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Incipient melt segregation as preserved in subaqueous pyroclasts

机译:水下熔解体中保存的初期熔体偏析

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Melt segregation is the extraction of residual melt from the rigid but permeable network of growing crystals with which it co-evolved. It is recognized as an effective mechanism of igneous differentiation that acts over many geologic time and length scales. Here we present evidence for rapid melt segregation in subaqueous basaltic pyroclasts. Segregation produced intravesicular extrusions, i.e., partly hollow balloons of glass penetrating the walls of earlier formed vesicles set in a microcrystalline groundmass. The segregation process can be described as a form of gas filter pressing, where microlite crystallization produced local gradients in volatile supersaturation and vapor pressure that drove melt extrusion into adjacent vesicles. Unlike in previously described segregation features, the structures presented here are shown to have formed after the extruded melt became enriched in fast-diffusing H _2O, but before it became measurably enriched or depleted in slower diffusing major elements. We show that melt segregation of this embryonic type must occur in seconds, rather than in the days to centuries required for similar processes to occur in lava flows or magma chambers, and that it occurs within the short time scales that characterize explosive fragmentation of basaltic melt.
机译:熔体偏析是从与之共同演化的生长晶体的刚性但可渗透的网络中提取残余熔体。它是公认的火成岩分化的有效机制,作用于许多地质时间和长度尺度。在这里,我们提供了在水下玄武质火山成岩中快速熔体隔离的证据。分离产生囊内挤出物,即部分中空的玻璃气球穿透设置在微晶基体中的较早形成的囊泡的壁。分离过程可以描述为气体压滤的一种形式,其中微晶结晶在挥发性过饱和度和蒸气压中产生局部梯度,从而促使熔体挤出到相邻的囊泡中。与先前描述的偏析特征不同,此处显示的结构是在挤出的熔体富含快速扩散的H _2O之后但可测量地富含或耗尽较慢的扩散主要元素之前形成的。我们表明,这种胚胎类型的熔体分离必须在几秒钟内发生,而不是在熔岩流或岩浆室中发生类似过程所需的几天至几个世纪,并且它发生在表征玄武岩熔体爆炸性破裂的短时间内。

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