Abrupt transition from fractional crystallization to magma mixing at Gorely volcano (Kamchatka) after caldera collapse

被引:39
作者
Gavrilenko, Maxim [1 ,2 ]
Ozerov, Alexey [2 ]
Kyle, Philip R. [3 ]
Carr, Michael J. [1 ]
Nikulin, Alex [4 ]
Vidito, Christopher [1 ]
Danyushevsky, Leonid [5 ]
机构
[1] Rutgers State Univ, Dept Earth & Planetary Sci, 610 Taylor Rd, Piscataway, NJ 08854 USA
[2] Inst Volcanol & Seismol, KamchatskyPiip Blvd,9, Petropavlovsk 683006, Russia
[3] New Mexico Inst Min & Technol, Dept Earth & Environm Sci, Socorro, NM 87801 USA
[4] SUNY Binghamton, Dept Geol Sci & Environm Studies, 4400 Vestal Pkwy East, Binghamton, NY 13902 USA
[5] Univ Tasmania, CODES & Earth Sci, Hobart, Tas 7001, Australia
关键词
Magma mixing; Fractional crystallization; Magma plumbing system reorganization; Caldera; Gorely volcano; Kamchatka; Volcanomorphology; MOUNT-ST-HELENS; ENERGY-CONSTRAINED ASSIMILATION; SUBDUCTION-ZONE MAGMAS; HIGH-ALUMINA BASALTS; TRACE-ELEMENT; EXPERIMENTAL CALIBRATION; QUANTITATIVE-ANALYSIS; KLYUCHEVSKOY VOLCANO; GEOLOGICAL-MATERIALS; BEZYMIANNY VOLCANO;
D O I
10.1007/s00445-016-1038-z
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
A series of large caldera-forming eruptions (36138 ka) transformed Gorely volcano, southern Kamchatka Peninsula, from a shield-type system dominated by fractional crystallization processes to a composite volcanic center, exhibiting geochemical evidence of magma mixing. Old Gorely, an early shield volcano (700-361 ka), was followed by Young Gorely eruptions. Calc-alkaline high magnesium basalt to rhyolite lavas have been erupted from Gorely volcano since the Pleistocene. Fractional crystallization dominated evolution of the Old Gorely magmas, whereas magma mixing is more prominent in the Young Gorely eruptive products. The role of recharge-evacuation processes in Gorely magma evolution is negligible (a closed magmatic system); however, crustal rock assimilation plays a significant role for the evolved magmas. Most Gorely magmas differentiate in a shallow magmatic system at pressures up to 300 MPa, similar to 3 wt% H2O, and oxygen fugacity of similar to QFM+ 1.5 log units. Magma temperatures of 1123-1218 degrees C were measured using aluminum distribution between olivine and spinel in Old and Young Gorely basalts. The crystallization sequence of major minerals for Old Gorely was as follows: olivine and spinel (Ol+Sp) for mafic compositions (more than 5 wt% of MgO); clinopyroxene and plagioclase crystallized at similar to 5 wt% of MgO (Ol+Cpx+Plag) and magnetite at similar to 3.5 wt% of MgO (Ol+Cpx+Plag+Mt). We show that the shallow magma chamber evolution of Old Gorely occurs under conditions of decompression and degassing. We find that the caldera-forming eruption(s) modified the magma plumbing geometry. This led to a change in the dominant magma evolution process from fractional crystallization to magma mixing. We further suggest that disruption of themagma chamber and accompanying change in differentiation process have the potential to transform a shield volcanic system to that of composite cone on a global scale.
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页数:28
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