首页> 外文期刊>Russian Geology and Geophysics >Origin and evolution of Neogene alkali-basaltic magmas in the southwestern flank of the Baikal rift system (Heven lava plateau, northern Mongolia)
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Origin and evolution of Neogene alkali-basaltic magmas in the southwestern flank of the Baikal rift system (Heven lava plateau, northern Mongolia)

机译:贝加尔湖裂谷系西南侧面(蒙古北部七面熔岩高原)新近纪碱玄武岩浆的起源与演化

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The Heven lava plateau in the H?vsg?l field of the South-Baikal igneous province formed in the Early–Middle Miocene between 20 and 15.5 Ma. It consists of Early Miocene hawaiites and trachybasalts and Middle Miocene basanites erupted, correspondingly, during two major events in its history. The Heven alkali-basaltic lavas are compositionally similar to their counterparts from other volcanic fields in the southern flank of the Baikal rift system and are richer in Ba, K, Pb, and Sr than oceanic island basalts (OIB). The basanitic, hawaiitic, and trachybasaltic magmas were generated at pressures from 25 to 15 kbar and at temperatures in the range from 1434 to 1358 oC. The magma sources occurred at 74 to 41 km in asthenospheric and lithospheric mantle and were ~200 oC hotter than the ambient lithospheric mantle in the surrounding areas and the continental geotherm. The crystallization history of dark-colored began with liquidus highly magnesian olivine and Cr-spinel, and then several other parageneses formed successively as pressures and temperatures decreased: Ol + Cpx and Ol + Cpx + TiMgt ± Pl phenocrysts and subphenocrysts, Cpx + TiMgt + Ilm + Pl microphenocrysts, and finally interstitial Ne + Kfs alkali aluminosilicates. There were two crystallization stages with different mineral chemistry trends. The chemistry of minerals changed as the rising magmas first reached the crust–mantle region and then moved to shallow depths, erupted, and solidified. The generation of the Heven hawaiite–trachybasalt and basanite magmas was controlled by the depth of the reservoirs and the melt fraction in garnet-bearing asthenospheric and lithospheric mantle associated with progressive and regressive dynamics of the lower heterogeneous mantle plume consisting of PREMA and EMI components.
机译:南贝加尔湖火成岩省H?vsg?l油田的Heven熔岩高原形成于中新世中期20至15.5 Ma之间。它由中新世早期的夏威夷岩和曲折玄武岩组成,中新世中的玄武岩在其历史上的两次重大事件中也相应爆发。赫文碱玄武岩熔岩的成分与贝加尔湖裂谷系统南翼其他火山岩的熔岩成分相似,并且比海洋岛玄武岩(OIB)富含Ba,K,Pb和Sr。在25至15 kbar的压力和1434至1358 oC的温度范围内,产生了玄武质,夏威夷质和海基玄武岩浆。岩浆源发生在软流圈和岩石圈地幔的74至41 km,比周围地区和大陆地热的周围岩石圈地幔高约200 oC。深色的结晶历史始于液相线的高镁橄榄石橄榄石和Cr-尖晶石,然后随着压力和温度的降低依次形成了其他几个同生型:Ol + Cpx和Ol + Cpx + TiMgt±Pl隐晶和亚隐晶,Cpx + TiMgt + Ilm + Pl微细晶,最后填入Ne + Kfs碱性铝硅酸盐。有两个不同的矿物化学趋势的结晶阶段。随着上升的岩浆首先到达地幔幔区域,然后移至较浅的深度,爆发并固化,矿物的化学发生了变化。 Heven夏威夷岩-玄武岩和玄武岩岩浆的形成受储层的深度和带石榴石的软流圈和岩石圈地幔中熔体分数的控制,并伴随着由PREMA和EMI成分组成的下部非均质地幔柱的渐进和回归动力学。

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