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Concomitant skarn and syenitic magma evolution at the margins of the Zippa Mountain pluton

机译:齐帕山岩体边缘的矽卡岩和浆状岩浆同时演化

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摘要

Zippa Mountain pluton is a Mesozoic concentrically-zoned intrusion, located within the Canadian Cordillera of British Columbia. An extensive phase of K-feldspar bearing syenite grades towards its margins to mela-syenite and clinopyroxenite. This simple pattern of petrological zonation is overprinted by localised occurrences of silica-undersaturated, peralkaline rock types. High-purity wollastonite skarns occur within and peripheral to the intrusion and result from extensive interaction between intrusion-related fluids and Permian limestone/marble, at shallow crustal levels. Field, chemical and isotopic studies provide insights into interaction between a parental syenitic magma and these country rocks. To achieve this, petrological studies of four of the skarn bodies present have been combined with chemical and isotopic data from the pluton, and from drill core through the skarn into the pluton, to reconstruct the stages in the development of wollastonite skarn and progressive magma-country rock interaction. Derivation of peralkaline compositions from the syenitic magma requires either a loss of Si and Al, or addition of Na and/or K. Our studies preclude the addition of alkali elements but highlight extensive Si-infiltration into the limestone, while the conversion of marble to grossular-andradite skarn, indicates Al-infiltration. Fluid egress resulted in de-silicification/de-alumination of the Zippa Mountain magmas, and increased peralkalinity; wollastonite and garnet-bearing skarn formed as a by-product. Hence, the development of peralkaline rock compositions at Zippa Mountain required a parental syenitic magma, and reaction and/or interaction with calcareous country rocks.
机译:Zippa Mountain岩体是中生代同心带侵入体,位于不列颠哥伦比亚省的加拿大山脉中。含钾长石的正长石广泛阶段,其边缘向黑质正长岩和斜长辉石过渡。这种简单的岩石学分区模式被局部存在的二氧化硅欠饱和,过碱性的岩石类型所覆盖。高纯度硅灰石矽卡岩出现在侵入体内部和外围,是由于侵入相关流体与二叠系石灰岩/大理石在浅地壳水平上的广泛相互作用而产生的。野外,化学和同位素研究为了解亲生共生岩浆与这些乡村岩石之间的相互作用提供了见识。为了实现这一目标,目前对四个矽卡岩体的岩石学研究与来自岩体的化学和同位素数据相结合,从钻芯穿过矽卡岩进入岩体,以重建硅灰石矽卡岩和渐进岩浆的发育阶段。乡村摇滚互动。从正胶岩浆中衍生出碱金属成分需要损失Si和Al或添加Na和/或K。我们的研究排除了添加碱金属元素的可能性,但强调了Si广泛渗透到石灰石中,而大理石则转化为石灰石。钙长红闪石矽卡岩,表明铝渗透。流体的流出导致Zippa山岩浆的硅化作用/去铝化作用,并增加了碱度;硅灰石和石榴石矽卡岩是副产品。因此,Zippa山的碱性碱性岩石组合物的发育需要亲生的共生岩浆,以及与钙质乡村岩石的反应和/或相互作用。

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