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      新疆東準(zhǔn)噶爾紙房地區(qū)早古生代花崗巖的確定及其地質(zhì)意義

      2015-08-25 02:51:26徐芹芹牛寶貴
      地質(zhì)力學(xué)學(xué)報 2015年4期
      關(guān)鍵詞:準(zhǔn)噶爾造山卡拉

      徐芹芹,趙 磊,牛寶貴

      新疆東準(zhǔn)噶爾紙房地區(qū)早古生代花崗巖的確定及其地質(zhì)意義

      徐芹芹,趙磊,牛寶貴

      (中國地質(zhì)科學(xué)院地質(zhì)研究所,北京100037)

      紙房花崗巖體位于新疆東準(zhǔn)噶爾卡拉麥里構(gòu)造帶北側(cè)。該巖體侵入的最新地層為中—上奧陶統(tǒng)荒草坡群,并被晚志留世及早泥盆世地層不整合覆蓋。對紙房花崗巖進(jìn)行鋯石SHRIMP U-Pb定年,獲得的206Pb/238U加權(quán)平均年齡為 (463±7)~(436±4)Ma,表明該巖體形成于晚奧陶世—早志留世,是早古生代巖漿活動的產(chǎn)物。對已有的區(qū)域地質(zhì)資料、巖體侵位時代及其與圍巖接觸關(guān)系進(jìn)行綜合分析后認(rèn)為,紙房花崗巖體的形成時代大致對應(yīng)于卡拉麥里構(gòu)造帶內(nèi)區(qū)域性角度不整合的形成時間,推測該巖體為早古生代造山過程中形成的花崗質(zhì)巖石。高Sr、低Yb、弱的Eu負(fù)異常等地球化學(xué)特征也顯示其為埃達(dá)克型同造山花崗巖。紙房地區(qū)早古生代同造山花崗巖的存在為東準(zhǔn)噶爾卡拉麥里構(gòu)造帶早古生代造山作用的確認(rèn)提供了證據(jù)。

      花崗巖;鋯石SHRIMP U-Pb定年;東準(zhǔn)噶爾;早古生代;造山作用

      0 引言

      新疆準(zhǔn)噶爾地區(qū)位于中亞造山帶的中部,其古生代以來的構(gòu)造演化是顯生宙亞洲大陸向南增長和古亞洲洋演化的重要階段,同時也涉及到新疆北部地區(qū)古構(gòu)造格局的恢復(fù)和構(gòu)造演化模型等重要理論問題[1~19],因此,東準(zhǔn)噶爾及其鄰區(qū)成為近年來地學(xué)研究的熱點地區(qū)之一。然而,東準(zhǔn)噶爾造山帶古生代以來的構(gòu)造演化迄今未形成共識,尤其是對其中卡拉麥里構(gòu)造帶時代與性質(zhì)的認(rèn)識存在著爭議[2~5,10,12~14,16,21~35]。

      關(guān)于卡拉麥里構(gòu)造帶的時代與性質(zhì),前人大多圍繞帶內(nèi)蛇綠巖的年齡以及蛇綠巖所代表的古洋盆形成和閉合的時限進(jìn)行解釋[16,22,24~32,36~37]。多數(shù)人認(rèn)為,卡拉麥里蛇綠巖所代表的洋盆產(chǎn)生于晚古生代早期[3,16,22,24,27,29,31],到早石炭世早期[30,32,34,37]或早石炭世晚期關(guān)閉[22~33,38]。此類觀點,往往忽視了卡拉麥里構(gòu)造帶早古生代階段的演化,從而將其限制于晚古生代的造山帶。

      實際上,何國琦等[10,26]曾根據(jù)東準(zhǔn)噶爾卡拉麥里山-考克塞爾蓋山-莫欽烏拉山一帶的奧陶系和后奧陶系在區(qū)域變質(zhì)程度上的明顯差異和其間區(qū)域性角度不整合的發(fā)育,提出該區(qū)存在早古生代造山作用。然而由于缺乏精確的、同位素年代學(xué)方面的定量約束,這一觀點并未引起足夠重視。近些年,有學(xué)者相繼報道了卡拉麥里構(gòu)造帶及其鄰區(qū)存在早古生代的中酸性侵入巖[19,39~40],并提供了年代學(xué)方面的約束,但是沒有明確這些中酸性侵入巖與東準(zhǔn)噶爾地區(qū)早古生代造山作用的關(guān)系。

      本文選擇東準(zhǔn)噶爾造山帶紙房北部地區(qū)出露的被晚志留世以及早泥盆世地層不整合覆蓋的花崗巖為研究對象,通過鋯石SHRIMP U-Pb定年,精確地限定該區(qū)花崗巖的侵位時代,并結(jié)合區(qū)域資料對東準(zhǔn)噶爾地區(qū)早古生代的構(gòu)造背景進(jìn)行初步討論。

      1 研究區(qū)地質(zhì)概況

      傳統(tǒng)上將準(zhǔn)噶爾地區(qū)劃分為西準(zhǔn)噶爾造山帶、準(zhǔn)噶爾盆地和東準(zhǔn)噶爾造山帶3個組成部分 (見圖1a)。東準(zhǔn)噶爾造山帶位于準(zhǔn)噶爾盆地東北緣 (見圖1a),北以額爾齊斯斷裂帶為界與中國阿爾泰造山帶相鄰,南以卡拉麥里斷裂帶為界與準(zhǔn)噶爾盆地和天山造山帶毗連。

      圖1 新疆北部地區(qū)構(gòu)造簡圖及東準(zhǔn)噶爾酸性侵入巖分布圖 (據(jù)文獻(xiàn)[17,20]修改)Fig.1 Tectonic sketch of northern Xinjiang and distribution of acidic intrusive rocks in East Junggar

      研究區(qū)位于東準(zhǔn)噶爾造山帶中部,靠近卡拉麥里蛇綠巖帶 (見圖1b)。區(qū)內(nèi)出露的地層為奧陶系、志留系、泥盆系、石炭系、新近系和第四系 (見圖2)。

      奧陶系中—上統(tǒng)荒草坡群 (O2-3hn)是區(qū)內(nèi)目前發(fā)現(xiàn)的最老地層。下組主要為片巖、片麻巖,僅出露在塔黑爾巴斯套附近;上組為一套中—酸性火山熔巖,主要由安山玢巖、英安斑巖組成,出露于塔黑爾巴斯套—克西沙爾布拉克一帶及考克塞爾蓋主峰1759兩側(cè) (見圖2)。

      圖2 紙房北部地區(qū)地質(zhì)圖 (據(jù)文獻(xiàn)[41]修改)Fig.2 Geological map of northern Zhifang area

      區(qū)內(nèi)志留系僅見上統(tǒng)考克塞爾蓋組 (S3k ),為一套火山碎屑巖組合,以明顯的角度不整合覆蓋于中—上奧陶統(tǒng)荒草坡群及加里東中期花崗巖之上,與下泥盆統(tǒng)為連續(xù)沉積 (見圖2)。

      泥盆系在區(qū)內(nèi)分布較廣,上、中、下三統(tǒng)發(fā)育完好。下泥盆統(tǒng)包括塔黑爾巴斯套組和卓木巴斯套組。塔黑爾巴斯套組 (D1t)為一套紅色碎屑巖及火山碎屑巖夾碳酸鹽巖沉積,主要由巖屑長石砂巖、巖屑砂巖、凝灰質(zhì)砂巖及凝灰?guī)r組成,夾灰?guī)r及含礫生物灰?guī)r。卓木巴斯套組 (D1zh)為一套富含鈣質(zhì)的碎屑巖及碳酸鹽巖,主要由鈣質(zhì)砂巖及砂質(zhì)灰?guī)r夾灰?guī)r組成。其下與塔黑爾巴斯套組為不整合及整合接觸,并且不整合覆蓋在加里東中期花崗巖之上,其上與中泥盆統(tǒng)為整合過渡關(guān)系。中泥盆統(tǒng)為烏魯蘇巴斯套組 (D2w),與下泥盆統(tǒng)卓木巴斯套組為連續(xù)沉積,主要由巖屑砂巖、凝灰?guī)r和凝灰砂巖及生物礁灰?guī)r組成。上泥盆統(tǒng)為克安庫都克組 (D3k),與下伏中泥盆統(tǒng)烏魯蘇巴斯套組及上覆下石炭統(tǒng)均為整合接觸??税矌於伎私M (D3k)為一套陸相火山碎屑巖夾陸源碎屑巖沉積[41],主要由火山灰凝灰?guī)r與層凝灰?guī)r組成,夾砂巖、凝灰礫巖。

      區(qū)內(nèi)石炭系分布最廣泛,包括下石炭統(tǒng)東古魯巴斯套組 (C1d)、姜巴斯套組 (C1j)與上石炭統(tǒng)巴塔瑪依內(nèi)山組 (C2b)和石錢灘組 (C2sh)(見圖2)。下石炭統(tǒng)主要為一套碎屑巖及火山碎屑巖,巖性為粉砂巖、凝灰砂巖、凝灰?guī)r。上石炭統(tǒng)巴塔瑪依內(nèi)山組 (C2b)以明顯的角度不整合覆蓋在下石炭統(tǒng)姜巴斯套組之上,巖性主要為玄武玢巖、安山玢巖、凝灰角礫巖以及火山角礫巖;石錢灘組 (C2sh)主要為一套陸相粗碎屑巖及火山碎屑巖夾灰?guī)r。

      中生代的地層在區(qū)內(nèi)沒有出露,新生代的地層僅見新近系與第四系 (見圖2)。

      區(qū)內(nèi)的侵入巖大致分為2期,即加里東中期和華力西中期 (見圖2)。前者主要為深成巖體,由斑狀閃長巖與黑云母花崗巖組成;后者包括深成與淺成巖體,其中深成巖體主要由花崗巖、黑云母花崗巖以及輝長巖組成,淺成巖體主要由石英斑巖、流紋斑巖、霏細(xì)斑巖、閃長斑巖與花崗斑巖組成。

      本文研究的加里東期花崗巖,侵入的最新地層是中—上奧陶統(tǒng)荒草坡群 (O2-3hn)(見圖3a),并在研究區(qū)內(nèi)多處被上志留統(tǒng)考克塞爾蓋組 (S3k)或下泥盆統(tǒng)卓木巴斯套組(D1zh)不整合覆蓋,有些接觸關(guān)系不易辨認(rèn),花崗巖碎屑堆積下來,經(jīng)過成巖作用,形成一種外貌酷似花崗巖的花崗質(zhì)砂礫巖 (見圖3b)。

      圖3 花崗巖野外照片F(xiàn)ig.3 Field photographs of the granite

      2 采樣位置與樣品特征

      樣品采自巴里坤縣紅柳峽鄉(xiāng)紙房東北約13 km,考克塞爾蓋山南坡的卓木巴斯套 (見圖1b、圖2),巖性為灰色、肉紅色中—細(xì)粒黑云母二長花崗巖。

      該巖體呈巖基產(chǎn)出,出露面積大約7 km2,呈近東西向延展 (見圖2),其上不整合覆蓋著上志留統(tǒng)考克塞爾蓋組 (S3k)或下泥盆統(tǒng)卓木巴斯套組 (D1zh)。

      采樣點處加里東期花崗巖和下泥盆統(tǒng)卓木巴斯套組(D1zh)的不整合接觸關(guān)系比較清楚,花崗巖之上直接覆蓋著厚度數(shù)米至50 m的花崗質(zhì)巨礫巖和礫巖,大部分為原地風(fēng)化產(chǎn)物 (見圖3c)。膠結(jié)物為藍(lán)綠色凝灰質(zhì)砂巖,為D1zh組分,也可見到附近中—上奧陶統(tǒng)荒草坡群安山巖成分的礫石 (見圖3d),礫石分選不佳,大小混雜,小者2 cm左右,大者60~80 cm,最大可達(dá)2~6 m;磨圓度小者好、大者差。不整合面凹凸不平,不規(guī)則 (見圖3c)。

      3 地球化學(xué)特征

      本文選擇新鮮基本無蝕變的5件樣品進(jìn)行主量與微量元素分析 (見表1,表2)。分析測試在北京地質(zhì)研究院分析測試研究中心完成。主量元素含量的檢測儀器為PW2404 X射線熒光光譜儀,分析誤差小于5%;微量元素 (包括稀土元素)含量的檢測在Perkin Elmer Elan DCR-e型等離子質(zhì)譜儀上完成,分析誤差小于10%。

      表1 東準(zhǔn)噶爾紙房地區(qū)花崗巖主量元素 (%)分析結(jié)果Table 1 Major element concentrations of granites in Zhifang area,East Junggar

      表2 東準(zhǔn)噶爾紙房地區(qū)花崗巖微量元素 (×10-6)分析結(jié)果Table 2 Trace element concentrations of granites in Zhifang area,East Junggar

      主量元素分析結(jié)果 (見表1)表明,紙房花崗巖體SiO2含量較高 (平均值74.2%),且變化范圍很窄 (73.28% ~75.38%),K2O、Na2O和 CaO含量分別為0.35% ~2.24%、4.75%~6.24%和1.26% ~2.08%。在侵入巖TAS圖解 (見圖4a)中,樣品落入花崗巖區(qū)域;Na2O+K2O-CaO vs.SiO2圖解 (見圖4b)中,樣品位于鈣堿性—鈣性系列;花崗巖中的含量 (1.91%~2.20%)與MgO含量 (0.62% ~0.95%)較均勻,并且所有樣品具有富鎂特點 (見圖4c);樣品的ASI值介于1.08~1.20,所有樣品落入弱過鋁質(zhì)區(qū)域 (見圖4d)。

      所有樣品的稀土配分模式圖相似,表現(xiàn)為輕稀土富集、重稀土相對虧損的右傾型 (見圖5a)。稀土總量176.97×10-6~225.80×10-6,輕稀土內(nèi)部分餾較弱 (La/SmN值3.80~4.24),重稀土內(nèi)部分餾不明顯 (Gd/YbN值0.98~1.06),輕、重稀土分餾明顯 (La/YbN值5.80~6.67),具有微弱的負(fù)銪異常 (Eu/Eu?值0.74~0.93)。

      圖4 花崗巖體主量元素圖解Fig.4 Selected major element diagrams of the granite

      圖5 紙房地區(qū)花崗巖稀土元素球粒隕石標(biāo)準(zhǔn)化配分型式圖與微量元素原始地幔蛛網(wǎng)圖 (標(biāo)準(zhǔn)化數(shù)值據(jù)文獻(xiàn) [45])Fig.5 Chondrite-normalized rare earth element patterns and primitive mantle normalized trace element spider diagram of granites in Zhifang area,East Junggar

      在微量元素原始地幔標(biāo)準(zhǔn)化蛛網(wǎng)圖 (見圖5b)上,所有樣品總體上顯示出明顯富集Ba、U、K、Sr等元素而虧損Rb、Nb、Ta、P、Ti等元素的特點。

      4 鋯石SHRIMP U-Pb定年

      樣品經(jīng)重液分離和磁選后,在雙目鏡下手工精選出代表性的鋯石,將其與標(biāo)樣一起粘貼制成環(huán)氧樹脂膠樣品靶。將靶上鋯石打磨至中心暴露,拋光后進(jìn)行鋯石透射光、反射光、陰極發(fā)光 (CL)的照射和分析。

      SHRIMP定年所用樣品靶的制作、鋯石陰極發(fā)光顯微圖像 (CL圖像)照相和鋯石U-Pb同位素分析在中國地質(zhì)科學(xué)院地質(zhì)研究所北京離子探針中心進(jìn)行,按標(biāo)準(zhǔn)測定流程[46~47]完成。年齡測定選擇陰極發(fā)光環(huán)帶明顯、晶體干凈、內(nèi)部結(jié)構(gòu)完整、無裂紋、無包裹體、無雜質(zhì)的鋯石,盡量避開鋯石中重結(jié)晶、重吸收的殘留部分,以準(zhǔn)確獲得鋯石的結(jié)晶年齡。應(yīng)用RSES參考鋯石TEM (417 Ma)進(jìn)行元素分餾校正,SL13(年齡572 Ma,U含量238× 10-6)標(biāo)定所測鋯石的U、Th、Pb含量。數(shù)據(jù)處理及U-Pb諧和圖繪制采用Ludwing編寫的SQUID和ISOPLOT程序[48~49],普通鉛根據(jù)實測204Pb進(jìn)行校正。表3所列單個數(shù)據(jù)點的誤差為1σ,采用206Pb/238U年齡,其加權(quán)平均值為95%的置信度。

      表3 東準(zhǔn)噶爾紙房地區(qū)花崗巖鋯石SHRIMP U-Pb年齡分析結(jié)果Table 3 Zircon SHRIMP U-Pb data of the granites in Zhifang area,East Junggar

      從表3可以看出,所測3件樣品鋯石的普通鉛含量較低,206Pbc為0~2.54%,U、Th含量也較低,分別為91×10-6~287×10-6、39×10-6~180×10-6,Th/U比值為0.41~0.87。鋯石的陰極發(fā)光結(jié)構(gòu)和特征 (見圖6)顯示:晶體顆粒完整,大部分呈自形長柱狀,少數(shù)為短柱狀;內(nèi)部均發(fā)育清晰規(guī)則的韻律生長環(huán)帶。結(jié)合Th/U比值特征,判斷所測鋯石均具有巖漿成因鋯石的特點。

      圖6 花崗巖樣品鋯石陰極發(fā)光圖像Fig.6 Cathodoluminescence images of selected zircon from granites

      所測3件樣品中,每件樣品的所有分析點 (ZF-2 12個、ZF-3 9個、ZF-7 11個)基本上都落在諧和線上或其附近,呈現(xiàn)較好的諧和性,不存在明顯的鉛丟失 (見圖7)。置信度大于95%時,樣品ZF-2的206P/238U年齡加權(quán)平均值為458±4 Ma(MSWD=0.78),樣品ZF-3 的206P/238U年齡加權(quán)平均值為463±7 Ma(MSWD=2.0),ZF-7的206P/238U年齡加權(quán)平均值為436±4 Ma(MSWD=1.1)。由于這些鋯石具有明顯的巖漿成因振蕩環(huán)帶,所以將年齡(463±7)~(436±4)Ma解釋為紙房北部黑云母二長花崗巖體的形成年齡,說明該花崗巖體形成于加里東期,是早—中志留世巖漿活動的產(chǎn)物。

      5 討論

      東準(zhǔn)噶爾地區(qū)阿爾曼太和卡拉麥里蛇綠巖帶之間分布著大量的花崗巖類 (見圖1b)。根據(jù)現(xiàn)有資料,東準(zhǔn)噶爾地區(qū)的花崗巖類可劃分為早古生代和晚古生代2個旋回[5,15,17,19,39~40,50~66]。由于晚古生代旋回的花崗巖類巖體數(shù)量多、 分布廣泛,因此相關(guān)研究大多集中在晚古生代花崗巖[15,17,51~66],它們的形成多被認(rèn)為是東準(zhǔn)噶爾晚古生代后碰撞巖漿活動的產(chǎn)物。而早古生代旋回的花崗巖巖體數(shù)量少、分布零星,其形成時代與構(gòu)造背景僅有少數(shù)學(xué)者進(jìn)行過論述[5,19,39]。

      雖然前人早在1∶200000區(qū)域地質(zhì)填圖 (紅柳峽幅)[41]以及之后1∶250000區(qū)域地質(zhì)填圖(紙房幅)[67]時,在東準(zhǔn)噶爾地區(qū)就已經(jīng)識別出了早古生代 (加里東期)花崗巖的存在,但是受到定年手段與技術(shù)的限制,他們并沒有提供精確年代學(xué)方面的約束。郭麗爽等[39]報道了伊吾縣銅華嶺斑巖銅礦區(qū)存在早古生代中酸性侵入體,巖體時代為中—晚志留世 (距今427~419 Ma),但缺少巖體與地層接觸關(guān)系的證據(jù),而且由于巖體時代與圍巖地層時代相矛盾,沒有對該巖體形成的構(gòu)造環(huán)境進(jìn)行詳細(xì)探討。杜世俊等[40]對瓊河壩地區(qū)和爾賽斑巖銅礦成巖礦體的研究中,揭示出早古生代 (距今432~429 Ma)的巖漿活動,但對該期巖漿活動的構(gòu)造背景也沒有給出明確的認(rèn)識。最近,Xu等[19]報道了研究區(qū)西北塔黑爾巴斯套地區(qū)存在侵位于中—上奧陶統(tǒng)荒草坡群的早—中志留世的花崗斑巖 (454~444 Ma)與花崗巖(443~432 Ma)(見圖1b),并且認(rèn)為這些花崗巖類的形成與早古生代古亞洲洋向準(zhǔn)噶爾陸塊的南向俯沖作用有關(guān)。然而,這一觀點忽略了一個重要地質(zhì)事實,即包括塔黑爾巴斯套地區(qū)在內(nèi)的整個卡拉麥里構(gòu)造帶存在上志留統(tǒng)考克塞爾蓋組 (S3k)與中—上奧陶統(tǒng)荒草坡群(O2-3hn)之間明顯的區(qū)域性角度不整合 (另文發(fā)表)。

      圖7 東準(zhǔn)噶爾紙房地區(qū)花崗巖樣品鋯石SHRIMP U-Pb諧和圖Fig.7 Concordia plob of zircon SHRIMP U-Pb data of the granites in Zhifang area,East Junggar

      目前獲得的資料顯示:①卡拉麥里構(gòu)造帶內(nèi)下志留統(tǒng)普遍缺失;②該間斷面為一區(qū)域性角度不整合,即區(qū)內(nèi)上志留統(tǒng)考克塞爾蓋組 (S3k)與中—上奧陶統(tǒng)荒草坡群 (O2-3hn)之間不整合;③不整合面上、下地層的區(qū)域變質(zhì)程度有明顯差異,該面以上的地層 (志留系)變形、變質(zhì)極輕微,而其下的地層 (奧陶系)變形強烈,變質(zhì)已達(dá)綠片巖相以上[10,26]。這表明卡拉麥里構(gòu)造帶可能存在早古生代造山作用,且造山作用發(fā)生在上志留統(tǒng)考克塞爾蓋組(S3k)沉積之前。

      本文研究的紙房花崗巖體的鋯石年齡為463~436 Ma,而且該巖體侵位于中—上奧陶統(tǒng),并被上志留統(tǒng)與下泥盆統(tǒng)不整合覆蓋。將其侵位年齡與野外產(chǎn)出特征置于上述已有區(qū)域地層資料背景下綜合分析可以發(fā)現(xiàn),紙房花崗巖體的形成時代大致對應(yīng)于卡拉麥里構(gòu)造帶內(nèi)區(qū)域性角度不整合所代表的沉積間斷記錄。因此,本文推測,紙房花崗巖體可能是在早古生代擠壓造山抬升環(huán)境下侵位所致,屬于同造山花崗巖。高Sr(大于300×10-6)、低Yb(小于2.50×10-6)、弱的Eu負(fù)異常等地球化學(xué)特征表明其屬于埃達(dá)克型花崗巖[68],為造山階段花崗巖的典型代表[68~71],進(jìn)一步印證了本文的推測。

      紙房地區(qū)早古生代同造山花崗巖的確認(rèn),證明卡拉麥里構(gòu)造帶存在早古生代造山作用,而且花崗巖的形成時代可以用來限定造山作用的時間,即造山作用發(fā)生在晚奧陶世—早志留世 (距今463~436 Ma)。

      實際上,前人的研究曾揭示出卡拉麥里構(gòu)造帶北側(cè)的阿拉曼太構(gòu)造帶也存在早古生代造山作用[2,10,17,23,26]。因此,本文推測,在整個東準(zhǔn)噶爾地區(qū)可能連續(xù)分布著早古生代的造山帶。

      6 結(jié)論

      東準(zhǔn)噶爾紙房地區(qū)存在早古生代的花崗巖體,鋯石SHRIMP U-Pb測年結(jié)果顯示,其侵位時代為距今463~436 Ma。

      區(qū)域地質(zhì)背景、巖體與圍巖的接觸關(guān)系以及巖體的形成時代與地球化學(xué)特征等共同表明,區(qū)內(nèi)的早古生代花崗巖體應(yīng)該是在造山作用過程中形成的,屬于同造山花崗巖。

      卡拉麥里構(gòu)造帶存在早古生代的造山作用,造山作用時間為晚奧陶世—早志留世 (距今463~436 Ma)。

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      DETERMINATION OF THE EARLY PALEOZOIC GRANITE IN ZHIFANG AREA,EAST JUNGGAR,XINJIANG AND ITS GEOLOGICAL IMPLICATIONS

      XU Qin-qin,ZHAO Lei,NIU Bao-gui

      (Institute of Geology,Chinese Academy of Geological Sciences,Beijing 100037,China)

      Zhifang granite pluton outcrops in the northern part of Kalamaili tectonic belt,East Junggar Xinjiang.The latest strata intruded by the granite pluton are the Middle-Upper Ordovician Huangcaopo formation and it is unconformably covered by the Upper Silurian and Lower Devonian strata.Zircon SHRIMP U-Pb data showed that the weighted mean206Pb/238U age was(463±7)~(436±4)Ma,which indicated that the granite pluton was emplaced during Late Ordovician and Early Silurian and it was the product of the early Paleozoic magmatic activity.Combining the existing regional geological data,the emplacement age of the granite pluton and the contact relation with the country rocks,it is speculated that the forming time of the granite pluton roughly corresponds to that of the regional angular unconformity in the Kalamaili tectonic belt and the Zhifang granite pluton might be formed during the early Paleozoic orogenic stage.The geochemical characteristics of high Sr,low Yb and weak negative Eu anomalies also suggests that it is the Adak-type syn-orogenic granite.Therefore determination of the syn-orogenic granite in Zhifang defines the presence of early Paleozoic orogenesis in Kalamaili tectonic belt,East Junggar.

      granite;zircon SHRIMP U-Pb data;East Junggar;early Paleozoic;orogenesis

      P597

      A

      1006-6616(2015)04-0502-15

      2015-06-14

      國家自然科學(xué)基金項目 (41572206);中國地質(zhì)調(diào)查局地質(zhì)調(diào)查項目 (12120115070301)

      徐芹芹 (1984-),女,助理研究員,主要從事大陸變形與構(gòu)造地貌研究。E-mail:qinqin2002dz1@163.com

      ;趙磊 (1979-),男,副研究員,主要從事區(qū)域大地構(gòu)造研究。E-mail:jleiz@163.com

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