大别造山带北缘后碰撞富钾火山岩:地球化学与岩石成因

邱检生 王德滋 等. 大别造山带北缘后碰撞富钾火山岩:地球化学与岩石成因[J]. 岩石学报, 2002, 18(3): 319-330.
引用本文: 邱检生 王德滋 等. 大别造山带北缘后碰撞富钾火山岩:地球化学与岩石成因[J]. 岩石学报, 2002, 18(3): 319-330.
Qiu JS,Wang DZ,Liu H and Ling WL. 2002. 1. State Key Laboratory of Mineral Deposit Research of Nanjing University,Nanjing 210093,China 2. Department of Earth Sciences,Nanjing University,Nanjing 210093,China 3. Faculty of Earth Sciences,China University of Geosciences,Wuhan 430074,China. Post-collisional potash-rich volcanic rocks in the north margin of Dabie orogenic belt: geochemistry and petrogenesis.[J]. Acta Petrologica Sinica, 2002, 18(3): 319-330.
Citation: Qiu JS,Wang DZ,Liu H and Ling WL. 2002. 1. State Key Laboratory of Mineral Deposit Research of Nanjing University,Nanjing 210093,China 2. Department of Earth Sciences,Nanjing University,Nanjing 210093,China 3. Faculty of Earth Sciences,China University of Geosciences,Wuhan 430074,China. Post-collisional potash-rich volcanic rocks in the north margin of Dabie orogenic belt: geochemistry and petrogenesis.[J]. Acta Petrologica Sinica, 2002, 18(3): 319-330.

大别造山带北缘后碰撞富钾火山岩:地球化学与岩石成因

  • 基金项目:

    国家自然科学基金资助项目 ( 4 9872 0 2 8)成果之一,国土资源部壳幔体系组成、物质交换及动力学开放实验室研究基金资助

  • 大别造山带北缘晚中生代富钾火山岩分布在磨子潭-晓天断裂以北的上叠式火山盆地中,主要为一套以钾玄岩-粗安岩-安粗岩-粗面岩为主体的中偏碱性岩石组合,晚期出现少量碱性火山岩。化学成分上具有富碱、富钾、贫钛、氧化系数较高等特点。岩石的Rb、Ba、Th、Pb等大离子亲石元素含量高,富轻稀土,La/Nb、Ba/Nb及LREE/HREE比值高,并且有显著的Nb、Ti负异常和Pb正异常,而铕异常则不明显。富钾火山岩的Isr值较高(=0.70872-0.70895),εNd(t)值显著偏低(=-14.62--18.51)。根据对岩石产出动力地质背景及地球化学特征的综合分析,结合同位素组成的混合模拟,表明本区富钾火山岩最可能起源于受俯冲陆壳析出流体交代作用所形成的富集地幔(EM I)的部分熔融。
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  • [1]

    [1]Arndt N T, Christensen U. 1992. The role of lithospheric mantle in continental flood volcanism: thermal and geochemical constraints. J. Geophys. Research, 97: 10967-10981

    [2]

    [2]Chen Shangda, Liu Cong, Chen Zhigui, Xu Dean. 1992. Geochemical characteristics and quantitative modelling of diagenetic process of Niangniangshan alkaline series. Acta Petrologica et Mineralogica. 11(4):306-316 (in Chinese with English abstract)

    [3]

    [3]Du Jianguo, Zhang Peng. 1999. Mesozoic volcanic rocks in northern part of Dabie orogenic belt. Geoscience - Journal of Graduate School, China University of Geosciences, 13(3): 57-65 (in Chinese with English abstract)

    [4]

    [4]Foley S F, Peccerillo A. 1992. Potassic and ultrapotassic magmas and its origin. Lithos, 28: 181-196

    [5]

    [5]Gao Daqi. 1992. The temporal and spatial distribution of the Mesozoic volcanics and the division of volcanic eruption cycles in the Mozitan-Xiaotian area, Anhui. Geology of Anhui, 2(3):20-27 (in Chinese with English abstract)

    [6]

    [6]Hart S R. 1984. A large scale isotope anomaly in the southern hemisphere mantle. Nature, 309:753-757

    [7]

    [7]Hofmann A W. 1988. Chemical differentiation of the earth: the relationship between mantle, continental crust, and oceanic crust. Earth Planet. Sci. Lett., 90:297-314

    [8]

    [8]Jahn B M, Wu F Y, Lo C H, Tsai C H. 1999. Crust-mantle interaction induced by deep subduction of the continental crust: geochemical and Sr-Nd isotopic evidence from post-collisional mafic-ultramafic intrusions of the northern Dabie complex, central China. Chem. Geol., 157(1-2):119-146

    [9]

    [9]Le Bas M J, Le Maitre R W, Streckeisen A, Zanettin B. 1986. A chemical classification of volcanic rocks based on the total alkali-silica diagram. J. Petrol., 27:745-750

    [10]

    [10]Leake B E. Wolley A R, Arps C E S, et al. 1997. Nomenclature of amphiboles:Report of the subcommittee on amphiboles of the International Mineralogical Association Commission on new minerals and mineral names. Mineralogical Magazine, 61:295-321

    [11]

    [11]Li S, Xiao Y, Liu D, Chen Y, Ge N, Zhang Z, Sun S S, Cong B, Zhang R, Hart S T, Wang S. 1993. Collision of the North China and Yangtze blocks and formation of coesite-bearing eclogites: timing and process. Chem. Geol., 109:89-111

    [12]

    [12]Li Shuguang, Nie Yonghong, Hart S R, Zhang Zongqing. 1998. Interaction between subducted continental crust and the mantle - Ⅱ. Sr, Nd isotope geochemistry of the syncollisonal mafic-ultramafic intrusions in the Dabie Mountains. Science in China (Series D), 28(1):18-22 (in Chinese)

    [13]

    [13]Li Xianhua, Zhou Hanwen, Liu Yin, Lee Chi-yu, Chen Zhenhong, Yu Jinsheng, Gui Xuntang. 2000. Mesozoic shoshonitic intrusives in the Yangchun basin, western Guangdong, and their tectonic significance: Ⅰ. Petrology and isotope geochronology. Geochimica, 29(6):513-520 (in Chinese with English abstract)

    [14]

    [14]Liu C Q, Masuda A, Xie G. 1994. Major- and trace element compositions of Cenozoic basalts in eastern China: petrogenesis and mantle source. Chem, Geol., 114: 19-42

    [15]

    [15]Ma C Q, Li Z C, Ehlers C, Yang K G, Wang R J. 1998. A post-collisional magmatic plumbing system: Mesozoic granitoid plutons from the Dabieshan high-pressure and ultrahigh-pressure metamorphic zone, east-central China. Lithos, 45:431-456

    [16]

    [16]Ma Changqian, Yang Kunguang, Xu Changhai, Li Zhichang, Carl Ehlers. 1999. Mesozoic potassic magmatism in the Dabie Mountains: implication for exhumation mechanism of ultrahigh-pressure metamorphic terranes. Acta Petrologica Sinica, 15(3): 379-395 (in Chinese with English abstract)

    [17]

    [17]Ma C Q, Ehlers C, Xu C H, Li Z C, Yang K G. 2000. The roots of the Dabieshan ultrahigh-pressure metamorphic terrane: constraints from geochemistry and Nd-Sr isotope systematics. Precambrian Research, 102:279-301

    [18]

    [18]Okay A I. 1993. Petrology of a diamond and coesite-bearing metamorphic terrain: Dabie Shan, China. Europe J. Mineral., 5:659-675

    [19]

    [19]Palacz Z A, Saunders A D. 1986. Coupled trace element and isotope enrichment in the Cook-Austral-Samoa island, southwest Pacific. Earth Planet. Sci. Lett., 79:270-280

    [20]

    [20]Pan Guoqiang, Wu Haiquan. 1993. Volcanism in the backland of the Dabieshan collision orogenic belt. In: Li Z and Wang B (eds.), Volcanic rocks, Volcanism and Related Mineral Resources. Beijng: Geology Press, 45-51 (in Chinese with English abstract)

    [21]

    [21]Pan Guoqiang, Zhao Lianze, Xia Mulin. 1997. Tectonic model of the Dabieshan collision orogen and its geological evolution. Regional Geology of China, 16(1):43-50 (in Chinese with English abstract)

    [22]

    [22]Pan Guoqiang, Lu Xiancai, Yu Hangbo. 2001. Petrological and geochemical characteristics of Mesozoic adakite from northern Huaiyang and discussion on its genesis. Acta Petrologica Sinica, 17(4):541-550 (in Chinese with English abstract)

    [23]

    [23]Peccerillo A, Taylor S R. 1976. Geochemistry of Eocene calc-alkaline volcanic rocks from the Kastamonu area, Northern Turkey. Contrib. Min. Petrol., 58:68-81

    [24]

    [24]Pe-Piper G. 1984. Zoned pyroxenes from shoshonite lavas of Lesbos, Greece: inferences concerning shoshonite petrogenesis. J. Petrol., 25: 453-472

    [25]

    [25]Poldervaart A, Hess H H. 1951. Pyroxene in the crystallization of basaltic magma. J. Geol., 59:472-489

    [26]

    [26]Qiu Jiansheng, Hua Renmin. 1996. The spatial and temporal distribution of Mesozoic volcanic rocks in East China. In: Wang D and Ren Q (eds.), The Mesozoic Volcanic-Intrusive Complexes and Their Metallogenic Relations in East China, Beijing: Science Press, 6-14

    [27]

    [27]Qiu Jiansheng, Wang Dezi, Zhou Jincheng, Zeng Jiahu. 1996. Geology, geochemistry and genesis of the Mesozoic shoshonitic volcanic rocks in Shandong province. Earth Science - Journal of China University of Geosciences, 21(5): 546-552 (in Chinese with English abstract)

    [28]

    [28]Qiu Jiansheng, Wang Dezi. 1999. Geochemistry of pyroxene-monzonite at Qibaoshan caldera in Wulian county, Shandong province and the nature of its magma source. Geological Review, 45(supplement): 546-552 (in Chinese with English abstract)

    [29]

    [29]Schmidt M W. 1992. Amphibole composition in tonalite as a function of pressure: an experimental calibration of the Al-in-hornblende barometer. Contrib. Min. Petrol., 110:304-310

    [30]

    [30]Tang Yongcheng, Wu Yanchang, Chu Guozheng, Xing Fengming, Wang Yongmin, Cao Fenyang, Chang Yinfo. 1998. Geology of copper-gold polymetallic deposits in the along-Changjiang area of Anhui province. Beijing: Geology Press, 651p (in Chinese with English abstract)

    [31]

    [31]Taylor S R, McLennan S M. 1985. The continental crust: Its composition and evolution. Blackwell, 312p

    [32]

    [32]Wang Chunyong, Zhang Xiankang, Chen Buyun, Chen Xuebo, Song Songyan, Zheng Jinhan, Hu Hongxiang, Lou Hai. 1997. Study on the crustal structure of the Dabieshan orogenic belt in China. Science in China (Series D), 27(3):221-226 (in Chinese)

    [33]

    [33]Wang Qingchen, Cong Bolin. 1998. Tectonic framework of the ultrahigh-pressure metamorphic zone from the Dabie Mountains. Acta Petrologica Sinica, 14(4):481-492 (in Chinese with English abstract)

    [34]

    [34]Weaver B L, Wood D A, Tarney J, Joron J L. 1986. Role of subducted sediment in the genesis of ocean island basalts: geochemical evidence from south Atlantic ocean islands. Geology, 14:275-278

    [35]

    [35]Xie Fanggui, Yang Zhuliang, Sheng Jialin, Tao Kuiyuan. 2000. The geochemical feature of Mesozoic volcanic-intrusive complex in northern Dabieshan. Volcanology and Mineral Resources, 21(3): 179-188 (in Chinese with English abstract)

    [36]

    [36]Xu S, Okay A L, Ji S, Sengor A M C, Su W, Liu Y and Jiang L. 1992. Diamond from the Dabie Shan metamorphic rocks and its implication for tectonic setting. Science, 256:80-82

    [37]

    [37]Xu Shutong, Liu Yican, Jiang Laili, Su Wen, Ji Shouyuan. 1994. Tectonic framework of the Dabie Mountain and its evolution. Beijing: Science Press, 175p (in Chinese)

    [38]

    [38]Yang Rongyong, Ren Qijiang, Xu Zhaowen, Sun Yedong, Guo Guozhang, Qiu Jiansheng. 1993. The magma source of Baijiatan volcanic-intrusive complex in the Lujiang-Zongyang area, Anhui Province. Geochimica, (2):197-206 (in Chinese with English abstract)

    [39]

    [39]Yang Zhuliang, Shen Jialin, Shen Weizhou, Tao Kuiyuan, Xie Fanggui. 1999. Isotopic chronology of Mesozoic volcanic-intrusive rocks in Beihuaiyang. Geological Review, 45(supplement.):674-680 (in Chinese with English abstract)

    [40]

    [40]Yin Jun, Zhou Guoqing. 1994. The ratios of Fe3+ to Fe2+ in amphiboles. J. Nanjing Uni. (Earth Sciences), 6(2): 176-183 (in Chinese with English abstract)

    [41]

    [41]You Zhengdong, Han Yujing, Yang Weiran, Zhang Zeming. 1996. The high-pressure and ultrahigh pressure metamorphic belt in the East Qinling and Dabie Mountains, China. Wuhan: China University of Geosciences Press, 150p (in Chinese with English abstract)

    [42]

    [42]Zhou G, Liu Y J, Eide E A. 1993. High-pressure/low-temperature metamorphism in northern Hubei Province, central China. J. Metamorphic Geol., 11:561-574

    [43]

    [43]Zhou J C, Zhao T P, Chen K R. 1994. Mesozoic shoshonite series from Lishui in the Lower Yangtze region, China. Journal of southeast Asia Earth Sciences, 10: 263-277

    [44]

    [44]Zhou Taixi, Chen Jiangfeng, Peng Zicheng, Li Xueming. 1992. The age of the Mesozoic acidic and intermediate volcanic rocks from Anhui Province. Collection of Mineralogy and Petrology, (8):58-64 (in Chinese)

    [45]

    [45]陈上达, 刘聪, 陈志贵, 徐德安. 1992. 娘娘山碱性火山-侵入岩特征及成岩定量模拟. 岩石矿物学杂志, 11(4):306-316

    [46]

    [46]杜建国,张鹏. 1999. 大别造山带北部的中生代火山岩. 现代地质,13(1):57-65

    [47]

    [47]高大旗. 1992. 安徽磨子潭-晓天地区中生代火山岩的时空分布及火山喷发旋回. 安徽地质, 2(3):20-27

    [48]

    [48]李曙光, 聂永红, Hart S R, 张宗清. 1998. 俯冲陆壳与上地幔的相互作用-Ⅱ. 大别山同碰撞镁铁-超镁铁岩的Sr、Nd同位素地球化学. 中国科学(D辑),28(1):18-22

    [49]

    [49]李献华,周汉文,刘颖,李寄山禺, 陈正宏,于津生,桂训唐. 2000. 粤西阳春中生代钾玄质侵入岩及其构造意义:Ⅰ. 岩石学和同位素地质年代学. 地球化学,29(6):513-520

    [50]

    [50]马昌前, 杨坤光, 许长海, 李志昌, Carl Ehlers. 1999. 大别山中生代钾质岩浆作用与超高压变质地体的剥露机理. 岩石学报,15(3):379-395

    [51]

    [51]潘国强, 吴海权. 1993. 大别山碰撞造山带后缘的火山作用. 见:李兆鼐, 王碧香主编. 火山岩、火山作用及有关矿产. 北京:地质出版社, 45-51

    [52]

    [52]潘国强, 赵连泽, 夏木林. 1997. 大别山碰撞造山带的构造模型及其地质演化. 中国区域地质,16(1):43-50

    [53]

    [53]潘国强, 陆现彩, 于航波. 北淮阳中生代adakite岩石地球化学特征及成因讨论. 岩石学报, 17(4):541-550

    [54]

    [54]邱检生,王德滋,周金城,曾家湖. 1996. 山东中生代橄榄安粗岩系火山岩的地质、地球化学特征及岩石成因. 地球科学,21(5):546-552

    [55]

    [55]邱检生, 王德滋. 1999. 山东五莲七宝山辉石二长岩的地球化学及岩浆源区性质. 地质论评, 45(增刊),612-617

    [56]

    [56]唐永成, 吴言昌, 储国正, 邢凤鸣, 王永敏, 曹奋扬, 常印佛. 1998. 安徽沿江地区铜金多金属矿床地质. 北京: 地质出版社, 349p

    [57]

    [57]王椿镛, 张先康, 陈步云, 陈学波, 宋松岩, 郑金涵, 胡鸿翔, 楼海. 1997. 大别造山带的地壳结构. 中国科学(D辑), 27(3):221-226

    [58]

    [58]王清晨, 从柏林. 1998. 大别山超高压变质带的大地构造框架. 岩石学报, 14(4):481-492

    [59]

    [59]谢芳贵, 杨祝良,沈加林,陶奎元. 2000. 大别山北缘中生代火山侵入杂岩地球化学特征. 火山地质与矿产, 21(3): 179-188

    [60]

    [60]徐树桐, 刘贻灿, 江来利, 苏文, 季寿元. 1994. 大别山的构造格局和演化. 北京:科学出版社, 175p

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修回日期:  2001-08-01
刊出日期:  2002-08-31

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