Hornblende in ultramafic-mafic rocks of the Khudolaz Complex of the Southern Urals: Crystallization conditions and petrological implications

Q4 Earth and Planetary Sciences Litosfera Pub Date : 2023-11-03 DOI:10.24930/1681-9004-2023-23-5-766-784
I. R. Rakhimov, A. V. Vishnevskiy
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Abstract

Subject research . Morphology and chemical composition of amphiboles from ultramafic-mafic rocks of the Khudolaz complex. Methods . Morphological studies were carried out using optical (Carl Zeiss Axioskop 40A) and electron (Tescan Vega Compact) microscopes. The chemical composition of minerals was determined using CAMECA SX 100 and JEOL JXA-8230 electron probe microanalyzers . Results . The rocks under study are dominated by xenomorphic brown titanium hornblende crystals, formed mainly due to the reaction of clinopyroxene with a residual water-saturated melt at 920–1040°C. Euhedral brown hornblende, which crystallized directly from the residual water-saturated melt in the same temperature range, was found in small amounts. Green hornblende originated along the edges and cracks in brown hornblende crystals during the late magmatic stage and early hydrothermal stage (670–830°C) at the subsolidus transformation. At the hydrothermal stage (620–650°C and below), brown and green hornblende were partially replaced by actinolite and cummingtonite. Conclusions . The nature of changes in the composition of brown hornblende indicates similar petrogenesis conditions at the late magmatic stage in all intrusions of the Khudolaz complex. The process of transition from brown hornblende to green hornblende occurred with a gradual increase in oxygen fugacity (ΔNNO from –0.2…+0.4 to +0.9…+2.5), and was accompanied by decrease of Ti, Fe 2+ , Na and the increase of Si, Al VI , Mg, and K in the mineral structure. The low concentrations of F and Cl in hornblende crystals indicate their formation after migration of halogens from the melt.
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乌拉尔南部Khudolaz杂岩超基性-基性岩中的角闪石:结晶条件及其岩石学意义
课题研究。Khudolaz杂岩超基性-基性岩中角闪石的形态和化学成分。方法。形态学研究采用光学显微镜(Carl Zeiss Axioskop 40A)和电子显微镜(Tescan Vega Compact)进行。采用CAMECA SX 100和JEOL JXA-8230电子探针微量分析仪测定矿物化学成分。结果。所研究的岩石以异型棕色钛角闪石晶体为主,主要由斜辉石与残余水饱和熔体在920 ~ 1040℃反应形成。少量自形棕色角闪石由残余饱和水熔体在同一温度范围内直接结晶。绿色角闪石在岩浆晚期和热液早期(670 ~ 830℃)的亚固相转变中沿棕色角闪石晶体的边缘和裂缝形成。在热液期(620 ~ 650℃及以下),棕色和绿色角闪石部分被放光石和明辉石所取代。结论。棕角闪石组成变化的性质表明,各侵入体在岩浆晚期的成岩条件相似。从褐色角闪石到绿色角闪石的转变过程伴随着氧逸度的逐渐增加(ΔNNO从-0.2…+0.4到+0.9…+2.5),伴随着矿物结构中Ti、Fe 2+、Na的减少和Si、Al VI、Mg、K的增加。角闪石晶体中F和Cl的低浓度表明它们是熔体中卤素迁移后形成的。
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来源期刊
Litosfera
Litosfera Earth and Planetary Sciences-Geophysics
CiteScore
0.70
自引率
0.00%
发文量
39
审稿时长
12 weeks
期刊最新文献
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