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首页> 外文期刊>Contributions to Mineralogy and Petrology >The time scales of magma mixing and mingling involving primitive melts and melt–mush interaction at mid-ocean ridges
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The time scales of magma mixing and mingling involving primitive melts and melt–mush interaction at mid-ocean ridges

机译:岩浆混合和混合的时间尺度,涉及原始融化和中洋洋脊的融化-泥浆相互作用

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We have studied the chemical zoning of plagioclase phenocrysts from the slow-spreading Mid-Atlantic Ridge and the intermediate-spreading rate Costa Rica Rift to obtain the time scales of magmatic processes beneath these ridges. The anorthite content, Mg, and Sr in plagioclase phenocrysts from the Mid-Atlantic Ridge can be interpreted as recording initial crystallisation from a primitive magma (~11 wt% MgO) in an open system. This was followed by crystal accumulation in a mush zone and later entrainment of crystals into the erupted magma. The initial magma crystallised plagioclase more anorthitic than those in equilibrium with any erupted basalt. Evidence that the crystals accumulated in a mush zone comes from both: (1) plagioclase rims that were in equilibrium with a Sr-poor melt requiring extreme differentiation; and (2) different crystals found in the same thin section having different histories. Diffusion modelling shows that crystal residence times in the mush were 11 wt%). Partial equilibration in some crystals can be modelled as starting <1 year prior to eruption but for others longer times are required for complete equilibration. This variety of times is most readily explained if the mixing occurred in a mush zone. None of the plagioclase phenocrysts from the Costa Rica Rift that we studied have Mg contents in equilibrium with their host basalt even at their rims, requiring mixing into a much more evolved magma within days of eruption. In combination these observations suggest that at both intermediate- and slow-spreading ridges: (1) the chemical environment to which crystals are exposed changes on annual to decadal time scales; (2) plagioclase crystals record the existence of melts unlike those erupted; and (3) disaggregation of crystal mush zones appears to precede eruption, providing an efficient mechanism by which evolved interstitial melt can be mixed into erupted basalts. Keywords Plagioclase - Diffusion - MORB - Mixing Communicated by T.L. Grove.
机译:我们已经研究了从缓慢蔓延的中大西洋海脊和中等蔓延速率的哥斯达黎加裂谷斜长石隐晶的化学分区,以获得这些海脊下方岩浆作用的时间尺度。大西洋中脊斜长石隐晶岩中的钙长石含量,镁和锶可解释为记录了开放系统中原始岩浆(〜11 wt%MgO)的初始结晶。随后晶体沉积在糊状区中,随后将晶体夹带到喷出的岩浆中。最初的岩浆结晶斜长石比那些与任何喷出的玄武岩处于平衡状态的斜长石更具无序性。沉积在糊状区中的晶体来自以下两个方面:(1)斜长石边缘与贫锶熔体平衡,需要极高的分化能力; (2)在同一薄片中发现的不同晶体具有不同的历史。扩散模型表明,在糊状物中的晶体停留时间为11wt%。可以将某些晶体的部分平衡建模为爆发前不到1年,但对于其他晶体,则需要更长的时间才能完全平衡。如果混合发生在糊状区域,则最容易解释这种变化的时间。我们研究的来自哥斯达黎加裂谷的斜长岩斜晶石都不含有镁,即使在其边缘,镁也与主玄武岩处于平衡状态,因此不需要在喷发后几天内混入更多演化的岩浆中。综合起来,这些观察结果表明,在中等和缓慢扩展的山脊上:(1)晶体所暴露的化学环境在每年到十年的时间尺度上变化; (2)斜长石晶体记录了与喷出的熔体不同的熔体的存在; (3)结晶糊状区的解体似乎是在喷发之前发生的,提供了一种有效的机制,通过该机制可以将析出的间隙熔体混入喷出的玄武岩中。斜长石酶-扩散-MORB-混合由T.L.树林。

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