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      阿爾泰可可托海地區(qū)泥盆紀(jì)花崗巖特征及其地質(zhì)意義

      2015-05-04 13:42:41王星藺新望張亞峰郭岐明陳寧趙端昌張隨安
      西北地質(zhì) 2015年3期
      關(guān)鍵詞:阿爾泰造山鋯石

      王星,藺新望,張亞峰,郭岐明,陳寧,趙端昌,張隨安

      (陜西省地質(zhì)調(diào)查中心,陜西 西安 710068)

      阿爾泰可可托海地區(qū)泥盆紀(jì)花崗巖特征及其地質(zhì)意義

      王星,藺新望,張亞峰,郭岐明,陳寧,趙端昌,張隨安

      (陜西省地質(zhì)調(diào)查中心,陜西 西安 710068)

      阿爾泰南緣可可托海地區(qū)發(fā)育大量的400Ma左右的泥盆紀(jì)花崗巖。巖石SiO2含量在62.36%~77.41%,里特曼指數(shù)σ介于0.43~1.88,A/CNK 值在0.97~1.12,屬中鉀、鈣堿性、準(zhǔn)鋁質(zhì)-弱過(guò)鋁質(zhì)巖石。具有富集Rb、Th、U等大離子親石元素和輕稀土元素,相對(duì)虧損重稀土和Nb、Ta、Ti等高場(chǎng)強(qiáng)元素,弱-中的負(fù)Eu異常的島弧巖漿巖特征。結(jié)合區(qū)域地質(zhì)資料,可可托海地區(qū)泥盆紀(jì)花崗巖形成于活動(dòng)大陸邊緣的陸緣弧構(gòu)造環(huán)境,是古亞洲洋向北俯沖的產(chǎn)物。

      花崗巖;泥盆紀(jì);陸緣?。豢煽赏泻?;阿爾泰

      阿爾泰造山帶位于中亞造山帶的西南部,大地構(gòu)造分區(qū)屬天山-興蒙造山系阿爾泰弧盆系(潘桂棠等,2009)。作為中亞造山帶的一個(gè)重要組成部分,阿爾泰地區(qū)自前寒武紀(jì)以來(lái)發(fā)生了多次的構(gòu)造-巖漿事件,形成了大面積的花崗巖,約占全區(qū)面積的40%以上(王中剛等,1998)。近些年來(lái),許多學(xué)者(Windley et al.,2002;童英等,2005,2006,2007;王濤等,2005,2010;Wang et al.,2006; Yuan et al.,2006;曾喬松等,2007;劉鋒等,2009;柴鳳梅等,2010;劉國(guó)仁等,2010;張志欣等,2011;李會(huì)軍等,2012;董連慧,2012)對(duì)這些花崗巖類的形成時(shí)代和構(gòu)造環(huán)境進(jìn)行了大量的研究工作,結(jié)果顯示阿爾泰造山帶經(jīng)歷了多次的巖漿侵入事件,其峰值可分為460Ma、400Ma、375Ma 3個(gè)階段,其中400Ma左右的巖漿巖活動(dòng)尤為劇烈。最近,筆者在新疆開(kāi)展1∶25萬(wàn)可可托海幅、江德勒克幅區(qū)調(diào)修測(cè)及青河1∶5萬(wàn)阿爾沙特等四幅區(qū)調(diào)工作過(guò)程中,獲得了一批泥盆紀(jì)年齡資料,佐證了400Ma±是阿爾泰造山帶巖漿活動(dòng)的高峰期這一認(rèn)識(shí)。同時(shí)對(duì)可可托海地區(qū)該時(shí)期花崗巖的地質(zhì)特征、巖相學(xué)特征、巖石地球化學(xué)特征等進(jìn)行了研究,探討其形成環(huán)境,以期為阿爾泰泥盆紀(jì)構(gòu)造背景提供一些新信息。

      1 區(qū)域地質(zhì)概況

      中國(guó)阿爾泰造山帶位于阿爾泰山脈東段,大地構(gòu)造位置屬西伯利亞板塊南緣(何國(guó)琦等,1990)。由多個(gè)塊體組成(Li et al .,2003;Xiao et al.,2004)(圖1a),以紅山嘴-諾爾特?cái)嗔押桶蛯m-庫(kù)爾提斷裂為界由北向南依次為北阿爾泰、中阿爾泰和南阿爾泰3個(gè)塊體。北阿爾泰塊體主要由震旦—寒武系、上泥盆統(tǒng)—下石炭統(tǒng)火山-沉積巖組成,花崗巖主要形成于早—中古生代;中阿爾泰塊體主要由震旦系—下古生界深變質(zhì)巖系和奧陶—侏羅紀(jì)侵入巖組成,花崗巖在該區(qū)最為發(fā)育,其中可可托海、青格里地區(qū)出露大量的泥盆紀(jì)花崗巖;南阿爾泰塊體主要由元古宇片麻巖和泥盆紀(jì)火山-沉積巖系組成,南部以額爾齊斯構(gòu)造帶為界與準(zhǔn)噶爾板塊相鄰。筆者研究的可可托海地區(qū)屬中阿爾泰塊體。

      2 地質(zhì)特征與巖石學(xué)特征

      可可托海地區(qū)巖漿活動(dòng)劇烈,出露大量英云閃長(zhǎng)巖-花崗閃長(zhǎng)巖-花崗巖,另有少量輝長(zhǎng)巖、角閃閃長(zhǎng)巖等出露,時(shí)代多集中在泥盆紀(jì),另有少量奧陶紀(jì)、三疊紀(jì)、侏羅紀(jì)等巖體發(fā)育。其中泥盆紀(jì)花崗巖類呈北西向帶狀展布,總體表現(xiàn)出與區(qū)域構(gòu)造線一致的特點(diǎn)(圖1b)?;◢弾r鋯石年齡值在409~378Ma,主要集中在400Ma左右。該期花崗巖具不同程度的交代結(jié)構(gòu),片麻狀構(gòu)造,片麻理與圍巖面理基本一致。巖體與老地層之間主要呈侵入接觸關(guān)系,局部具有混合巖化現(xiàn)象;后期巖漿作用產(chǎn)生的侵入巖與巖體多呈超動(dòng)型侵入接觸關(guān)系,局部受構(gòu)造擠壓應(yīng)力作用的影響呈斷層接觸。巖體內(nèi)普遍發(fā)育暗色閃長(zhǎng)質(zhì)包體,大小一般在5~10cm,多呈橢圓狀、水滴狀等,分布無(wú)規(guī)律,局部可見(jiàn)冷凝邊,與寄主巖石界線截然;另可見(jiàn)圍巖捕擄體,元古代深變質(zhì)地層殘留體多呈長(zhǎng)條狀和不規(guī)則狀,與巖體界線較清晰,總體表現(xiàn)了該期巖漿具有殼?;旌系奶卣?。此外,巖石普遍發(fā)生糜棱巖化變形及區(qū)域上發(fā)育的斷層構(gòu)造,反映了后期強(qiáng)烈的構(gòu)造變形擾動(dòng)。

      可可托海地區(qū)泥盆紀(jì)花崗巖類巖性組合復(fù)雜,二長(zhǎng)花崗巖-花崗閃長(zhǎng)巖-英云閃長(zhǎng)巖均有出露,不同巖性歸屬于不同的侵入體,各侵入體之間未見(jiàn)明顯的侵入界線,但其鋯石同位素年齡均在400Ma左右。該期巖體中普遍發(fā)育黑云母等暗色礦物,代表巖性巖相學(xué)特征如下。

      (1)中粗粒黑云母花崗閃長(zhǎng)巖:灰-深灰色,中粗?;◢徑Y(jié)構(gòu),塊狀構(gòu)造。巖石組成礦物主要有斜長(zhǎng)石、鉀長(zhǎng)石、石英、黑云母和角閃石等,粒徑大小可分為2~3mm中粒級(jí)和>5~6mm粗粒級(jí)。其中:斜長(zhǎng)石,含量47%~48%,半自形粒狀,潔凈,鈉長(zhǎng)石雙晶及個(gè)別卡鈉雙晶均較清楚;鉀長(zhǎng)石,含量18%~20%,板狀,潔凈,具格子雙晶,為微斜長(zhǎng)石;石英,含量24%~26%,他形粒狀;黑云母,含量6%~7%,半自形-他形片狀,褐色;角閃石,含量2%~3%,半自形粒狀。

      (2)英云閃長(zhǎng)巖:灰色,中細(xì)粒半自形粒狀結(jié)構(gòu),塊狀構(gòu)造。主要由斜長(zhǎng)石(57%~58%)、石英(25%~26%)、鉀長(zhǎng)石(7%~8%)、黑云母(4%~5%)、角閃石(2%~3%)和綠簾石(2%~3%)等礦物組成。主要礦物粒徑大小可分0.6~1mm細(xì)粒級(jí)及2~3mm中粒級(jí),礦物之間相互緊密接觸,雜亂分布。斜長(zhǎng)石:呈半自形柱狀,潔凈,鈉長(zhǎng)石雙晶清楚,An=22~24;石英:他形粒狀,潔凈;鉀長(zhǎng)石:他形粒狀,潔凈,格子雙晶清晰,系微斜長(zhǎng)石;黑云母:半自形片狀,褐色;角閃石:半自形粒狀。其中長(zhǎng)石和石英常聚集呈團(tuán)堆。

      (3)黑云母二長(zhǎng)花崗巖:灰色、淺肉紅色,花崗結(jié)構(gòu),塊狀構(gòu)造。組成礦物主要有斜長(zhǎng)石(32 %~33 %),半自形粒狀,稍渾濁,隱約顯示鈉長(zhǎng)石雙晶,An=22~24,見(jiàn)絹云母化蝕變;鉀長(zhǎng)石(29%~30%),他形粒狀,潔凈,具格子雙晶,系微斜長(zhǎng)石,個(gè)別從邊緣交代斜長(zhǎng)石等;石英(31%~32%),他形粒狀,潔凈,呈團(tuán)堆出現(xiàn);黑云母(4%~5%),他形-半自形片狀,褐色;另有少量白云母礦物。主要礦物粒徑2~4mm,相互緊密接觸,雜亂分布。

      3 地球化學(xué)特征

      筆者選取了可可托海地區(qū)泥盆紀(jì)英云閃長(zhǎng)巖-花崗閃長(zhǎng)巖-花崗巖代表性花崗巖類樣品進(jìn)行了地球化學(xué)研究,其主量元素、微量元素分析結(jié)果見(jiàn)表1。

      3.1 主量元素

      主量元素顯示泥盆紀(jì)花崗巖高硅、富鋁、貧堿的特征。其中SiO2含量為62.36%~77.41%, Na2O和K2O的含量分別為2.86~3.92和1.87~3.68,里特曼指數(shù)在0.96~1.88之間,屬鈣堿性系列,與SiO2-K2O圖解(圖2)指示的中鉀鈣堿性系列一致,少量為高鉀鈣堿性。Al2O3含量在12.67~16.48之間,鋁飽和指數(shù)為0.87~1.12,與A/ANK-A/NK圖解(圖3)均指示屬準(zhǔn)鋁質(zhì)-弱過(guò)鋁質(zhì)特征。綜上所述,可可托海地區(qū)泥盆紀(jì)花崗巖具有中鉀鈣堿性、準(zhǔn)鋁質(zhì)-弱過(guò)鋁質(zhì)、I型花崗巖巖石特征。

      圖1 新疆可可托海地區(qū)泥盆紀(jì)花崗巖分布略圖①Fig.1 Distribution ofthe Devonian granitoids in Koktokay, Xinjiang

      ① 新疆1∶25萬(wàn)可可托海幅、江德勒克幅地質(zhì)圖.

      表1 可可托海地區(qū)泥盆紀(jì)花崗巖主量(%)、微量(10-6)元素含量Tab.1 Major(%) and trace(10-6) element analyses of the Devonian granitoids in Koktokay

      續(xù)表 1

      巖性花崗閃長(zhǎng)巖(片麻狀黑云母) 二長(zhǎng)花崗巖(似斑狀黑云母)花崗巖(片麻狀似斑狀黑云母)SiO272.5773.6673.0169.3167.3467.4873.34TiO20.20.180.30.60.630.840.34Al2O313.8113.4412.6713.6615.0414.813.67Fe2O30.791.081.321.181.441.23FeO1.791.692.512.653.233.472.58MnO0.020.050.030.090.080.080.03MgO0.590.490.810.981.611.610.63CaO2.361.992.372.852.582.782.07Na2O3.43.2733.273.082.982.86K2O3.453.23.263.23.683.453.43P2O50.070.070.120.150.210.220.1燒失量0.450.450.231.030.881.020.3總量99.599.5799.6199.7999.54100.17100.58La25.924.322.434.136.234.237.76Ce54.553.244.863.4757379.52Pr6.215.714.327.439.48.99.74Nd25.723.816.227.835.934.238.01Sm6.025.382.946.137.97.57.31Eu0.880.920.951.321.551.431.32Gd5.835.223.316.247.16.86.74Tb0.870.780.420.921.351.261.09Dy5.425.022.565.948.17.86.65Ho1.051.030.551.171.661.591.28Er3.063.161.763.414.774.773.46Tm0.470.490.280.490.60.620.5Yb2.943.171.973.364.24.23.26Lu0.430.480.320.490.680.70.51Rb1541299295147144146.8Co6.554.916.473.894.764.235.34Ni10.67.487.944.746.385.621.07Cr23.310.614.62.24.095.130.61Sr14111514317515414852.9Ba346355415415570470433Cs10.56.756.063.516.436.658.74Nb10.79.366.5510.75.765.548.92Ta0.440.540.380.390.320.310.31Zr10.711.97.796.75207237188.5Hf1.091.420.690.8211.4110.726.05Th7.4415.49.388.8416.616.912.81U1.31.521.262.1222.11.93P370319428663916960436Ti1272102015101674377650352038Y27.226.515.230.643.841.930.2σ1.591.371.311.591.881.691.3A/CNK1.011.080.990.971.091.081.12δEu0.450.520.930.650.620.60.57(La/Yb)N5.955.187.686.865.825.57.83(La/Sm)N2.712.844.793.502.882.873.25(Gd/Lu)N1.691.351.291.581.301.211.64∑REE139.28132.66102.78162.2194.41186.97197.15

      注:數(shù)據(jù)測(cè)試單位:核工業(yè)二0三研究所,2010~2012。

      圖2 KO2-SiO2圖解(底圖據(jù) Peccerillo and Taylor, 1976)Fig.2 K2O-SiO2 diagram (After Peccerillo and Taylor,1976)

      圖3 A/ANK-A/NK圖解(底圖據(jù)Shand,1927)Fig.3 A/NK-A/CNK diagram (After Shand,1927)

      3.2 微量元素

      稀土元素總含量(∑REE=81.32×10-6~197.15×10-6)較低,平均值為139.46×10-6。(La/Sm)N值為2.55~4.92,(Gd/Yb)N值為1.34~2.30,(La/Yb)N值為5.18~11.39,表明巖石輕稀土元素分餾程度高于重稀土元素,輕、重稀土元素之間分餾程度較強(qiáng)。巖石δEu值在0.45~0.97之間,呈弱-中等負(fù)異常,暗示巖漿在形成過(guò)程中可能存在斜長(zhǎng)石的分離結(jié)晶作用或源區(qū)有斜長(zhǎng)石的殘留。巖石球粒隕石標(biāo)準(zhǔn)化稀土元素配分曲線圖(圖4)表現(xiàn)為輕稀土元素富集、重稀土元素相對(duì)虧損、弱-中等負(fù)Eu異常的右傾型,具典型的島弧巖漿巖特征。

      圖4 球粒隕石標(biāo)準(zhǔn)化稀土元素配分曲線(據(jù)Taylor,1985)Fig.4 Chondrite-normalized REE patterns (After Taylor,1985)

      巖石富集大離子親石元素(LILE),如Rb、Th、U等,虧損Nb、Ta、Ti等高場(chǎng)強(qiáng)元素(HFSE),Ba、Sr、P、Ti等明顯虧損。在原始地幔標(biāo)準(zhǔn)化蛛網(wǎng)圖(圖5)上,Rb、Th、U等LILE富集,呈明顯的“峰”,Nb、Ta、Ti等HFSE強(qiáng)烈虧損,呈明顯“TNT”負(fù)異常,與俯沖作用下形成的巖漿巖特征相似。Rb/Sr值介于0.33~2.78之間,平均值為0.88,高于上地殼的Rb/Sr值(0.25),反映了巖體經(jīng)歷高程度的分離結(jié)晶作用;Nb/Ta值在15.4~28.8之間(平均值為21.13),大于原始地幔(17.5)和大陸地殼(11),這可能是由于流體加入導(dǎo)致Nb、Ta分餾(Dostal &Chatterjee,2000)。其Th/U值為3.74~11.6,平均值為7.15,大于下地殼Th/U值(6.00)(Rudnick & Gao S,2003),及巖體普遍發(fā)育的與寄主巖石形成時(shí)代基本一致暗色閃長(zhǎng)質(zhì)包體,暗示巖漿來(lái)源可能和下地質(zhì)熔融有關(guān),并有地幔物質(zhì)的貢獻(xiàn)。

      圖5 原始地幔標(biāo)準(zhǔn)化蛛網(wǎng)圖(據(jù)Sun&McDonough,1989)Fig.5 Primitive mantle-normalized trace element spidergrams (After Sun and McDonough,1989)

      4 討論

      近年來(lái),越來(lái)越多的資料顯示阿爾泰南緣造山帶巖漿活動(dòng)的高峰期在400Ma左右。其中阿爾泰造山帶發(fā)育的大量的泥盆花崗巖,如北阿爾泰塊體諾爾特地區(qū)的塔斯比克都爾根巖體(414~396Ma,肖序常,1992);中阿爾泰塊體的喀納斯巖體(398±5 Ma,童英等,2005)、鐵列克巖體(403±5Ma,童英等,2005)、瓊庫(kù)爾巖體(399±4Ma,童英等,2007)、五礦巖體(378±6Ma,孫敏等,2009)、庫(kù)爾提巖體(378±6Ma,Wang et al.,2006)、可可托海巖體(415~399Ma,王中剛等,1998;Windley et al.,2002;Wang et al.,2006;Yuan et al.,2007)、青格里巖體(420~386Ma,王中剛等,1998)和南阿爾泰塊體的沖乎爾盆地北巖體(413±4Ma,曾喬松等,2007)、塔爾浪巖體(413~382 Ma,Yuan et al.,2007)、阿維灘巖體(400±6Ma,Wang et al.,2006)、克蘭河中游巖體(400±2.3Ma和401±2.3Ma,劉國(guó)仁等,2010),具有島弧特征的火山巖(陳漢林等,2006;柴鳳梅等,2009.;于淑艷等,2011)、基性侵入巖(Wang et al.,2006)及弧后擴(kuò)張產(chǎn)物——庫(kù)爾提蛇綠巖(372±19Ma,張海祥等,2003),指示巖漿活動(dòng)的鼎盛時(shí)期在泥盆紀(jì)早-中期??煽赏泻5貐^(qū)系阿爾泰造山帶的組成部分,本次工作發(fā)現(xiàn)了大量的泥盆紀(jì)花崗巖(398±3.5Ma,張亞峰等,2014;403.4±7.4Ma,張亞峰等,2014;396±3.3Ma和399±5.6Ma,未發(fā)表資料),及其北部諾爾特地區(qū)發(fā)現(xiàn)的泥盆紀(jì)火山-沉積組合——正格河火山巖(王星等,2015),其形成時(shí)代也在400Ma左右,從而補(bǔ)充了阿爾泰造山帶400Ma±的巖漿活動(dòng)的年齡信息,同時(shí)佐證了400Ma左右的巖漿活動(dòng)是阿爾泰南緣造山帶巖漿活動(dòng)的高峰期,該時(shí)期是阿爾泰造山帶構(gòu)造運(yùn)動(dòng)劇烈活動(dòng)階段。

      關(guān)于阿爾泰造山帶華力西早期的構(gòu)造環(huán)境,前人存在多種不同認(rèn)識(shí)。王京彬等(1998)認(rèn)為當(dāng)時(shí)屬大陸邊緣裂谷環(huán)境,萬(wàn)博等(2006)則傾向于與俯沖有關(guān)的島弧環(huán)境,許繼峰等(2001)、張海祥等(2004)認(rèn)識(shí)到當(dāng)時(shí)已處于活動(dòng)大陸邊緣的陸弧環(huán)境,Yuan et al.(2007)則認(rèn)為是活動(dòng)大陸邊緣的伸展環(huán)境。但隨著近年來(lái)研究的深入,越來(lái)越多的學(xué)者認(rèn)同阿爾泰泥盆紀(jì)時(shí)期處于活動(dòng)大陸邊緣,巖漿活動(dòng)與板塊俯沖有關(guān)??煽赏泻5貐^(qū)泥盆紀(jì)花崗巖,具有中鉀鈣堿性、準(zhǔn)鋁質(zhì)-弱過(guò)鋁質(zhì)巖石特點(diǎn),輕稀土富集、重稀土相對(duì)虧損,微量元素富集Rb、Th、U等大離子親石元素,虧損Nb、Ta、Ti等高場(chǎng)強(qiáng)元素,這與區(qū)域上400Ma左右的與俯沖作用有關(guān)的花崗巖地球化學(xué)特征相一致。微量元素構(gòu)建的花崗巖Nb-Y(圖6)和Rb-(Y+Nb)(圖6)構(gòu)造環(huán)境判別圖解也顯示了同樣的結(jié)論。此外,區(qū)域上發(fā)育的同時(shí)期火山巖也具有俯沖帶活動(dòng)大陸邊緣特征。另外,龍曉平等(2008)通過(guò)對(duì)阿爾泰南緣泥盆紀(jì)淺變質(zhì)碎屑沉積巖地球化學(xué)、源區(qū)物質(zhì)年代學(xué)及鉿同位素組成的研究,認(rèn)為其形成于活動(dòng)大陸邊緣構(gòu)造環(huán)境。藺新望等(待發(fā)表)根據(jù)變形變質(zhì)特征及同位素年齡(元古宙老鋯石)將可可托海地區(qū)泥盆紀(jì)花崗巖中-深變質(zhì)圍巖(前寒武紀(jì)地層)厘定為元古代地層,暗示了該地區(qū)存在古老基底。綜上所述,筆者認(rèn)為可可托海地區(qū)泥盆紀(jì)花崗巖巖體形成于活動(dòng)大陸邊緣的陸緣弧構(gòu)造環(huán)境。

      研究表明,早古生代時(shí)期,分隔著西伯利亞板塊和哈薩克斯坦-準(zhǔn)噶爾板塊的古亞洲洋廣泛分布于中亞造山帶和中國(guó)新疆北部地區(qū)(胡靄琴等,2006)。新疆北部地區(qū)自北向南發(fā)育的額爾齊斯蛇綠混雜巖帶、扎河壩-阿爾曼太蛇綠混雜巖帶和卡拉麥里蛇綠混雜巖帶等,是古亞洲洋存在的物質(zhì)記錄,其中后兩條蛇綠混雜巖帶出露良好,蛇綠巖組分較齊全,研究程度較高,形成時(shí)代已被確定為早古生代(何國(guó)琦等,2001;肖文交等,2006);最近在額爾齊斯蛇綠混雜巖帶青河縣瑪音鄂博蛇綠構(gòu)造混雜巖中發(fā)現(xiàn)的斜長(zhǎng)角閃巖鋯石U-Pb同位素年齡顯示其形成于早志留世(437±12)Ma(張?jiān)降龋?012),巖石地球化學(xué)具有大洋拉斑玄武巖特征(N-MORB型),也是早古生代時(shí)期西伯利亞板塊南部存在古亞洲洋的有力證據(jù)。古亞洲洋大致從晚寒武世開(kāi)始向北俯沖于阿爾泰微大陸之下,隨著大洋持續(xù)的向北俯沖作用,洋殼板塊變質(zhì)脫水,消減洋殼及地幔楔發(fā)生部分熔融形成基性巖漿,上涌的基性巖漿攜帶高熱底侵于下地殼,使地殼部分熔融,并發(fā)生殼?;旌献饔?,形成大規(guī)模415~380Ma的弧巖漿巖(牛賀才等,2006;王濤等,2010),并以400Ma±的巖漿活動(dòng)尤為劇烈。張棟等(2011)對(duì)中亞造山帶內(nèi)新疆北部的俯沖和碰撞鈣堿性花崗巖進(jìn)行了劃分研究,俯沖鈣堿性花崗巖具有鉀鈣堿性、強(qiáng)富集Rb(76.5×10-6~146.8×10-6)、低∑REE值(81.32×10-6~197.15×10-6)等特征,可可托海地區(qū)的泥盆紀(jì)花崗巖元素地球化學(xué)特征與其基本一致,其中普遍發(fā)育的暗色閃長(zhǎng)質(zhì)包體暗示了俯沖過(guò)程中存在殼?;旌献饔?,此外,該時(shí)期發(fā)育大量的與俯沖作用有關(guān)的火山巖。故此,筆者認(rèn)為該時(shí)期劇烈的巖漿活動(dòng)與古亞洲洋的向北俯沖有關(guān)。

      圖6 微量元素判別圖解(據(jù)Pearce,1984)Fig.6 Tectonic setting determinant diagram (After Pearce,1984)

      5 結(jié)論

      (1)可可托海地區(qū)花崗巖主要形成于泥盆紀(jì)早—中期(400Ma左右),結(jié)合區(qū)域資料,400Ma±是阿爾泰造山帶巖漿活動(dòng)的高峰期。

      (2)可可托海地區(qū)泥盆紀(jì)花崗巖形成于活動(dòng)大陸邊緣的陸緣弧構(gòu)造環(huán)境。其動(dòng)力學(xué)背景與古亞洲洋持續(xù)的向北俯沖作用有關(guān)。

      致謝: LA-ICP-MS鋯石U-Pb年齡測(cè)試得到了西北大學(xué)大陸動(dòng)力學(xué)國(guó)家重點(diǎn)實(shí)驗(yàn)室柳小明博士的大力支持和熱心幫助;匿名評(píng)審人提出了諸多寶貴而中肯的意見(jiàn),在此一并表示衷心的感謝!

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      Characteristics and Geological Significance of the Devonian Granitoids in Koktokay Area of Altay

      WANG Xing, LIN Xinwang, ZHANG Yafeng, GUO Qiming, CHEN Ning,ZHAO Duanchang, ZHANG Suian

      (Shaanxi Center of Geological Survey, Xi’an 710068, Shaanxi, China)

      The Koktokay area is located in the southern part of Altay, where Devonian granitoids were well developed and the ages of the granitiods are about 400 Ma. The SiO2content ranges from 62.36% to 77.41%, and σ from 0.43 to 1.88, A/CNK from 0.97 to 1.12, implying the granitoid belongs to mid-K, calc-alkaline, quasi-aluminous and weak peraluminous rocks. In addition, they are enriched in LILE(Rb, Th, U) and LREE, obvious depleted of HREE and HFSE( Nb, Ta, Ti), besides, they have island-arc magmatite features characterized by weak-medium negative Eu anomaly. Combined with the regional geological data, the Devonian granitoids is a product of Paleo-Asian Ocean subduction toward north, and generated in an island-arc setting of active continental margin.

      granitoids; Devonian; island-arc; Koktokay; Altay

      2015-03-12;

      2015-05-20

      中國(guó)地質(zhì)調(diào)查局“新疆1∶25萬(wàn)可可托海幅、江德勒克幅區(qū)調(diào)修測(cè)”(1212011120503)、“新疆青河縣1∶5萬(wàn)(L46E005001、L46E005002、L46E006001、L46E006002)4幅區(qū)調(diào)”(1212011120509)

      王星(1988-),男,陜西興平人,助理工程師,主要從事區(qū)域地質(zhì)調(diào)查工作。E-mail:star_cug@126.com

      P588.13

      A

      1009-6248(2015)03-0251-11

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