首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >The transition from peraluminous to peralkaline granitic melts:Evidence from melt inclusions and accessory minerals
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The transition from peraluminous to peralkaline granitic melts:Evidence from melt inclusions and accessory minerals

机译:从高铝质到高碱性花岗岩熔体的转变:来自熔体包裹体和辅助矿物的证据

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Fractional crystallization of peraluminous F-and H_2O-rich granite magmas progressively enriches the remaining melt with volatiles.We show that,at saturation,the melt may separate into two immiscible conjugate melt fractions,one of the fractions shows increasing peraluminosity and the other increasing peralkalinity.These melt fractions also fractionate the incompatible elements to significantly different degrees.Coexisting melt fractions have differing chemical and physical properties and,due to their high density and viscosity contrasts,they will tend to separate readily from each other.Once separated,each melt fraction evolves independently in response to changing T/P/X conditions and further immiscibility events may occur,each generating its own conjugate pair of melt fractions.The strongly peralkaline melt fractions in particular are very reactive and commonly react until equilibrium is attained.Consequently,the peralkaline melt fraction is commonly preserved only in the isolated melt and mineral inclusions.We demonstrate that the differences between melt fractions that can be seen most clearly in differing melt inclusion compositions are also visible in the composition of the resulting ore-forming and accessory minerals,and are visible on scales from a few micrometers to hundreds of meters.
机译:高铝富F和H_2O花岗岩岩浆的分形结晶逐渐富集剩余熔体中的挥发物。我们表明,在饱和状态下,熔体可能会分成两个不混溶的共轭熔体组分,其中一个组分显示出高铝酸度,另一个显示出过碱性。这些熔体馏分还将不相容元素的分馏程度显着不同。共存的熔体馏分具有不同的化学和物理性质,由于它们的高密度和高粘度对比,它们将易于相互分离。一旦分离,每个熔体馏分响应于变化的T / P / X条件而独立地发展,并且可能会发生进一步的不溶性事件,每个事件都会生成自己的共轭对熔体馏分。特别是强碱性的高碱性熔体馏分具有很高的反应性,通常会反应直至达到平衡。过碱性熔体分数通常仅保存在孤立的物质中我们证明了在不同的熔体包裹体组成中最清晰可见的熔体馏分之间的差异在形成的成矿矿物和辅助矿物的组成中也很明显,并且在几微米至几微米的范围内可见几百米。

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