高曉峰、王超等博士的幫助;在此一并表示感謝。

Amelin Y,Lee DC and Halliday AN.2000.Early-middle Archaean crustal evolution deduced from Lu-Hf and U-Pb isotopic studies of single zircon grains.Geochimica et Cosmochimica Acta,64(24):4205-4225

Belousova EA,Griffin WL,O’Reilly SY and Fisher N.2002.Igneous zircon:Trace element composition as an indicator of source rock type.Contributions to Mineralogy and Petrology,143(5):602-622

Blichert-Toft J and Albarede F.1997.The Lu-Hf isotope geochemistry of chondrites and the evolution of the mantle-crust system.Earth and Planetary Science Letter,148(1-2):243-258

Castillo PR.2006.An Overview of Adakite petrogenesis.Chinese Science Bulletin,51(6):617-627(in Chinese)

Castillo PR.2012.Adakite petrogenesis.Lithos,134-135:304-316

Cao YT,Liu L,Wang C,Yang WQ and Zhu XH.2010.Geochemical,zircon U-Pb dating and Hfisotope compositionsstudiesfor Tatelekebulake granite in South Altyn Tagh.Acta Petrologica Sinica,26(11):3259-3271(in Chinese with English abstract)

Chen BL,Cui LL,Bai YF,Wang SX,Chen ZL,Li XZ,Qi WX and Liu R.2010.A determining on the displacement of the Altun Tagh sinistral strike-slip fault,NW China:New evidence from the tectonic metallogenetic belt in the eastern part of Altun Tagh Mountains.Acta Petrologica Sinica,26(11):3387-3396(in Chinese with English abstract)

Che ZC,Liu L and Luo JH.2002.Tectonics of China and Adjacent Region.Beijing:Science Press,207-369(in Chinese)

Chu NC,Taylor RN,Chavagnac V et al.2002.Hf isotope ratio analysis using multi-collector inductively coupled plasma mass spectrometry:An evaluation ofisobaric interference corrections. Journalof Analytical Atomic Spectrometry,17(12):1567-1574

Chung SL,Liu DY,Ji J,Chu MF,Lee HY,Wen DJ,Lo CH,Lee TY,Qian Q and Zhang Q.2003.Adakites from continental collision zones:Melting of thickened lower crust beneath southern Tibet.Geology,31(11):1021-1024

Condie KC.2005.TTGs and adakites:Are they both slab melt?Lithos,80(1-4):33-44

Defant MJ and Drummoud MS.1990.Derivation of some mordern are magma by melting of young subducted lithosphere.Nature,347(6294):662-665

Defant MJ and Drummond MS.1993.Mount St.Helens:Potential example of the partial melting of the subducted lithosphere in a volcanic arc.Geology,21(5):547-550

Drummond MS and Defant MJ.1990.A model for trondhjemite-tonalitedacite genesis and crustal growth via slab melting:Archean to modern comparisons.J.Geophys.Res.,95(B13):21503-21521

Elhlou S,Belousova E,Griffin WL,Pearson NJ and O’Reilly SY.2006.Trace Element and isotopic composition of GJ red zircon standard by laser ablation.Goldschmidt Conference Abstracts,70(Suppl.1):A158

Feng JC,Zhang W,Wu TR,Zheng RG,Luo HL and He YK.2012.Geochronology and geochemistry of granite pluton in the north of Qiaowan,Beishan Mountain, Gansu Province, China, and its geological significance.Acta Scientiarum Naturalium Universitatis Pekinensis,48(1):61-70(in Chinese with English abstract)

Frost BR,Barnes CG,Collins WJ,Arculus RJ,Ellis DJ and Frost CD.2001.A geochemical classification for granitic rocks.Journal of Petrology,42(11):2033-2048

Griffin WL,Pearson NJ,Belousova E,Jackson SE,Achterbergh EV,O’Reilly SY and Shee SR.2000.The Hf isotope composition of cratonic mantle LAM-MC-ICP-MS analysis of zircon megacrysts in kimberlites.Geochimica et Cosmochimica Acta,64(1):133-147

Gao S,Rudnick RL,Yuan HL,Liu XM,Liu YS,Xu WL,Ling WL,Ayers J,Wang XC andWang QH.2004.Recyclinglower continental crust in the North China craton.Nature,432(7019):892-897

Gao XF,Xiao PX,Guo L,Dong ZC and Xi RG.2012.Opening of an Early Paleozoic limited oceanic basin in the northern Altyn area:Constraints from plagiogranites in the Hongliugou-Lapeiquan ophiolitic mélange.Scientia Sinica(Terrae),42(3):359-368(in Chinese)

Hawkesworth CJ and Calsteren PWC.1984.Radiogenic isotopes:Some geological applications.In:Henderson P (ed.).Rare Earth Element Geochemistry.Amsterdam:Elsevier,375-421

Hao J,Wang EQ,Liu XH and Sang HQ.2006.Jinyanshan collisional oroginic belt of the Early Paleozoic in the Altun mountains:Evidence from single zircon U-Pb and40Ar/39Ar isotopic dating for the arc magmatite and ophiolitic mélange.Acta Petrologica Sinica,22(11):2743-2752(in Chinese with English abstract)

Hoskin PWO and Schaltegger U.2003.The composition of zircon and igneous and metamorphic petrogenesis.Review in Mineralogy and Geochemistry,53(1):27-62

Kang L,Liu L,Cao YT,Wang C,Yang WQ and Zhu XH.2011.Geochemistry,zircon LA-ICP-MS U-Pb ages and Hf isotopes of Hongliugou moyite from north Altyn Tagh tectonic belt.Geological Bulletin of China,30(7):1066-1076(in Chinese with English abstract)

Li ZC.1994.New Speculation of the age of the metamorphic rock series of the Dunhuang massif.Regional Geology of China,(2):131-134(in Chinese with English abstract)

Liu L.1999.High-pressure metamorphic rocks and ophiolite in Altun Mountains and their geological significance Ph.D.Dissertation.Beijing:Institute of Geology,Chinese Academy of Sciences,1-70(in Chinese with English summary)

Ludwig KR.2003.ISOPLOT 3.00:A Geochronological Toolkit for Microsoft Excel. Berkeley: Berkeley Geochronology Center,California

Martin H,Smithies RH,Rapp R,Moyen JF and Champion D.2005.An overview of adakite,tonalite-trondhjemite-granodiorite(TTG),and sanukitoid:Relationships and some implications for crustal evolution.Lithos,79(1-2):1-24

Maniar PD and Piccoli PM.1989.Tectonic discrimination of granitoids.Geological Society of American Bulletin,101(5):635-643

Mei HL,Yu HF,Lu SN,Li Q,Lin YX and Zuo YC.1998.Archean tonalite in the Dunhuang,Gansu Province:Age from the U-Pb single zircon and Nd isotope.Progress in Precambrian Research,21(2):41-45(in Chinese with English abstract)

Meng FC,Zhang JX,Xiang ZQ,Yu SY and Li JP.2011.Evolution and formation of the Dunhuang Group in NE Tarim basin,NW China:Evidence from detrital-zircon geochronology and Hf isotope.Acta Petrologica Sinica,27(1):59-76(in Chinese with English abstract)

Prouteau G,Scaillet B,Pichavant M and Maury R.2001.Evidence for mantle metasomatism by hydrous silicic melts derived from subducted oceanic crust.Nature,410(6825):197-200

Prouteau G and Scaillet B.2003.Experimental constraints on the origin of the 1991 Pinatubo dacite.J.Petrol.,44(12):2203-2241

Qi XX,Wu CL and Li HB.2005.SHRIMP U-Pb age of zircons from Kazisayi granite in the northern Alty Tagh Mountains and its significations.Acta Petrologica Sinica,21(3):859-866(in Chinese with English abstract)

Rapp RP,Shimizu N,Norman MD and Applegate GS.1999.Reaction between slab-derived melts and peridotite in the mantle wedge:Experimental constraints at 3.8Ga.Chemical Geology,160(4):335-356

Reagan MK and Gill JB.1989.Coexisting calcalkaline and high-niobium basalts from Turrialba volcano,Costa Rica:Implications for residual titanates in arc magma sources.Journal of Geophysical Research,94(B4):4619-4633

Sajona FG,Maury RC,Pubellier M,Leterrier J,Bellon H and Cotten J.2000.Magmatic source enrichment by slab-derived melts in a young post-collision setting,central Mindanao(Philippines).Lithos,54(3-4):173-206

Smithies RH.2000.The Archaean tonalite-trondhjemite-granodiorite(TTG)series is not an analogue of Cenozoic adakite.Earth and Planetary Science Letters,182(1):115-125

Shi RD,Yang JS,Wu CL and Wooden J.2004.First SHRIMP dating for the formation of the Late Sinian Yushigou ophiolite,North Qilian Mountains.Acta Geologica Sinica,78(5):649-657(in Chinese with English abstract)

Song SG,Zhang LF,Niu YL,Su L,Song B and Liu DY.2006.Evolution from oceanic subduction to continental collision:A case study from the northern Tibetan Plateau based on geochemical and geochronological data.Journal of Petrology,47(3):435-455

Song SG,Su L,Niu YL,Zhang GB and Zhang LF.2009a.Two types of peridotite in North Qaidam UHPM belt and their tectonic implications for oceanic and continental subduction:A review.Journal of Asian Earth Sciences,35(3-4):285-297

Song SG,Niu YL,Zhang LF,Wei CJ,Liou JG and Su L.2009b.Tectonic evolution of Early Paleozoic HP metamorphic rocks in the North Qilian Mountains,NW China:New perspectives.Journal of Asian Earth Sciences,35(3-4):334-353

Song SG,Niu YL,Zhang LF and Zhang GB.2009.Time constraints on orogenesis from oceanic subduction to continentalsubtraction,collision,and exhumation:An example from North Qilian and North Qaidam HP-UHP belts.Acta Petrologica Sinica,25(9):2067-2077(in Chinese with English abstract)

Sun SS and McDonough WF.1989.Chemical and isotopic systemmatics of oceanic basalts:Implication for the mantle composition and process.In:Saunder AD and Norry MJ(eds.).Magmatism in the Ocean Basins.Geological Society of London Special Publication,42(1):313-345

The Committee of Stratigraphy of China.1996.Stratigraphic Lexion of China:Paleoproterozoic.Beijing:Geological Publishing House(in Chinese)

Topuz G,Altherr R,Schwarz WH,Sieble W,Satir M and Dokuz A.2005.Post-collisional plutonism with adakite-like signatures:The Eocene Saraycik granodiorite (Eastern Pontides,Turkey).Contribution to Mineralogy and Petrology,150(4):441-455

Tseng CY,Yang HR,Yang HY,Liu DY,Cai JL,Wu HQ and Zuo GC.2007.The Dongcaohe ophiolite from the North Qilian Mountains:A fossil oceanic crust of the Paleo-Qilian ocean.Chinese Science Bulletin,31(1):13-27

Wang Q,McDermott F,Xu JF,Bellon H and Zhu YT.2005.Cenozoic K-rich adakitic volcanic rocks in the Hohxil area,northern Tibet:Lower-crustal melting in an intracontinental setting.Geology,33(6):465-468

Wang HL,Xu XY,He SP et al.2007.1∶1000000 Geological Map of Tianshan and Adjacent Area.Beijing:Geological Publishing House(in Chinese)

Wu CL,Yang JS,Yao SZ,Zeng LS,Chen SY,Li HB,Qi XX,Wooden JL and Mazdab FK.2005.Characteristics of the granitoid complex and itszircon SHRIMP dating atthe south margin ofthe Bashikaogong Basin,North Altun,NW China.Acta Petrologica Sinica,21(3):846-858(in Chinese with English abstract)

Wu FY,Yang YH,Xie LW,Yang JH and Xu P.2006.Hf isotopic compositions of the standard zircons and baddeleyites used in U-Pb geochronology.Chemical Geology,234(1-2):105-126

Wu FY,Li XH,Zheng YF and Gao S.2007.Lu-Hf isotopic systematics and their applications in petrology.Acta Petrologica Sinica,23(2):185-220(in Chinese with English abstract)

Wareham CD,Millar IL and Vaughan APM.1997.The generation of sodic granitic magmas,western Palmer Land,Antarctic Peninsula.Contrib.Mineral.Petrol.,128(1):81-96

Xia LQ,Li XM,Xia ZC,Xu XY,Ma ZP and Wang LS.2006.Carboniferous-Permian rift-related volcanism and mantle plume in the Tianshan,northwestern China.Northwestern Geology,39(1):1-49(in Chinese with English abstract)

Xia LQ,Xia ZC,Xu XY,Li XM and Ma ZP.2008.Petrogenesis of Caboniferous-Early Permian rift-related volcanic rocks in the Tianshan and its neighboring areas,northwestern China.Northwestern Geology,41(4):1-68(in Chinese with English abstract)

Xiu QY,Yu HF,Liu YS,Lu SN,Mao DB,Li HM and Li Q.2007.Geology and Zircon U-Pb age of pillow basalt at Qiashikansoy in northern Altun Tagh,W China.Acta Geologica Sinica,81(6):787-794(in Chinese with English abstract)

Xin HT,Zhao FQ,Luo ZH,Liu YS,Wan YS and Wang SQ.2011.Determination of the Paleoproterozoic geochronological framework in Aqtashtagh area in southeastern Tarim,China,and its geological significance.Acta Geologica Sinica,85(12):1977-1993(in Chinese with English abstract)

Xu JF,Shinjio R,Defant MJ,Wang Q and Rapp RP.2002.Origin of Mesozoic adakitic intrusive rocks in the Ningzhen area of East China:Partial melting of delaminated lower continental crust?Geology,30(12):1111-1114

Xu XY,He SP,Wang HL et al.2008.Geology of Northwest China.Beijing:Science Press(in Chinese)

Xu ZQ,Yang JS,Zhang JX,Jiang M,Li HB and Cui WJ.1999.A Comparison between the tectonic units on the two sides of the Altun sinistral strike-slip fault and the mechanism of lithospheric shearing.Acta Geologica Sinica,73(3):193-205(in Chinese with English abstract)

Yang JS,Shi RD,Wu CL,Su DS,Chen SY,Wang XB and Joseph W.2008.Petrology and SHRIMP age of the Hongliugou ophiolite at Milan,North AItun,at the northern margin of the Tibetan Plateau.Acta Petrologica Sinica,24(7):1567-1584(in Chinese with English abstract)

Yang SF,Li ZL,Chen HL,Santosh M,Dong CW and Yu X.2007.Permian bimodal dyke of Tarim Basin,NW China:Geochemical characteristics and tectonic implications.Gondwana Research,12(1-2):113-120

Yuan HL,Gao S,Liu XM,Li HM,Guntyher D and Wu FY.2004.Accurate U-Pb age and trace element determinations of zircon by laser ablation-inductively coupled plasma-mass spectrometry.Geostandards and Geoanalytical Research,28(3):353-370

Zhang Q,Wang Y,Qian Q,Yang JH,Wang YL,Zhao TP and Guo GJ.2001a.The characteristics and tectonic-metallogenic significances of the adakites in Yanshan Period from eastern China.Acta Petrologica Sinica,17(2):236-244(in Chinese with English abstract)

Zhang Q,Wang Y and Wang YL.2001b.Preliminary study on the components of the lower crust in East China Plateau during Yanshanian Period:Constraints on Sr and Nd isotopic compositions of adakite-like rocks.Acta Petrologica Sinica,17(4):505-513(in Chinese with English abstract)

Zhang Q,Xu JF,Wang Y,Xiao L,Liu HT and Wang YL.2004.Diversity of adakite.Geological Bulletin of China,23(9):959-965(in Chinese with English abstract)

Zhang Q.2008.Adakite research:Retrospect and prospect.Geology in China,35(1):32-39(in Chinese with English abstract)

Zhang Q,Wang Y,Xiong XL and Li CD.2008.Adakite and Granite:Challenge and Opportunity.Beijing:China Land Press(in Chinese with English abstract)

Zhang HF,Gao S,Zhong ZQ,Zhang BR,Zhang L and Hu SH.2002.Geochemical and Sr-Nd-Pb isotopic compositions of Cretaceous granitoids:Constraints on tectonic framework and crustal structure of the Dabieshan ultrahigh-pressure metamorphic belt,China.Chemical Geology,186(3-4):281-299

Zhang ZC,Guo ZJ,Zou GQ,F(xiàn)eng ZS and Li JF.2009.Geochemical characteristics and SHRIMP U-Pb age of zircons from the Danghe reservoir TTG in Dunhuang,Gansu Province,and its significations.Acta Petrologica Sinica,25(3):495-505(in Chinese with English abstract)

Zhang JX and Meng FC.2006.Lawsonite-bearing eclogites in the north Qilian and north Altyn Tagh:Evidence for cold subduction of oceanic crust.Chinese Science Bulletin,51(10):1238-1244

Zhang JX,Meng FC,Yu SY,Chen W and Chen SY.2007.39Ar/40Ar geochronology of high-presser/low temperature blueschist and ecoligite in the North Altyn Tagh and their tectonic implication.Geology in China,34(4):558-564(in Chinese with English abstract)

Zhang JX,Li HK,Meng FC,Xiang ZQ,Yu SY and Li JP.2011.Polyphase tectonothermal events recorded in " metamorphic basement"from the Altyn Tagh,the southeastern margin of the Tarim basin,western China:Constraintfrom U-Pb zircon geochronology.Acta Petrologica Sinica,27(1):23-46(in Chinese with English abstract)

Zhang ZW,Huang G,Li HM and Zhang WF.2012.LA-ICP-MS zircon U-Pb geochronology and geochemistry of gabbro and diorite from Qilesayi pluton in Lapeiquan area of northern Altun Mountains and their tectonic implications.Acta Petrologica et Mineralogica,31(1):13-27(in Chinese with English abstract)

Zhao ZH,Guo ZJ,Han BF,Wang Y and Liu C.2006.Comparative study on Permian basalts from eastern Xinjiang-Beishan area of Gansu Province and its tectonic implications.Acta Petrologica Sinica,22(5):1279-1293(in Chinese with English abstract)

附中文參考文獻

曹玉亭,劉良,王超,楊文強,朱小輝.2010.阿爾金南緣塔特勒克布拉克花崗巖的地球化學(xué)特征、鋯石U-Pb定年及Hf同位素組成.巖石學(xué)報,26(11):3259-3271

Castillo PR.2006.埃達克巖成因回顧.科學(xué)通報,51(6):617-627

陳柏林,崔玲玲,白彥飛,王世新,陳正樂,李學(xué)智,祁萬修,劉榮.2010.阿爾金斷裂走滑位移的確定-來自阿爾金山東段構(gòu)造成礦帶的新證據(jù).巖石學(xué)報,26(11):3387-3396

車自成,劉良,羅金海.2002.中國及其鄰區(qū)區(qū)域大地構(gòu)造學(xué).北京:科學(xué)出版社,207-369

馮繼成,張文,吳泰然,鄭榮國,羅紅玲,賀元凱.2012.甘肅北山橋灣北花崗巖體的年代學(xué)、地球化學(xué)及其地質(zhì)意義.北京大學(xué)學(xué)報(自然科學(xué)版),48(1):61-70

高曉峰,校培喜,過磊,董增產(chǎn),奚仁剛.2012.北阿爾金地區(qū)早古生代有限洋盆開啟時限:來自斜長花崗巖的證據(jù).中國科學(xué)(地球科學(xué)),42(3):359-368

郝杰,王二七,劉小漢,桑海清.2006.阿爾金山脈中金雁山早古生代碰撞造山帶:弧巖漿巖的確定與巖體的鋯石U-Pb和蛇綠混雜巖40Ar/39Ar年代學(xué)研究的證據(jù).巖石學(xué)報,22(11):2743-2752

康磊,劉良,曹玉亭,王超,楊文強,朱小輝.2011.北阿爾金構(gòu)造帶紅柳溝鉀長花崗巖地球化學(xué)特征、LA-ICP-MS鋯石U-Pb定年和Hf同位素組成.地質(zhì)通報,30(7):1066-1076

李志琛.1994.敦煌地塊變質(zhì)巖系時代新認識.中國區(qū)域地質(zhì),(2):131-134

劉良.1999.阿爾金高壓變質(zhì)巖與蛇綠巖及其大地構(gòu)造意義.博士學(xué)位論文.北京:中國科學(xué)院地質(zhì)與地球物理研究所,1-70

梅華林,于海峰,陸松年,李惠民,李銓,林源賢,左義成.1998.甘肅敦煌太古宙英云閃長巖:單顆粒鋯石U-Pb年齡和Nd同位素.前寒武紀研究進展,21(2):41-45

孟繁聰,張建新,相振群,于勝堯,李金平.2011.塔里木盆地東北緣敦煌群的形成和演化:鋯石U-Pb年代學(xué)和Lu-Hf同位素證據(jù).巖石學(xué)報,27(1):59-76

戚學(xué)祥,吳才來,李海兵.2005.北阿爾金喀孜薩依花崗巖鋯石SHRIMP U-Pb定年及其構(gòu)造意義.巖石學(xué)報,21(3):859-866

史仁燈,楊經(jīng)綏,吳才來,Wooden J.2004.北祁連玉石溝蛇綠巖形成于晚震旦世的SHRIMP年齡證據(jù).地質(zhì)學(xué)報,78(5):649-657

宋述光,牛耀齡,張立飛,張貴賓.2009.大陸造山運動:從大洋俯沖到大陸俯沖、碰撞、折返的時限-以北祁連山、柴北緣為例.巖石學(xué)報,25(9):2067-2077

王洪亮,徐學(xué)義,何世平等.2007.1∶100萬中國天山及鄰區(qū)地質(zhì)圖.北京:地質(zhì)出版社

吳才來,楊經(jīng)綏,姚尚志,曾令森,陳松永,李海兵,戚學(xué)祥,Wooden JL,Mazdab FK.2005.北阿爾金巴什考供盆地南緣花崗雜巖體特征及鋯石SHRIMP定年.巖石學(xué)報,21(3):846-858

吳福元,李獻華,鄭永飛,高山.2007.Lu-Hf同位素體系及其巖石學(xué)應(yīng)用.巖石學(xué)報,23(2):185-220

夏林圻,李向民,夏祖春,徐學(xué)義,馬中平,王立社.2006.天山石炭-二疊紀大火成巖省裂谷火山作用與地幔柱.西北地質(zhì),39(1):1-49

夏林圻,夏祖春,徐學(xué)義,李向民,馬中平.2008.天山及鄰區(qū)石炭紀-早二疊世裂谷火山巖巖石成因.西北地質(zhì),41(4):1-68

修群業(yè),于海峰,劉永順,陸松年,毛德寶,李惠民,李銓.2007.阿爾金北緣枕狀玄武巖的地質(zhì)特征及其鋯石U-Pb年齡.地質(zhì)學(xué)報,81(6):787-794

辛后田,趙鳳清,羅照華,劉永順,萬渝生,王樹慶.2011.塔里木盆地東南緣阿克塔什塔格地區(qū)古元古代精細年代格架的建立及其地質(zhì)意義.地質(zhì)學(xué)報,85(12):1977-1993

徐學(xué)義,何世平,王洪亮等.2008.中國西北部地質(zhì)概論-秦嶺、祁連、天山地區(qū).北京:科學(xué)出版社

許志琴,楊經(jīng)綏,張建新,姜枚,李海兵,崔軍文.1999.阿爾金斷裂兩側(cè)構(gòu)造單元的對比及巖石圈剪切機制.地質(zhì)學(xué)報,73(3):193-205

楊經(jīng)綏,史仁燈,吳才來,蘇德辰,陳松永,王希斌,Joseph W.2008.北阿爾金地區(qū)米蘭紅柳溝蛇綠巖的巖石學(xué)特征和SHRIMP定年.巖石學(xué)報,24(7):1567-1584

曾建元,楊懷仁,楊宏儀,劉敦一,蔡金郎,吳漢泉,左國朝.2007.北祁連東草河蛇綠巖:一個早古生代的洋殼殘片.科學(xué)通報,52(7):825-835

張旗,王焰,錢青,楊進輝,王元龍,趙太平,郭光軍.2001a.中國東部燕山期埃達克巖的特征及其構(gòu)造-成礦意義.巖石學(xué)報,17(2):236-244

張旗,王焰,王元龍.2001b.燕山期中國東部高原下地殼組成初探:埃達克質(zhì)巖Sr、Nd同位素制約.巖石學(xué)報,17(4):505-513

張旗,許繼峰,王焰,肖龍,劉洪濤,王云龍.2004.埃達克巖的多樣性.地質(zhì)通報,23(9):959-965

張旗.2008.埃達克巖研究的回顧和前瞻.中國地質(zhì),35(1):32-39

張旗,王焰,熊小林,李承東.2008.埃達克巖和花崗巖:挑戰(zhàn)與機遇.北京:中國大地出版社

張志誠,郭召杰,鄒冠群,馮志碩,李建峰.2009.甘肅敦煌黨河水庫TTG地球化學(xué)特征、鋯石SHRIMP U-Pb定年及其構(gòu)造意義.巖石學(xué)報,25(3):495-505

張建新,孟繁聰.2006.北祁連和北阿爾金含硬柱石榴輝巖:冷洋殼俯沖作用的證據(jù).科學(xué)通報,51(14):1683-1688

張建新,孟繁聰,于勝堯,陳文,陳松永.2007.北阿爾金HP/LT藍片巖和榴輝巖的Ar-Ar年代學(xué)及其區(qū)域構(gòu)造意義.中國地質(zhì),34(4):558-564

張建新,李懷坤,孟繁聰,相振群,于勝堯,李金平.2011.塔里木盆地東南緣(阿爾金山)“變質(zhì)基底”記錄的多期構(gòu)造熱事件:鋯石U-Pb年代學(xué)的制約.巖石學(xué)報,27(1):23-46

張占武,黃崗,李懷敏,張文峰.2012.北阿爾金拉配泉地區(qū)齊勒薩依巖體的年代學(xué)、地球化學(xué)特征及其構(gòu)造意義.巖石礦物學(xué)雜志,31(1):13-27

趙澤輝,郭召杰,韓寶福,王毅,劉暢.2006.新疆東部-甘肅北山地區(qū)二疊紀玄武巖對比研究及其構(gòu)造意義.巖石學(xué)報,22(5):1279-1293

中國地層典編委會.1996.中國地層典-古元古界.北京:地質(zhì)出版社

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