Gordeychik Boris, Churikova Tatiana, Kronz Andreas, Sundermeyer Caren, Simakin Alexander, Wörner Gerhard
Institute of Experimental Mineralogy, Russian Academy of Sciences, Chernogolovka, 142432, Russia.
Geowissenschaftliches Zentrum Göttingen, Abteilung Geochemie, Universität Göttingen, Göttingen, 37077, Germany.
Sci Rep. 2018 Aug 6;8(1):11775. doi: 10.1038/s41598-018-30133-1.
Complex core-rim zoning of Mg-Fe-Ni-Ca-Cr-Al-P in high-Mg olivine crystals from a tuff ring of Shiveluch volcano, Kamchatka, enables reconstruction of the entire olivine crystallization history from mantle conditions to eruption. Bell-shaped Fo and Ni profiles in crystal cores were formed by diffusion after mixing with evolved magma. Diffusion proceeded to the centres of crystals and completely equilibrated Fo and Ni in some crystals. Diffusion times extracted from Fo and Ni core profiles range from 100 to 2000 days. During subsequent mixing with mafic mantle-equilibrated melt, the cores were partially dissolved and overgrown by Fo olivine. Times extracted from Fo and Ni diffusion profiles across the resorption interface between the core and its overgrowth range within 1-10 days, which corresponds to the time of magma ascent to the surface. The overgrowth shows identical smooth Fo-Ni decreasing zoning patterns for all crystals towards the margin, indicating that all crystals shared the same growth history after last mixing event prior to eruption. At the same time, Ca, and to an even greater extent Cr, Al, and P have oscillatory growth patterns in the crystals overgrowth. Our data show that magma ascent can be extremely short during maar/tuff ring eruption.
堪察加半岛希韦卢奇火山凝灰岩环中高镁橄榄石晶体中Mg-Fe-Ni-Ca-Cr-Al-P的复杂核-边分区,使得能够重建橄榄石从地幔条件到喷发的整个结晶历史。晶体核心中呈钟形的Fo和Ni分布是与演化岩浆混合后通过扩散形成的。扩散向晶体中心进行,在一些晶体中使Fo和Ni完全达到平衡。从Fo和Ni核心分布中提取的扩散时间范围为100至2000天。在随后与镁铁质地幔平衡熔体混合过程中,核心部分溶解并被Fo橄榄石覆盖生长。从核心与其覆盖生长部分之间的再吸收界面上的Fo和Ni扩散分布中提取的时间在1 - 10天内,这对应于岩浆上升到地表的时间。覆盖生长部分在所有晶体中朝着边缘呈现相同的平滑Fo-Ni递减分区模式,表明所有晶体在喷发前的最后一次混合事件之后具有相同的生长历史。与此同时,Ca以及在更大程度上的Cr、Al和P在晶体覆盖生长部分具有振荡生长模式。我们的数据表明,在 maar/凝灰岩环喷发期间,岩浆上升可能极其短暂。