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Chemical mass balance in a reaction zone between serpentinite and metapelites in the Nishisonogi metamorphic rocks, Kyushu, Japan: Implications for devolatilization

机译:西九州变质岩中蛇纹岩与变质岩之间反应区的化学质量平衡:对挥发的影响

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Reaction zones of 0.5-10.0 m thick are commonly observed between serpentinite and pelitic schist in the Nishisonogi metamorphic rocks, Kyushu, Japan. Each reaction zone consists of almost monomineralic or bimineralic layers of talc + carbonates, actinolite (or carbonates + quartz), chlorite, muscovite and albite from serpentinite to pelitic schist. Magnesite + quartz veins extend into the serpentinite from the talc + carbonates layer, while dolomite veins extend into the pelitic schist from the muscovite layer. These veins are filled by subhedral minerals with oriented growth features. Primary fluid inclusions yield the same homogenization temperatures (145-150 degrees C) both in the reaction zone and in the veins, suggesting their simultaneous formation. Mass-balance calculations using the isocon method indicate that SiO2, MgO, H2O and K2O are depleted in the reaction zone relative to the protoliths. These components were probably extracted from the reaction zone as fluids during the formation of the reaction zone.
机译:在日本九州的西尾木变质岩中,蛇纹岩和片状片岩之间通常观察到厚度为0.5-10.0 m的反应区。每个反应区几乎都由滑石+碳酸盐,阳起石(或碳酸盐+石英),绿泥石,白云母和钠长石的单矿物或双矿物层组成,从蛇纹石到片状片岩。菱镁矿+石英脉从滑石+碳酸盐层延伸到蛇纹岩,而白云岩脉从白云母层延伸到胶泥片岩。这些脉被充满定向生长特征的亚面下矿物填充。初级流体包裹体在反应区和静脉中产生相同的均质温度(145-150摄氏度),表明它们同时形成。使用isocon方法进行质量平衡计算表明,相对于原石,SiO2,MgO,H2O和K2O在反应区中被耗尽。这些组分可能在反应区形成过程中作为流体从反应区中提取出来。

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