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Evidence for a 'third' endmember of the Unzen 1991-1995 eruption from amphibole thermometry and crystal clots

机译:1991-1995 Unzen 1991-1995爆发的“第三”的证据来自锥形温度和水晶凝块

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Amphibole phenocrysts and crystal clots composed of amphibole, plagioclase, and interstitial glass were observed in dacitic products of the Unzen 1991-1995 eruption and analyzed in order to understand pre-eruptive magmatic processes. Amphibole phenoctysts in the samples erupted at different times are classified by composition as either magnesiohornblendes or tschermakites. Temperatures of 770-830 degrees C are estimated from magnesiohornblende phenocrysts and amphiboles in the crystal dots, which are consistent with the proposed temperature of the silicic endmember magma. The average approximate composition of the interstitial melt is 67-73 wt% SiO2, similar to 0.25 wt% TiO2, similar to 12 wt% Al2O3, similar to 1.1 wt% FeO, 0.14 wt% MgO, 0.80 wt% CaO, 3.0 wt% Na2O, and 4.0 wt% K2O. The SiO2 plus H2O content (similar to 8.8 wt%) of the melt estimated from these amphiboles (SiO2melt= 71-72 wt%) is consistent with the compositions of interstitial melts observed in the crystal dots. The H2O saturation depth estimated for the interstitial melt and plagioclase compositions is consistent with that of the magma chamber where the silicic end member magma was likely stored (11-15 km). These results suggest that interstitial melts in crystal clots represent the silicic endmember melt. Temperatures estimated from tschermakite phenocrysts are 870-950 degrees C, which is lower than the proposed temperature of the mafic endmember magma. In addition, a temperature gap is observed between the tschermakites and magnesiohornblendes. These results suggest the contribution of a previously unrecognized third endmember magma to the 1991-1995 magma, which we term the mid-temperature magma (MT magma). (C) 2020 Elsevier B.V. All rights reserved.
机译:在UNZEN 1991-1995喷发的山氯产物中观察到由锥形,Plagioclase和间质玻璃组成的倒角纤维素和晶块,并分析以了解预发出的岩浆过程。在不同时间爆发的样品中的Amphibole苯转酯通过组合物作为氧化镁或Tschermakites分类。从氧化镁的诸如晶体点中的氧化镁(氧化镁)诸如晶圆中的倒角的温度估计,这与硅端部岩浆的所提出的温度一致。间质熔体的平均近似组成为67-73wt%SiO 2,类似于0.25wt%TiO 2,类似于12wt%的Al 2 O 3,类似于1.1wt%FeO,0.14wt%MgO,0.80wt%CaO,3.0wt% Na2O和4.0wt%K2O。由这些倒言估计的SiO 2加H 2 O含量(类似于8.8wt%)(SiO2melt = 71-72wt%)与在晶体点中观察到的间质熔体的组成一致。用于间质熔融和PlagioClase组合物的H2O饱和深度与岩浆室的岩浆室的饱和深度符合,其中硅胶岩浆可能储存(11-15公里)。这些结果表明,水晶凝块中的间质熔体代表了硅酸硅熔体。由Tschermakite PhenCrysts估计的温度为870-950摄氏度,低于MAFIC EndMember Magma的所提出的温度。另外,在Tschermakites和氧化镁中观察到温度间隙。这些结果表明,先前未被识别的第三个末端岩浆到1991-1995岩浆的贡献,我们学期了中温岩浆(MT Magma)。 (c)2020 Elsevier B.v.保留所有权利。

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