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The stoichiometric effects of ferric iron substitutions in serpentine from microprobe data

机译:来自微探针数据蛇形铁氧化铁的化学计量效应

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Given that secondary magnetite is common in serpentinites, it is clear that serpentinites are oxidized rocks. Questions remain, however, concerning the distribution of ferric iron among magnetite and serpentine minerals and the role of ferric iron-rich serpentine in the formation of secondary magnetite. Direct determination of ferric iron in serpentine is not possible using an electron microprobe. We show, however, that the stoichiometic effects of ferric iron substitutions are detectable, although not quantifiable, by microprobe. First, we demonstrate that for studies that provide both microprobe analyses of major elements of serpentine and Mossbauer analysis of ferric iron, substitution effects are obvious. Next, it is equally clear that the early veins forming at the onset of olivine hydration (type 1 veins) show no indication of the presence of ferric serpentine, although a small amount of ferric brucite' may occur. Finally, we show that secondary (type 2) veins, which form as the system becomes open to fluids in equilibrium with plagioclase or pyroxene, contain, in addition to significant alumina, stoichiometric indications of ferric iron substitution. The serpentine in these veins is magnesian, usually with Mg#s around 96-98. Thus, even if a significant proportion of this iron is ferric, it comprises only a small fraction of the total ferric iron budget of the rock. Given that reduced iron is known to be abundant in early-formed brucite and early-formed serpentine and given that brucite, in particular, is absent from evolved serpentine veins, we propose that most magnetite in serpentinites forms as a tertiary product via oxidation of brucite.
机译:鉴于二次磁铁矿在蛇形矿石中常见,显然蛇形素是氧化岩石。然而,关于磁铁矿和蛇形矿物质之间的氟铁和富含铁蛇形的作用仍然存在的问题仍然存在,以及在次级磁铁矿的形成中的作用。使用电子微探针无法直接测定蛇形中的铁。然而,我们表明,诸如通过微探针无法可测量的铁取代的化学成分效应是可检测的。首先,我们证明,对于提供蛇形和司机分析的微探针分析的研究,替代效果是显而易见的。接下来,同样清楚的是,在橄榄石水化开始时形成的早期静脉(1型静脉)显示出不存在铁蛇形的存在,尽管可能发生少量的铁碳酸盐。最后,我们表明,除了显着氧化铝,含有铁铁替代的化学计量适应症之外,其作为系统的次脉冲含量为副血管酶或辉石的液体变动。这些静脉中的蛇形是氧化镁,通常用mg#s大约在96-98左右。因此,即使该铁的大量比例是铁,它也仅包括岩石总铁预算的一小部分。鉴于将还原的铁在早期的布鲁氏菌素和早期形成的蛇形中含有丰富的铁,特别是缺乏发育的蛇形静脉,我们提出了通过氧化物的六丁胺矿石中的大多数磁铁矿作为叔本形式。

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