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      青藏高原北羌塘祖爾肯烏拉山地區(qū)查保馬組陸相火山巖地球化學(xué)特征及鋯石U-Pb測(cè)年

      2015-08-23 01:31:20王釗飛曹波陳炳錦
      西北地質(zhì) 2015年4期
      關(guān)鍵詞:火山巖鋯石巖漿

      王釗飛,曹波,陳炳錦

      (西北有色地質(zhì)勘查局七一一總隊(duì),陜西 漢中 723000)

      青藏高原北羌塘祖爾肯烏拉山地區(qū)查保馬組陸相火山巖地球化學(xué)特征及鋯石U-Pb測(cè)年

      王釗飛,曹波,陳炳錦

      (西北有色地質(zhì)勘查局七一一總隊(duì),陜西 漢中723000)

      祖爾肯烏拉山地區(qū)查保馬組陸相火山巖巖石類型主要為粗安巖和安山巖,屬新近紀(jì)中新世。地球化學(xué)特征顯示:主量元素SiO2含量為42.45%~62.60%,絕大部分為58.08%~62.60%,相對(duì)富集FeO、MgO、K2O、TiO2、P2O5,屬幔源巖漿巖系列。里特曼指數(shù)σ=2.87~3.41,平均3.19,屬于鈣堿性巖系。火山巖的全堿(Na2O+K2O)含量高,且Na2O-2

      祖爾肯烏拉山;中新世;查保馬組;火山巖;鋯石U-Pb測(cè)年

      羌塘北部新近紀(jì)陸相火山巖較為發(fā)育,產(chǎn)狀為熔巖被,不整合覆蓋在侏羅紀(jì)雁石坪群之上,近年來,國(guó)內(nèi)外學(xué)者已就青藏高原新生代火山巖作了大量研究(鄧萬明,1989,1991,1993,1998,1999;劉嘉麟,1999;賴紹聰?shù)龋?996,1999,2001,2002;楊德明等,1999;夏林圻等,2010),識(shí)別出超鉀質(zhì)、鉀玄巖系和高鉀鈣堿性巖系3個(gè)火山巖系列,并對(duì)超鉀質(zhì)和鉀玄巖系的巖石地球化學(xué)、同位素特征和巖石成因進(jìn)行了深入探討。然而對(duì)高原北部尤其是北羌塘具有特殊意義的鉀玄巖、高鉀鈣堿性巖系火山巖的專題研究缺較為滯后(鄧萬明,1998;王碧香等,1999;遲效國(guó)等,1999)。

      研究區(qū)自然條件十分惡劣,該地區(qū)火山巖研究程度較低。1987年青海區(qū)調(diào)綜合地質(zhì)大隊(duì)對(duì)該區(qū)進(jìn)行了1∶20萬區(qū)域地質(zhì)調(diào)查,根據(jù)火山巖全巖K-Ar年齡為(26.5±2.6)Ma,將該區(qū)火山巖劃分為新近系火中新統(tǒng)查保馬組(青海省地質(zhì)礦產(chǎn)局區(qū)調(diào)綜合地質(zhì)大隊(duì),1987)。2004年中國(guó)地質(zhì)調(diào)查局宜昌地質(zhì)調(diào)查中心對(duì)該區(qū)進(jìn)行了1∶25萬赤布張錯(cuò)幅區(qū)域地質(zhì)調(diào)查,對(duì)該區(qū)新生代火山巖進(jìn)行了巖石化學(xué)和同位素地質(zhì)學(xué)方面的研究,在本次工作區(qū)加木稱錯(cuò)幅歐錯(cuò)湖與加木稱錯(cuò)湖之間地段采取測(cè)年樣品,采用K-Ar法測(cè)年獲得火山巖年齡值為26.5Ma,屬新近紀(jì)中新世,火山巖系列屬鉀質(zhì)鈣堿性巖系(中國(guó)地質(zhì)調(diào)查局宜昌地質(zhì)調(diào)查中心,2004)。筆者通過對(duì)1∶5萬崗欽等4幅區(qū)域地質(zhì)調(diào)查,針對(duì)查保馬組火山巖進(jìn)行了巖石化學(xué)、稀土元素、微量元素、鋯石U-Pb同位素年代學(xué)等系統(tǒng)分析測(cè)定,以期揭示其巖石類型、成因及構(gòu)造屬性,其對(duì)認(rèn)識(shí)北羌塘新近紀(jì)中新世火山巖構(gòu)造環(huán)境及演化特征具有重要的意義。

      1 區(qū)域地質(zhì)背景

      祖爾肯烏拉山地區(qū)中新世查保馬組陸相火山巖是羌塘新生代火山巖帶北羌塘火山巖省的一部分。羌塘新生代火山巖帶的主體沿北緯34°~36°延伸,長(zhǎng)達(dá)1 500km,平均海拔4 500m。鄧萬明大致以北緯35°為界,將火山巖帶劃分為南、北2個(gè)亞帶,各亞帶又由若干個(gè)火山巖省組成。祖爾肯烏拉山地區(qū)中新世查保馬組陸相火山巖出露于34°以南。

      研究區(qū)中的查保馬組火山巖主要分布于歐錯(cuò)—祖爾肯烏拉山一帶,屬研究區(qū)內(nèi)的火山巖位于羌塘亞帶北羌塘火山巖省的東端,在本次工作區(qū)內(nèi)主要圍繞歐錯(cuò)出露,少量分布在祖爾肯烏拉山南坡一帶,火山巖區(qū)海拔5 000~5 800m?;鹕綆r總體呈東西長(zhǎng)約30km,寬約15km的寬帶狀分布,由2條相間的近東西向的火山巖條帶和若干火山巖塊體組成,區(qū)內(nèi)出露面積89km2(圖1)。

      1.第四系;2.新近系查保馬組;3.侏羅系雪山組;4.侏羅系索瓦組;5.侏羅系夏里組;6.侏羅系布曲組;7.侏羅系雀莫錯(cuò)組;8.雪山;9;湖泊;10.工作區(qū)圖1 祖爾肯烏拉山地區(qū)區(qū)域地質(zhì)圖Fig.1 Regional geological map of Jurhen UL mountain area

      2 火山巖的地質(zhì)特征及巖石特征

      查保馬組陸相火山巖主要為中性火山熔巖,其巖石類型主要為粗安巖和安山巖。依據(jù)巖石的結(jié)構(gòu)、構(gòu)造,從下往上劃分為2個(gè)巖性段。下部為灰黑、灰綠、紅褐色,球粒狀、斑狀熔巖。斑晶為長(zhǎng)石和石英,含量約為10%,直接1~5mm,基質(zhì)為流紋質(zhì)、玻璃質(zhì),基質(zhì)中有脫?;纬傻拈L(zhǎng)英質(zhì)球粒發(fā)育,呈雪花狀均勻分布含量約為20%~30%。呈顯微交織狀結(jié)構(gòu),斑狀結(jié)構(gòu),霏細(xì)結(jié)構(gòu),球粒、微晶塊狀構(gòu)造。巖石中角閃石多已強(qiáng)烈分解為透閃石、黑云母、綠泥石,含量約為16%~36%。上部為淺灰色、灰黑色含氣孔狀熔巖。氣孔較發(fā)育,體積約為10%~35%,隱晶質(zhì)結(jié)構(gòu),熔渣狀構(gòu)造,氣孔杏仁狀構(gòu)造。氣孔形狀各異,常見橢圓狀、扁平狀、半月狀、氣泡狀等,直徑2~12cm者居多,略具定向排列。杏仁體中汽化熱液石英-鉀長(zhǎng)石-方解石等組成集合體充填礦物均已流失,可見部分表生鈣質(zhì)、硅質(zhì)膠狀物充填。巖石中球粒為脫?;梢虻姆派錉铋L(zhǎng)英質(zhì)微晶,約為5%。

      3 火山巖巖石化學(xué)特征

      3.1火山巖的分類

      研究區(qū)火山巖為熔巖,多呈隱晶質(zhì)結(jié)構(gòu)。巖石類型劃分在鏡下鑒定基礎(chǔ)上,通過巖石化學(xué)分析,根據(jù)國(guó)際地科聯(lián)推薦的TAS方案進(jìn)行化學(xué)分類和命名。選取有代表性的新鮮的火山巖樣品,進(jìn)行全巖巖石化學(xué)全分析(表1)。研究區(qū)內(nèi)火山巖的SiO2含量為42.45%~62.60%,絕大部分為58.08%~62.60%,屬于中性巖類。在TAS圖解(圖2)中,樣品集中投影于中性巖區(qū),除1個(gè)點(diǎn)位于碧玄巖區(qū)、1個(gè)點(diǎn)位于安山巖區(qū)外,其余均位于粗安巖區(qū)。其中位于粗安巖中的樣品,由于Na2O-2

      表1  查保馬組火山巖的化學(xué)成分(%)

      注:分析單位:有色金屬西北礦產(chǎn)地質(zhì)測(cè)試中心;分析方法:重量法、容量法、ICP-OES等離子體發(fā)射光譜法。

      3.2巖石系列

      在TAS圖解(圖2)中可以看到,絕大多數(shù)樣品均投影于亞堿性系列。進(jìn)一步通過里特曼指數(shù)(σ)和賴特巖系堿度率(A.R)進(jìn)行判別,σ=1.67~5.38(表2),平均3.23,正好介于里特曼劃分的鈣堿性巖系區(qū)(1.8~3.3),屬鈣堿性巖系,且Na2O

      K2O,K2O/Na2O=1.12~1.43,屬鉀質(zhì)巖系。

      圖3中,大部分樣品投影在鉀玄巖系列和高鉀鈣堿性系列過渡地帶。鉀玄巖系火山巖相對(duì)富集FeO、MgO、K2O、TiO2、P2O5。鎂鐵質(zhì)的富集說明其巖漿來源于上地幔。高鉀質(zhì)鈣堿性火山巖相對(duì)富集SiO2、Al2O3,說明其巖漿源區(qū)火山巖源區(qū)為鋁硅質(zhì)地殼。因此,該鉀玄巖系巖漿是上地幔部分熔融的產(chǎn)物。

      Pc.苦橄玄武巖;B.玄武巖;O1.玄武安山巖;O2.安山巖;O3.英安巖;S1.粗面玄武巖;S2.玄武粗安巖;S3.粗安巖;T.粗面巖;R.流紋巖;U1.碧玄巖;U2.堿玄巖;U3.堿玄質(zhì)玄武巖;Ph.響巖;F.副長(zhǎng)石巖;Ir.堿性巖與非堿性巖分界線,上方為堿性,下方為亞堿性圖2 查保馬組火山巖TAS圖解Fig.2 The Chabaoma volcanic rock in the TAS diagram

      圖3 查保馬組火山巖SiO2-K2O圖解Fig.3 The Chabaoma volcanic rock in the SiO2 - K2O diagram

      樣品編號(hào)ApIlMtOrAbAnQDiHyDISIA/CNKARσHQ681.593.047.8423.5327.0912.1814.565.604.5365.188.040.782.253.20HQ691.272.234.4317.842.9012.72-21.03-30.1611.310.251.385.38HQ701.753.157.3922.8324.6914.7715.973.216.2563.498.870.822.102.85HQ711.593.156.3822.9327.5212.4813.1910.9011.8163.649.360.692.103.15HQ721.663.067.6523.1328.6712.3513.845.024.6365.648.130.782.253.34HQ731.653.127.4723.8425.6813.3914.845.014.9664.368.650.792.183.10HQ741.633.117.8922.8828.4611.712.747.983.5764.088.050.7472.223.41HQ751.332.487.1417.8022.2411.6322.4613.011.9262.508.420.631.911.67HQ761.603.078.0822.6227.0511.9112.569.044.0862.238.660.712.153.33HQ771.663.058.1721.527.3114.0412.964.946.3361.778.890.802.113.20HQ781.672.988.0422.2627.1412.3412.468.364.7161.868.940.732.143.28HQ1311.613.037.6024.4524.4614.0414.267.083.4363.176.890.762.113.18HQ1321.632.948.3222.2726.3012.3612.079.954.1060.648.050.702.093.31HQ1331.683.087.123.3729.3511.6911.2310.472.0463.958.500.692.173.63HQ1341.643.077.3621.3627.2613.4315.306.424.0963.927.920.772.102.87HQ1351.583.118.0221.2925.6214.2915.584.815.7162.497.840.792.072.81HQ1361.633.068.3822.2026.6012.9613.486.365.2862.287.820.772.143.20

      4 火山巖稀土元素和微量元素特征

      4.1火山巖稀土元素特征

      火山巖稀土元素豐度見表3。表中可以看出δEu值小于1,為0.69~0.73,平均為0.70,表明巖漿演化過程中有少量的斜長(zhǎng)石分離結(jié)晶或源區(qū)受到地殼的混染。從球粒隕石標(biāo)準(zhǔn)化的稀土元素分配圖解(圖4)可以看出:①火山巖均為強(qiáng)烈右傾負(fù)斜率的輕稀土元素高度富集型分布模式。②火山巖為弱負(fù)Eu異常,是巖漿從早到晚分異演化的結(jié)果。其中高鉀鈣堿性火山巖的ΣREE相對(duì)低,無負(fù)異常;鉀玄巖系火山巖中的ΣREE相對(duì)高,弱的負(fù)異常。中酸性火山巖無負(fù)Eu異常的特征,標(biāo)志著一個(gè)加厚的相對(duì)于榴輝巖質(zhì)(無斜長(zhǎng)石相)陸殼的存在。因此,高鉀鈣堿性火山巖巖漿可能來源于榴輝巖質(zhì)下地殼的部分熔融;而鉀玄巖系火山巖是幔源鉀玄巖巖漿結(jié)晶分異的產(chǎn)物,在巖漿演化過程中存在斜長(zhǎng)石的分異結(jié)晶作用。

      4.2火山巖微量元素特征

      火山巖的微量元素豐度見表4。原始地幔標(biāo)準(zhǔn)化配分圖解(圖5)顯示:①強(qiáng)不相容元素Rb、Ba、Th、U、K呈強(qiáng)富集,弱不相容元素Ta、Nb、La、Ce、P、Zr、Hf、Sm弱富集,過度元素Ti、Y、Yb弱虧損,相容元素Lu強(qiáng)虧損。富集強(qiáng)不相容元素,指示火山巖源區(qū)為富集地幔(EMⅡ)。隨著相容性的增加,微量元素富集程度降低直至虧損,說明在巖漿的形成及演化過程中,存在著結(jié)晶分異作用。②出現(xiàn)明顯的Rb、Th、Ce峰和Ta、Nb、P谷,表明巖漿的起源可能與俯沖作用有關(guān),這也說明了巖漿在生成及上升過程中,受到過陸殼的混染。

      圖4 火山巖稀土元素球粒隕石標(biāo)準(zhǔn)化分布型式Fig.4 Volcanic rock ree chondrite standardized distribution pattern

      樣品編號(hào)HQ68HQ71HQ73HQ74HQ77HQ78HQ131HQ132HQ134HQ136巖石名稱粗安巖粗安巖粗安巖粗安巖粗安巖粗安巖粗安巖粗安巖粗安巖粗安巖La140.32136.52149.41150.91154.02144.56159.64151.86157.65152.36Ce240.84239.33266.17265.04264.9252.24276.22262.87272.55266.18Pr28.5027.6930.8230.4430.4429.1632.0630.1231.4530.47Nd97.2595.35105.1103.97104.2699.85108.45102.66107.43104.38Sm14.4813.9615.1915.2215.1014.4115.5914.5115.1515.11Eu3.022.903.163.133.212.903.212.943.173.05Gd10.7910.3411.0611.0511.0910.5311.6910.7111.1211.01Tb1.271.191.311.241.301.231.301.231.311.26Dy5.545.185.495.515.585.355.655.495.665.52Ho0.940.920.940.940.910.870.970.920.980.94Er2.472.262.322.342.302.332.432.342.502.35Tm0.330.300.310.300.30.290.320.310.330.33Yb1.831.751.921.841.701.691.851.862.031.87Lu0.270.260.270.260.270.260.280.270.270.25Y24.5222.4723.9223.7523.7022.8324.2724.1925.0624.28ΣREE547.83537.95593.47592.19595.39565.67619.65588.09611.62595.08LREE524.40515.75569.85568.72571.95543.12595.17564.96587.39571.56HREE23.4322.2023.6223.4723.4422.5524.4823.1324.2223.52LREE/HREE22.3823.2324.1324.2324.4024.0824.3224.4224.2524.30LaN/YbN52.2753.1553.0855.9261.8158.2658.8655.4952.7455.45δEu0.710.710.710.700.730.690.700.690.710.69δCe0.870.890.900.900.880.890.890.890.890.90

      注:分析單位:有色金屬西北礦產(chǎn)地質(zhì)測(cè)試中心; 分析方法:堿熔粒子交換-ICP質(zhì)譜法分析。

      表4 火山巖微量元素分析結(jié)果(10-6)

      續(xù)表4

      樣品編號(hào)HQ68HQ71HQ73HQ74HQ77HQ78HQ131HQ132HQ134HQ136巖性粗安巖粗安巖粗安巖粗安巖粗安巖粗安巖粗安巖粗安巖粗安巖粗安巖Sc10.88.510.29.69.78.99.79.39.49.8V80.073.776.276.279.475.479.374.475.176.5Co13.79.89.59.69.310.28.99.39.59.7Ni21.121.020.821.620.421.220.120.520.021.3Ga23.622.323.523.324.222.524.923.024.023.1Rb160.5139.8150.9142.7150.2139.5169.0147.6159.3154.0Nb36.534.038.137.038.336.139.935.735.638.8Mo1.93.82.32.72.22.93.42.42.12.6Cs4.13.52.22.82.53.02.92.92.82.8Hf10.410.011.711.111.510.911.810.811.011.5Ta1.61.51.51.51.51.41.61.41.41.5W4.11.81.61.61.51.91.91.61.71.8Tl0.80.70.70.70.70.70.70.70.70.7Bi0.20.50.20.20.20.30.10.10.30.2Th28.927.432.630.731.429.236.433.334.434.4U6.35.45.25.35.45.46.26.16.26.0As14.014.02.65.59.06.64.08.79.06.9Sb1.31.41.10.60.70.81.30.50.810.0

      注:分析單位:有色金屬西北礦產(chǎn)地質(zhì)測(cè)試中心; 分析方法:ICP原子發(fā)射光譜等方法分析。

      圖5 火山巖微量元素原始地幔標(biāo)準(zhǔn)化蛛網(wǎng)圖Fig.5 Volcanic rocks in the primitive mantle standardization spider diagram of trace element

      4.3火山巖Sr、Nd同位素地球化學(xué)特征

      表5中所有火山巖樣品均具有較高的ISr值(>0.707)和較低的INd值(<0.512 4),在143Nd /144Nd-87Sr/86Sr圖解(圖6)上,均投影于EMⅡ型富集地幔象限內(nèi),說明其地幔源區(qū)有較多地殼物質(zhì)的加入。

      表5 火山巖Sr 、Nd同位素組成測(cè)定結(jié)果

      注:分析單位:有色金屬西北礦產(chǎn)地質(zhì)測(cè)試中心;陽離子交換技術(shù),同位素稀釋法。

      DM.虧損地幔;BSE.原始地幔;EMⅠ.Ⅰ型富集地幔;EMⅡ.Ⅱ型富集地幔圖6 144Nd / 143Nd-87Sr / 86Sr相關(guān)圖Fig.6 144Nd / 143Nd-87Sr / 86Sr relevant figure

      5 時(shí)代測(cè)定

      本次在研究區(qū)達(dá)日瑪?shù)貐^(qū)采集測(cè)年樣品,采用ICP-MS鋯石U-Pb法測(cè)得火山巖年齡為(20±1)Ma,屬新近紀(jì)中新世。這與1∶20萬赤布張錯(cuò)幅、溫泉兵站幅區(qū)調(diào)報(bào)告所獲得的火山巖年齡基本一致,說明工作區(qū)內(nèi)査保馬火山巖時(shí)代歸屬為新近紀(jì)中新世。鋯石CL圖像及靶位圖見圖7,鋯石U-Pb同位素年齡數(shù)據(jù)見表6,火山巖諧和圖見圖8。

      圖7 鋯石CL圖像及靶位圖Fig.7 Zircon CL images and targeted figure

      圖8 火山巖年齡諧和圖Fig.8 Volcanic rocks in the age of harmonic figure

      鋯石晶體多呈自形-半自形柱狀,無色透明-淺褐色,多數(shù)顆粒具有良好的多邊晶形,柱面及兩端的雙錐發(fā)育完整,具有破損和局部被熔蝕的現(xiàn)象。晶體形態(tài)為等軸狀-長(zhǎng)板狀,長(zhǎng)寬主要集中在2∶1左右,粒徑為30~100μm。晶體邊部及沿晶體裂隙處顏色變?yōu)榛液谏?。通過陰極熒光圖像(CL圖像)分析,鋯石顆粒顯示明顯的巖漿結(jié)晶成因振蕩性環(huán)帶結(jié)構(gòu),反映其典型的巖漿結(jié)晶成因特點(diǎn)。

      6 火山巖形成的構(gòu)造環(huán)境

      由圖9可知,樣品均投射在板內(nèi)區(qū)域。印度板塊與歐亞板塊的碰撞發(fā)生在40~55Ma,因此,新生代火山作用的發(fā)生是在兩大板塊碰撞后的陸內(nèi)構(gòu)造演化階段。新近系以來,青藏高原隆升最快,升幅最大,研究區(qū)內(nèi)的上升幅度更是達(dá)到5 000m。為了調(diào)節(jié)大幅度隆升,容易形成斷陷盆地和構(gòu)造湖盆,而且在抬升過程中,塊體之間的差異運(yùn)動(dòng)有利于地殼拉張減薄以致形成局部的初始裂谷。這些張性斷裂切穿地殼層達(dá)到上地幔的深度,導(dǎo)致幔源鉀質(zhì)熔體的生成。研究區(qū)新近紀(jì)中新世的火山活動(dòng),正是在初始裂谷的環(huán)境下,由于切穿殼層張性斷裂達(dá)到上了地幔的深度,導(dǎo)致EMⅡ型地幔部分熔融生成鉀質(zhì)巖漿,經(jīng)結(jié)晶分異后噴發(fā)形成查保馬組鉀質(zhì)中性火山巖。

      WIP.板內(nèi);CAP.大陸弧;PAP.后碰撞?。籐OP.晚期洋??;LOP.早期洋弧圖9 查保馬組火山巖Zr/Al2O3-TiO2/Al2O3圖解Fig.9 The Chabaoma volcanic rock in the Zr/Al2O3-TiO2/Al2O3 diagram

      7 結(jié)論

      (1)祖爾肯烏拉山地區(qū)查保馬組火山巖巖石類型主要為粗安巖和安山巖,根據(jù)ICP-MS鋯石U-Pb法測(cè)得火山巖年齡為(20±1)Ma,屬新近紀(jì)中新世。

      (2)祖爾肯烏拉山地區(qū)查保馬組火山巖為鉀玄巖系形成于中新世初始裂谷的拉張環(huán)境下,由EMⅡ型富集地幔經(jīng)過部分熔融作用生成的原始巖漿,后經(jīng)結(jié)晶分異作用形成鉀玄巖系粗安巖和安山巖。相對(duì)富集FeO、MgO、K2O、TiO2、P2O5、輕稀土元素和強(qiáng)不相容元素,弱負(fù)Eu異常,屬幔源巖漿巖系列。

      鄧萬明.青藏高原北部新生代板內(nèi)火山巖[M].北京:地質(zhì)出版社,1998:1-168.

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      DENG Wangming. The geology geochemistry and forming age of the shoshonites from middle Kunlun mountain[J]. Chinese Journal of Geology, 1991, 26(3):201-213.

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      鄧萬明,孫宏娟.青藏高原新生代火山巖活動(dòng)與高原隆升關(guān)系[J].地質(zhì)論評(píng),1999, 45(增刊): 952-958.

      DENG Wangming, SUN Hongjuan .The Cenozoic volcanism and the uplifting mechanism of the Qinghai-Tibet plateau[J]. Geological Review, 1999, 45(Suppl.): 952-958.

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      LAI Shaocong.Mineral chemistry of Cenozoic volcanic rocks in Yumen, Hoh Xil and Mangkang lithodisericts, Qinghai-Tibet plateau and its petrologic significance[J]. Acta Mineralogica Sinica.1999,19(2):236-244.

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      賴紹聰,鄧晉福,趙海玲.青藏高原百元火山巖作用與構(gòu)造演化[M].西安:陜西科學(xué)技術(shù)出版社,1996:1-120.

      LAI Shaocong, DENG Jinfu, ZHAO Hailing .Volcanism and tectonic evolution in the northern margin of Qinghai-Tibet plateau[M]. Xi’an: Science and Technology Press of Shaanxi Province, 1996:1-120.

      賴紹聰,劉池陽. 青藏高原北羌塘榴輝巖質(zhì)下地殼及富集型地幔源區(qū)——來自新生代火山巖的巖石地球化學(xué)證據(jù)[J].巖石學(xué)報(bào),2001,17(3):459-468.

      LAI Shaocong ,LIU Chiyang. Enriched upper mantle and eclogite lower crust in north Qiangtang,Qinghai-Tibet plateau[J]. Acta Petrologica Sinca, 2001,17(3):459-468.

      劉嘉麟.中國(guó)火山[M].北京:科學(xué)出版社,1999:53-135.

      LIU Jialin. Volcanoes in china[M]. Beijing:Science Press, 1999:53-135.

      王碧香,葉和飛,彭勇民.青藏羌塘盆地中新生帶火山巖同位素地球化學(xué)特征及其意義[J].地質(zhì)論評(píng),1999,45(增刊);946-951.

      WANG Bixiang, YE Hefei, PENG Yongmin.Isotopic geochemistry features and its significance of the Mesozoic-Cenozoic volcanic rocks from Qiangtang basin, Qinghai-Tibet plateau[J]. Geological Review, 1999,45(Suppl.):946-951.

      楊德明,李才,和鐘華,等.西藏尼瑪宋我日火山巖巖石地學(xué)特征與構(gòu)造環(huán)境[J].地質(zhì)論評(píng),1999,45(增刊):972-977.

      YANG Deming,LI Cai,HE Zhonghua,et al.Petrochemistry and tectonic settings of the volcanic rocks of Songwori in Nima county,Tibet[J]. Geological Review , 1999,45(Suppl.):972-977.

      遲效國(guó),李才,金巍,等.藏北新生代火山作用的時(shí)空演化與高原隆升[J].地質(zhì)論評(píng),1999,45(增刊):978-986.

      CHI Xiaoguo,LI Cai, JIN Wei,et al.The Cenozoic volcanism evolutionary and uplifting mechanism of the Qinghai-Tibet plateau[J]. Geological Review,1999, 45(Suppl.):978-986.

      夏林圻,李向民,馬中平,等.青藏高原新生代火山作用與構(gòu)造演化[J].西北地質(zhì),2010,43(1):1-25.

      XIA Linqi,LI Xiangmin, MA Zhongping,et al. Cenozoic Yolcanism and Tectonic Evolution on the Tibetan Plateau[J]. Northwestern Geology,2010, 43(1):1-25.

      賴紹聰,伊海生,劉池陽,等.青藏高原北羌塘新生代高鉀鈣堿性系列火山巖角閃巖類型及痕量元素地球化學(xué)[J].巖石學(xué)報(bào),2002,18(1):17-24.

      LAI Shaocong,YI Haisheng,LIU Chiyang,et al.Trace element geochemistry and classification of amphiboles of the Cenozoic high-potassium calc-alkaline volcanic rock series from north Qiangtang,Qinghai-Tibetan plateau[J]. Acta Petrologica Sinica,2002,18(1):17-24.

      賴紹聰,劉池陽,S.Y.O’Reilly.北羌塘新第三紀(jì)高鉀鈣堿火山巖系的成因及其大陸動(dòng)力學(xué)意義[J].中國(guó)科學(xué),2001,31(增刊):34-42.

      LAI Shaocong,LIU Chiyang,S.Y.O’Reilly. The cause of the high potassium calc alkali volcanic series and continental dynamics in Neogene from north Qiangtang[J]. Science China,2001,31(Suppl.) :34-42.

      青海省地質(zhì)礦產(chǎn)局區(qū)調(diào)綜合地質(zhì)大隊(duì).1∶20萬赤布張錯(cuò)、溫泉兵站幅區(qū)調(diào)報(bào)告[R].1987.

      中國(guó)地質(zhì)調(diào)查局宜昌地質(zhì)調(diào)查中心.1∶25萬赤布張錯(cuò)幅區(qū)調(diào)報(bào)告[R].2004.

      The Geochemical Characteristics and Zircon U-Pb Dating of the Miocene Continenta Volcanic Rocks from Chabaoma Formation in the Mt. Jurhen Ul Area of North Qiangtang,Qinghai-Tibetan Plateau

      WANG Zhaofei,CAO Bo,CHEN Bingjin

      (No.711 General Party,Northwest Nonferrous Geological Exploration Bureau,Hanzhong 723000,Shaanxi,China)

      In the Chabaoma Formation of Mt. Jurhen Ul area,the main rock types of continental volcanic rockare latite and andesite,which were formed in Neogene-Miocene epoch. The geochemical characteristics indicate that the contents of SiO2(main element)range from 42.45% to 62.60%, and most of them are 58.08%-62.60%, which is relatively higher than the ones of FeO, MgO, K2O, TiO2and P2O5, suggesting these rocks belong to the ones of mantle-derived magmatic rock series. The values of σ (Litman index) are 2.87-3.41, with an average of 3.19, showing these rocks have the characteristics of calc-alkaline rock series. The total alkali (Na2O+K2O) contents of these volcanic rocks are high, the contents of Na2O-2 are less than the ones of K2O, and the ratios of K2O/Na2O are 1.12-1.43, suggesting theses rocks belong to shoshoniteseries.For the trace elements, the strong incompatible elements (such as Rb, Ba, Th, U and K) showstrong enrichment, but the weakly incompatible elements (Ta, Nb, La, Ce, P, Zr, Hf and Sm) show weak enrichment, while the transition elements (Ti, Y and Yb) are weakly less, and the compatible element (Lu) is strong loss.The strong enrichment of incompatible elements reveal that these volcanic rocks were soured from the enriched mantle (EM II). The distribution model of REE is right abligue in the orientation, with significant REE fractionation and weak negative Eu anomalies, suggesting that the crustal material had mixed into the magma during the upwelling process, which lead to the occurring of assimilation and hybridization. The analysis show that, these rocks formed in an intraplate setting. The ICP-MS zircon U - Pb dating reveals that the crystallization ages of these volcanic rocks are 20±1Ma, belonging to the Miocene Epoch of Neogene Period.

      Mt. Jurhen Ul; Miocene; Chabaoma Formation; volcanic rocks; zircon U-Pb dating

      2015-05-03;

      2015-07-20

      中國(guó)地質(zhì)調(diào)查局項(xiàng)目“青海沱沱河地區(qū)1∶5萬I46E013003、I46E013004、I46E014003、I46E014004四幅區(qū)域地質(zhì)調(diào)查”(1212011221010)

      王釗飛(1986-),男,畢業(yè)于長(zhǎng)安大學(xué)地球科學(xué)與資源學(xué)院地質(zhì)學(xué)專業(yè),地質(zhì)工程師,主要從事地質(zhì)礦產(chǎn)勘查專業(yè)。E-mail:445215836@qq.com

      P595

      A

      1009-6248(2015)04-0037-13

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