期刊文献+

Triggers and sources of volatile-bearing plumes in the mantle transition zone 被引量:4

Triggers and sources of volatile-bearing plumes in the mantle transition zone
下载PDF
导出
摘要 The paper discusses generation of volatile-bearing plumes in the mantle transition zone(MTZ) in terms of mineral-fluid petrology and their related formation of numerous localities of intra-plate bimodal volcanic series in Central and East Asia.The plume generation in the MTZ can be triggered by the tectonic erosion of continental crust at Pacific-type convergent margins and by the presence of water and carbon dioxide in the mantle.Most probable sources of volatiles are the hyclrated/carbonated sediments and basalts and serpentinite of oceanic slabs,which can be subducted down to the deep mantle.Tectonic erosion of continental crust supplies crustal material enriched in uranium and thorium into the mantle,which can serve source of heat in the MTZ.The heating in the MTZ induces melting of subducted slabs and continental crust and mantle upwelling,to produce OIB-type mafic and felsic melts,respectively. The paper discusses generation of volatile-bearing plumes in the mantle transition zone(MTZ) in terms of mineral-fluid petrology and their related formation of numerous localities of intra-plate bimodal volcanic series in Central and East Asia.The plume generation in the MTZ can be triggered by the tectonic erosion of continental crust at Pacific-type convergent margins and by the presence of water and carbon dioxide in the mantle.Most probable sources of volatiles are the hyclrated/carbonated sediments and basalts and serpentinite of oceanic slabs,which can be subducted down to the deep mantle.Tectonic erosion of continental crust supplies crustal material enriched in uranium and thorium into the mantle,which can serve source of heat in the MTZ.The heating in the MTZ induces melting of subducted slabs and continental crust and mantle upwelling,to produce OIB-type mafic and felsic melts,respectively.
出处 《Geoscience Frontiers》 SCIE CAS CSCD 2015年第5期679-685,共7页 地学前缘(英文版)
基金 supported by the Ministry of Education and Science of the Russian Federation(project No.14.B25.31.0032) Scientific Project of the Institute of Geology and Mineralogy SB RAS,Grant-in-Aid for Scientific Research No.23224012 Global COE program"From the Earth to"Earths"(SM),and JSPS Grant-in-Aid No.14526(IS)
关键词 Asis Pacific-type convergent margin Continental cr Asis Pacific-type convergent margin Continental cr
  • 相关文献

参考文献20

  • 1I. Safonova,S. Kojima,S. Nakae,R.L. Romer,R. Seltmann,H. Sano,T. Onoue.Oceanic island basalts in accretionary complexes of SW Japan: Tectonic and petrogenetic implications[J]. Journal of Asian Earth Sciences . 2014
  • 2Inna Safonova,Shigenori Maruyama.Asia: a frontier for a future supercontinent Amasia[J]. International Geology Review . 2014 (9)
  • 3D.A. Zedgenizov,H. Kagi,V.S. Shatsky,A.L. Ragozin.Local variations of carbon isotope composition in diamonds from S?o-Luis (Brazil): Evidence for heterogenous carbon reservoir in sublithospheric mantle[J]. Chemical Geology . 2014
  • 4Sujoy Ghosh,Konstantin Litasov,Eiji Ohtani.Phase relations and melting of carbonated peridotite between 10 and 20 GPa: a proxy for alkali- and CO 2 -rich silicate melts in the deep mantle[J]. Contributions to Mineralogy and Petrology . 2014 (2)
  • 5Alexei V. Ivanov,Konstantin D. Litasov.The deep water cycle and flood basalt volcanism[J]. International Geology Review . 2014 (1)
  • 6Anton Shatskiy,Konstantin D. Litasov,Yuriy M. Borzdov,Tomoo Katsura,Daisuke Yamazaki,Eiji Ohtani.Silicate diffusion in alkali-carbonatite and hydrous melts at 16.5 and 24<ce:hsp sp="0.25"/>GPa: Implication for the melt transport by dissolution–precipitation in the transition zone and uppermost lower mantle[J]. Physics of the Earth and Planetary Interiors . 2013
  • 7Yu. S. Biske,D. L. Konopelko,R. Seltmann.Geodynamics of late Paleozoic magmatism in the Tien Shan and its framework[J]. Geotectonics . 2013 (4)
  • 8S. Maruyama,Y. Sawaki,T. Ebisuzaki,M. Ikoma,S. Omori,T. Komabayashi.Initiation of leaking Earth: An ultimate trigger of the Cambrian explosion[J]. Gondwana Research . 2013
  • 9Kenji Kawai,Shinji Yamamoto,Taku Tsuchiya,Shigenori Maruyama.The second continent:Existence of granitic continental materials around the bottom of the mantle transition zone[J].Geoscience Frontiers,2013,4(1):1-6. 被引量:5
  • 10S. Maruyama,M. Ikoma,H. Genda,K. Hirose,T. Yokoyama,M. Santosh.The naked planet Earth: Most essential pre-requisite for the origin and evolution of life[J]. Geoscience Frontiers . 2012

二级参考文献49

  • 1Anderson, D.L., Bass, J.D., 1986, Transition region of the Earth's upper mantle. Nature 320, 321-328.
  • 2Armstrong, R.L., Harmon, R.S., 1981. Radiogenic isotopes: the case for crustal recy- cling on a near-steady-state no-continental-growth Earth [and discussion]. Philosophical Transactions of the Royal Society of London, Series A 301, 443-472.
  • 3Belousova, E.A., Kostitsyn, Y.A., Griffin, W.L., Begg, G.C., O'Reilly, S.Y., Pearson, N.J., 2010. The growth of the continental crust: constraints from zircon Hfisotope data. Lithos 119, 457-466.
  • 4Birch, A.E, LeComte, P., 1960. Temperature-pressure plane for albite composition. American Journal of Science 258, 209 -217.
  • 5Brown, J.M., Shankland, T.J., 1981. Thermodynamic parameters in the Earth as determined from seismic profiles. Geophysical Journal of the Royal Astronom- ical Society 66, 579-596.
  • 6Cammarano, F., Romanowicz, B., Stixrude, L., Lithgow-Bertelloni, C., Xu, W., 2009. Inferring the thermochemical structure of the upper mantle from seismic data. Geophysical Journal International 179, 1169-1185.
  • 7Chopin,'C.,'2OO3.Ultrahigh-pressure metamorphism: tracing continental crust into the mantle. Earth and Planetary Science Letters 212, 1-14.
  • 8Cliff, P.D., Vannucchi, P., Morgan, J.P., 2009. Crustal redistribution, crust-mantle recycling and Phanerozoic evolution of the continental crust. Earth-Science Reviews 97, 80-104.
  • 9da Silva, C., Stixrude, L., Wentzcovitch, R.M., 1997. Elastic constants and anlsotropy of forsterite at high pressure. Geophysical Research Letters 24, 1963-1966.
  • 10Deuss, A., Woodhouse, J., 2001. Seismic observations of splitting of the mid- transition zone discontinuity in Earth's mantle. Science 294, 354-357.

共引文献6

同被引文献9

引证文献4

二级引证文献15

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部