江西宁冈岩体的形成时代、地球化学特征及其构造意义

沈渭洲, 张芳荣, 舒良树, 王丽娟, 向磊. 江西宁冈岩体的形成时代、地球化学特征及其构造意义[J]. 岩石学报, 2008, 24(10): 2244-2254.
引用本文: 沈渭洲, 张芳荣, 舒良树, 王丽娟, 向磊. 江西宁冈岩体的形成时代、地球化学特征及其构造意义[J]. 岩石学报, 2008, 24(10): 2244-2254.
SHEN WeiZhou, ZHANG FangRong, SHU LiangShu, WANG LiJuan, XIANG Lei. Formation age, geochemical characteristics of the Ninggang granite body in Jiangxi Province and its tectonic significance[J]. Acta Petrologica Sinica, 2008, 24(10): 2244-2254.
Citation: SHEN WeiZhou, ZHANG FangRong, SHU LiangShu, WANG LiJuan, XIANG Lei. Formation age, geochemical characteristics of the Ninggang granite body in Jiangxi Province and its tectonic significance[J]. Acta Petrologica Sinica, 2008, 24(10): 2244-2254.

江西宁冈岩体的形成时代、地球化学特征及其构造意义

  • 基金项目:

    国家自然科学基金重点项目(编号: 40634022)、面上基金项目(编号: 40572118)和教育部博士点基金项目(编号: 20060284008)研究成果.

Formation age, geochemical characteristics of the Ninggang granite body in Jiangxi Province and its tectonic significance

  • 宁岗岩体是湘赣交界部位呈南北向展布的加里东花岗岩带的重要组成部分,它主要由二长花岗岩组成。锆石LA-ICPMS U-Pb年龄为433.8±2.2Ma,属于加里东期岩浆活动产物。虽然宁冈岩体的SiO2含量变化明显(67.46%~74.85%),但它们的ACNK值都大于1.1,钾大于钠(K2O/Na2O=1.36~2.37),CaO/Na2O比值大于0.3,富集Rb、Th、Cs,亏损Nb、Ta、Ba、Sr,LREE富集 (LREE/HREE=5.8~12.2)和Eu亏损相对明显(δEu=0.28~0.61)。同时,它们还具有较低的εNd(t)值(-9.3~-8.6)、较高的(87Sr/86Sr)i值(0.71172~0.71937)和古老的Nd模式年龄(1838~1909Ma)。这些特征表明,宁冈岩体属于典型的壳源型花岗岩,很可能是在华夏古陆残块与扬子地块之间发生陆-陆碰撞拼贴而引发的地壳伸展-减薄的构造背景下, 通过砂质岩石部分熔融的方式形成。
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  • [1]

    Andersen T. 2002. Correction of common Pb in U-Pb analyses that do not report ^204pb. Chem. Geol. , 192:59 -79

    [2]

    Bai DY, Zhou L, Wang XH, et al. 2007. Geochemistry of Nanhuan-Cambrian sandstones in southeastern Hunan and its constraints on Neoproterozoic-Early Paleozoic tectonic setting of South China. Acta Geologica Sinica, 81 ( 6 ) : 755 - 771

    [3]

    Black LP and Gulson BL. 1978. The age of the Mud Tank earbonatite, Strangways Range, Northern Territory. BMR J. Aust. Geol. Geophys. , 3: 227- 232

    [4]

    Boynton Wv. 1984. Geochemistry of the rare earth elements: Meteorite studies. In: Henderson P(ed. ). Rare Earth Element Geochemistry. Amsterdami Elservier, 63 - 114

    [5]

    Chen DG, Li BX, Xia QK, et al. 2001. An evalution of zircon U-Pb dating for metamorphic rocks and comments on zircon ages of Dabie orogen. Acta Petrologica Sinica, 17 (1) : 129 - 138

    [6]

    Chen JF and Jahn BM. 1999. Nd, Sr, Pb isotope tracer and continental crust evolution in SE China. In: Zheng YF ( ed. ). Chemical Geodynamics. Beijing: Science Press, 262 - 287

    [7]

    Chen XM, Wang RC, Liu CS, et al. 2002. Isotopic dating and genesis for Fogang biotite granites of Conghua area, Guangdong Province. Geol. J. China Uni. , 8 (3) : 293 - 307

    [8]

    Gao S, Luo TC, Zhang BR,et al. 1999. Stracture and composition of the continental crust in East China. Science in China ( Series D), 29 (3): 204 -213

    [9]

    Griffin WL, Belousova EA, Shee SR, et al. 2004. Archean crustal evolution in the northern Yilgaru Craton: U-Pb and Hf-isotope evidence from detrital zircons. Precamb. Res. , 131 : 231 -282.

    [10]

    Harris NBW and Inger S. 1992. Trace element modeling of pelite-derived granite. Contrib. Mineral. Petrol., 110:46-56

    [11]

    Hou ZQ, Lu JR and Lin SZ. 2005. The Axial Zone consisting of pyrolite and eclogite in the Emei Mantle Plume: Major, trace element and Sr- Nd-Pb isotope evidence. Acta Genlogica Sinica, 79(2) : 200 -219

    [12]

    Jackson SE, Pearson NJ, Griffin WL, et al. 2004. The application of laser ablation microprobe-inductively coupled plasma-mass spectrometry (LAM-ICP-MS) to in situ U-Pb zircon geochronology. Chem. Geol. , 211:47-69

    [13]

    Jia CZ, Shi YS and Guo LZ. 1988. The Plate Tectonics of the Eastern Qinling Region. Nanjing: Nanjing University Publishing House, 1 - 130

    [14]

    Jiangxi Bureau of Geology and Mineral Resources. 1984. Regional Geology of Jiangxi Province. Beijing: Geological Publishing House

    [15]

    Le Maitre RW, Bateman P, Dudek A, et al. 1989. A Classification of igneous rocks and glossary of terms. Oxford : Blackwell

    [16]

    Li JL. 1993. The Continental Lithospheric Structure and Geological Evolution of the Southeast China. Beijing: Metallurgy Industry Publishing, 1 - 264

    [17]

    Li XH. 1990. The age of magmatic activity and crustal movement for the Wanyangshan-Zhuguangshan complex granite batholith. Science in China(Series B), (7): 747 -755

    [18]

    Li XH. 1993. On the genesis of Caledonian granitoid rocks at Wanyangshan and Zhuguangshan, southeast China: Evidence from trace elements and rare-elements geochemistry. Geochimica, ( 1 ) : 35 -43

    [19]

    Li XH and Gui ST. 1991. Provenances for the Caledonian granitoids from Wanyangshan and Zhuguangshan, southeastern China-Ⅰ: Evidences from Sr-Nd-Pb-O isotopic systematics. Science in China( Series B), 21(5) : 533 -540

    [20]

    Li XH, Zhu BQ and Gui ST. 1992. Provenances for the Caledonian granitoids from Wanyangshan and Zhuguangshan, southeastern China-Ⅱ: Multi-dimensional space topologic analyses of the isotopes. Science in China (Series B), 22 (8) : 855 -859

    [21]

    Li XH, Liu Y, Tu XL,et al. 1996. Multiple stage evolution of zircon U- Pb isotopic systematics in S-type granites and its chronogical significance: A case study on Sanfang granite, Northern Guangxi. Acta Mineralogica Sinica, 16 ( 2 ) : 170 - 177

    [22]

    Li XH, -Liu Y, Tu XL, et al. 2002. Precise determineation of chemical compositions in rock samples using ICP-AES and ICP-MS: A comparative study of sample digestion techniques of alkali fusion and acid dissolution. Geochimica, 31 : 289 - 294

    [23]

    Li XH, Li ZX, Ge W, et al. 2003. Neoproterozoic granitoids in South China: Crustal melting above a mantle plume at ac. 825Ma? Preeam. Res. , 122 : 45 - 83

    [24]

    Li ZX, Li XH, Zhou H,et al. 2002. Grenvillian continental collision in South China: New SHRIMP U-Pb zircon results and implications for the configuration of Rodinia. Geology, 30 : 163 - 166

    [25]

    Li ZX, Li XH, Kinny PD,et al. 2003. Geochronology of Neoproterozoic syn-rift magmatism in the Yangtze Craton, South China and correlations with other continents: Evidence for a mantle superplume that broke up Rodinia. Precamb. Res. , 122 : 85 - 109

    [26]

    Li WX, Li XH and Li ZX. 2005. Neoproterozoic bimodal magmatism in the Cathaysia Block of South China and its tectonic significance. Precamb. Res. , 136:51 -66

    [27]

    Liegeios JP, Navez J, Hertogen J,et al. 1998. Contrasting origin of postcollisional high-K calc-alkaline and shoshonitic versus alkaline and peralkaline granitoids. The use of sliding normalization. Lithos, 45 : 1 -28

    [28]

    Ling HF, Shen WZ, Wang RC,et al. 2001. Geochemical characteristics and genesis of Neopmterozoic granitoids in the Northwestern margin of the Yangtze Block. Phys. Chem. Earth, 26:805-819

    [29]

    Mezger K and Krogstad EJ. 1997. Interpretation of discordant U-Pb zircon ages: An evaluation. J. Metamorphic Geol., 15:127-140

    [30]

    Pearce JA. 1996. Sources and setting of granitic rocks. Episodes, 19 (4) : 120 - 125

    [31]

    Qiu YX, Ma WP, Fan XL, et al. 1996. Tectonic nature and tectonic evolution of the " Xuefeng Old Land" in the Caledonian stage. Regional Geology of China, ( 2 ) : 150 - 160

    [32]

    Qiu YX and Ma WP. 1998. Tectonic characteristics and evolution of the Xuefengshan intracontinental orogenic zone. Geological Journal of China Universitie, 4 (4): 432 -443

    [33]

    Rao JR, Wang JH and Cao YZ. 1993. Deep stracture in Hunan. Hunan Geology, 7 (Suppl.) : 1 -101

    [34]

    Rickwood PC. 1989. Boundary lines within petrologic diagrams which use oxides of major and minor elements. Lithos. 22 : 247 - 263

    [35]

    Shen WZ, Zhu JC, Liu CS, et al. 1993. Sm-Nd isotopic study of basement metamorphic rocks in South China and its constraint on material sources of granitoids. Acta Petrologica Sinica, 9 (2) : 115 - 124

    [36]

    Shu LS. 2006. Predevonian tectonic evolution of South China: From Cathaysian Block to Caledonian period folded orogenic belt. Geological Journal of China Universitie, 12 ( 4 ) : 418 - 431

    [37]

    Shu LS, Faure M, Jiaag SY, et al. 2006. SHRIMP zircon U-Pb age, litho-and biostratigraphic analyses of the Huaiyu Domain in South China: Evidence for a Neoproterozoic orogen, not Late Paleozoic- Early Mesozoic collision. Episodes, 29(4) : 244 -252

    [38]

    Shu LS, Faure M, Wang B, et al. 2008. Late Paleozoic-Early Mesozoic Geological Features of South China: Response to the Indosinian Collision Event in Southeast Asia, Comptes rendus Geoscience Acad mie des sciences, doi : 10. 1016/j, crte. 2007.10. 010

    [39]

    Shu LS, Zhou XM, Yu JH, et al. 2008. Study of the South China Early Paleozoic orogenic belt. Geological Bulletin of China

    [40]

    Streckeisen A. 1973. Classification and nomenclature of plutonic rocks. N. Jb. Mineral. Monat. Jg. ,149-164

    [41]

    Sun MZ and Xu KQ. 1990. The Caledonian granites in South China and preliminary analysis on their geological setting. J. Nanj. Uni. ( Earth Sciences), (4) : 10 -22

    [42]

    Sun SS and McDonough WF. 1989. Chemical and isotopic systematics of oceanic basalts : Implication for mantle composition and process. In: Saunders AD and Norry MJ(eds). Magmatism in the Oceans Basin. Geol. Soc. London. Special Publication, 313-345

    [43]

    Sun T, Zhou XM, Chen PR, et al. 2003. Strongly peraluminous granites of Mesozoic in Eastern Nanling Region, Southern China and implications for tectonics. Science in China (Series D), 33 (12): 1209 - 1218

    [44]

    Sylvester PJ. 1998. Post-collisional peraluminous granites. Lithos, 45:29 -44

    [45]

    Taylor SR and McLennan SM. 1985. The continental crust: Its composition and evolution. Oxford: Blackwell

    [46]

    Turner S, Sandiford M and Foden J. 1992. Some geodynamic and compositional constraints on " postorogenic" magmatism. Geology, 20:931 -934

    [47]

    Wang J, Liu BJ and Pan GT. 2001. Neoproterozoic rifling history of south China significance to Rodinia Breakup. Contrib. Mineral. Petrol. , 21 (3) : 135 -145

    [48]

    Xu DR, Chen GH, Xia B, et al. 2006. The Caledonian adakite-like granodiorites in Banshanpu area, eastern Hunan Province, South China: Petrogenesis and geological significance. Geological Journal of China Universitie, 12 (4) : 507 - 521

    [49]

    Xu KQ, Sun N, Wang DZ, et al. 1984. Petrogenesis of the grantoid and their metallogenetic relations in South China. In: Xu KQ and Tu GC (eds.). Geology of Granites and Their Metallogenetic Relations. Beijing: Science Press, 1 - 33

    [50]

    Yuan HL, Wu FY, Gao S, et al. 2003. Determination of U-Pb age and rare earth element concentrations of zircons from Cenozoic intrusions in northeastern China by Iaser ablation ICP-MS. Chinese Science Bulletin, 48(22) : 2411 -2421

    [51]

    Zeng Y and Yang MG. 1999. Central Jiangxi collision melange zone. Regional Geology of China, 18 ( 1 ) : 17 - 22

    [52]

    Zhang YZ, Lu SW and Deng BR. 2005. On the rock hierarchical units characteristics and the emplacement mechanism of Silurian granite in the boundary between Hunan and Jiangxi. Resources Survey and Environment, 26( 1 ) : 12 -17

    [53]

    Zhou HW, Li XH, Wang HR, et al. 2002. Zircon U-Pb age of Yinyangguang Group basic volcanics from Guangxi and its geological significance. Geological Review, 48 ( Supp. ) : 22 - 25

    [54]

    Zhou JC and Xu XS. 2002. Microgranitoid enclaves and related diffusion and liquid immiscibility of magmas : Evidence from the Guidong and Shangbao Plutons. Geological Review, 38 ( 3 ) : 197 - 208

    [55]

    Zhou XM. 2003. My thinking about granite genesis of South China. Geol. J China Uni. , 9 ( 4 ) : 556 - 565

    [56]

    沈渭洲等.江西井冈山地区早古生代沉积岩的地球化学特征及其对沉积环境的制约(待刊)[Z].,.

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出版历程
收稿日期:  2008-04-16
修回日期:  2008-07-28
刊出日期:  2008-10-31

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