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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >The role of fractional crystallization, magma recharge, and magma mixing in the differentiation of the Small Hasandag volcano, Central Anatolia, Turkey
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The role of fractional crystallization, magma recharge, and magma mixing in the differentiation of the Small Hasandag volcano, Central Anatolia, Turkey

机译:分级结晶,岩浆补给和岩浆混合在土耳其中部安纳托利亚小哈桑达格火山的分化中的作用

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During the last 7 Ma, eruptions of the Small Hasandag composite volcano in Central Anatolia, Turkey, have produced calc-alkaline lavas ranging in composition from basalt to rhyolite. Published research on this volcano suggests that crystal fractionation and magma mixing are the two important processes controlling the differentiation of the Small Hasandag magmas. The shortcomings of previous studies are that neither the intensive variables (P, T, fO2) nor the constraints under which the presumed parental magmas evolved have been quantitatively evaluated. In this study, we have used the MELTS algorithm of Ghiorso and Sack (1995) to determine the initial system parameters in terms of temperature (T), pressure (P), oxygen fugacity (fO2), and water content (wt.% H2O) and then evaluated the consequences of magma differentiation under closed system fractional crystallization, magma recharge, and magma mixing conditions separately. In order to determine the initial system parameters, we carried out approximately 100 isobaric fractional crystallization simulations of the parental basaltic andesite magma (Mg#68) in the pressure range of 1 bar to 10,000 bars, an fO2 range of QFM +1 to QFM + 3 and at water contents from 0 to 4 wt.%. The best agreement between the computed melt compositions and the natural rocks was achieved at P = 1000 bars, fO2 = QFM + l, and 2 wt.% water. Computations with parental basaltic andesite at these initial system conditions and under isobaric fractional crystallization generated melt compositions from basaltic andesite to dacite that are very similar to observed lava compositions. Compositions more evolved than dacites, however, cannot be produced by closed system fractional crystallization alone. This is because rhyolites generated by closed system fractional crystallization have total alkali (Na2O + K2O) values lower than those of the Small Hasandag rhyolites. Furthermore, natural rock compositions in the silica range of 62-65 wt.% show discrete cycles of sudden increase and decrease in the MgO content in the range of 0.5-1 wt.%, suggesting magma replenishment. This study shows that fractional crystallization and magma recharge in the composition range of basaltic andesite to dacite, followed by isobaric-isenthalpic mixing of dacite with the most differentiated rhyolite (Mg#46) generate melt compositions that most closely resemble the entire compositional range of the Small Hasandag lavas, including the rhyolites. The agreement between the liquid line of descent defined by the natural lavas and MELTS calculations, and the agreement between the observed mineralogy of the rocks and the calculated order of crystallization support this conclusion.
机译:在最近的7 Ma期间,土耳其中部安纳托利亚中部的小型Hasandag复合火山爆发,产生了钙碱性熔岩,成分从玄武岩到流纹岩。关于该火山的已发表研究表明,晶体分级和岩浆混合是控制哈桑达格小型岩浆分化的两个重要过程。先前研究的不足之处在于,没有对强度变量(P,T,fO2)或推测的父母岩浆演化的约束条件进行定量评估。在这项研究中,我们使用了Ghiorso和Sack(1995)的MELTS算法来确定初始系统参数,包括温度(T),压力(P),氧逸度(fO2)和水含量(wt。%H2O) ),然后分别评估封闭系统分数结晶,岩浆补给和岩浆混合条件下岩浆分化的后果。为了确定初始系统参数,我们在压力范围1 bar至10,000 bar,fO2范围QFM +1至QFM +水含量为0至4重量%时为3。在P = 1000 bar,fO2 = QFM + 1和2 wt。%的水量下,计算出的熔体成分与天然岩石之间达到了最佳一致性。在这些初始系统条件下和等压分步结晶条件下,用母体玄武质安山岩进行的计算产生了从玄武质安山岩到辉绿岩的熔体成分,与观察到的熔岩成分非常相似。但是,仅通过闭环系统分步结晶法无法生产出比dacites更为进化的组合物。这是因为通过封闭系统分步结晶生成的流纹岩的总碱值(Na2O + K2O)值比小Hasandag流纹岩的低。此外,在62-65wt。%的二氧化硅范围内的天然岩石组合物显示出在0.5-1wt。%的范围内MgO含量突然增加和减少的离散循环,表明岩浆补充。这项研究表明,在玄武岩安山岩至辉绿岩的组成范围内,部分结晶和岩浆充填,然后将辉绿岩与分化程度最高的流纹岩(Mg#46)进行等压-等焓混合,生成的熔体组成与熔岩的整个组成范围最相似。哈桑达格小型熔岩,包括流纹岩。天然熔岩和MELTS计算所定义的下降液体线之间的一致性,以及所观察到的岩石矿物学和所计算的结晶顺序之间的一致性支持了这一结论。

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