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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Crystallization and resorption in plutonic plagioclase:Implications on the evolution of granodiorite magma (Gesiniec granodiorite,Strzelin Crystalline Massif,SW Poland)
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Crystallization and resorption in plutonic plagioclase:Implications on the evolution of granodiorite magma (Gesiniec granodiorite,Strzelin Crystalline Massif,SW Poland)

机译:小生斜长石中的结晶和吸收:对花岗闪长岩岩浆演化的影响(Gesiniec花岗闪长岩,Strzelin结晶地块,西南波兰)

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摘要

Granodiorite from the Gesiniec Intrusion,Strzelin Crystalline Massif,SW Poland contains complexly zoned plagio-clases.Five chemically and structurally distinct zones can be correlated among crystals:'cores' (25-35% An),inner mantles (approx 40-45% An),outer mantles (40-25% An),resorption zones (35-50% An) and rims (35-30% An).Good structural and chemical (major and trace elements) correlation of zones between crystals indicates that zonation was produced by changes in conditions of crystallization on a magma chamber scale.Plagioclase,being the liquidus phase,records a time span from the beginning of crystallization to emplacement and rapid cooling of granodiorite as thin dykes.Crystallization began with the formation of inner mantles.The paucity and different sizes of inner mantles suggests slow crystallization in high temperature magma.Normally zoned inner mantles were formed under increasing undercooling.Compositional trends in mantles suggest closed system crystallization.The major resorption zones were caused by injection of less evolved magma as indicated by the strontium increase in plagioclase.The injection triggered a rapid rise of magma and plagioclase crystals facilitating mixing but also inducing fast,kinetically controlled growth of complex multiple,oscillatory zonation within resorption zones.The ascent of magma caused decompression melting of plagioclase and produced melt inclusions within inner mantles-the 'cores'.The decompression range is estimated at a minimum of 2 kbar.Emplacement of granodiorite as thin dykes allow rapid cooling and preservation of magmatic zonation in plagioclases.Melt inclusions crystallized completely during post-magmatic cooling.The zonation styles of plutonic plagioclase differ markedly from volcanic ones suggesting different magma evolution.Zones in plutonic plagioclase are well correlated indicating crystallization in quiescent magma where crystals accumulation and compositional magma stratification may occur.Crystals probably did not travel between different regimes.Resorption occurred but as single albeit complex episodes.Good correlation of zones in plutonic plagioclases allows a distinction between the main processes controlling zonation and superimposed kinetic effects.
机译:来自波兰西南部Strzelin断层块的Gesiniec侵入体的花岗闪长岩含有复杂的带状斜长条。晶体之间可以划分出五个化学和结构上不同的区域:``核''(25-35%An),内地幔(约40-45%) An),外地幔(40-25%An),吸收区(35-50%An)和边缘(35-30%An)。晶体之间区域的良好结构和化学(主要和微量元素)相关性表明带状分布斜长石是液相线阶段,记录了从晶状体到晶状体的沉积到快速冷却的时间段。晶状体开始于内部地幔的形成。内地幔的稀少性和大小不同,说明在高温岩浆中结晶缓慢;在不断增加的过冷度下,通常形成带状的内地幔形成;地幔的组成趋势表明是封闭的系统结晶。斜纹岩中锶的增加表明注入较少的岩浆引起了吸收区。注入触发了岩浆和斜纹岩晶体的快速上升,促进了混合,但也引起了吸收区内快速,动力学控制的复杂多振荡带的生长。岩浆上升导致斜长石减压融化并在内地幔内形成了熔体夹杂物-岩心-减压范围估计至少为2 kbar。花岗闪石包裹着薄的堤坝使斜长石的岩浆带迅速冷却并保存熔岩夹杂物在岩浆后冷却过程中完全结晶。青生斜长石的分带样式与火山岩明显不同,表明岩浆演化不同。古生斜长石的地带高度相关,表明在静态岩浆中结晶,可能会发生晶体堆积和成分岩浆分层。概率吸收虽然发生但是虽然是复杂的事件,但吸收是发生的。重生质斜长柄区的良好相关性可以区分控制分区的主要过程和叠加的动力学效应。

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