江西相山碎斑熔岩成因和钾长石亚显微结构
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国家自然科学基金委48970173项目资助。


Genesis of the Xiangshan Porphyroclastic Lava and Submicroscopic Structure of Its K-feldspar Phenocrysts
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    摘要:

    相山碎斑熔岩含铁铝榴石(1340g/T)、红柱石等岩浆结晶副矿物,具S型火山岩地球化学和Nd、Sr、O同位素组成的特征。据光学测定和X光粉晶衍射测定,斑晶钾长石主要是高正长石或低透长石,有序参数δ=-0.32—-0.01。在透射电镜下,出溶的细钠长石页片由共格拐点分解形成,成分波长约50—100nm;出溶的宽钠长石页片由无应力离溶作用形成,页片宽50—200nm。结果表明,碎斑熔岩是在火山环境下形成,而不是在深成环境下形成。

    Abstract:

    The Upper Jurassic porphyroclastic lava exposed in Xiangshan area, Jiangxi Province,usually contains certain amounts of almandite and andalusite which crystallized from magma as accessory constituents. Geochemically, it shows many characteristics of S-type volcanic rocks and has Nd, Sr, O iso- topic compositions. Optical and X-ray powder diffraction determinations indicate that the K-feldspar in porphyroclastic lava is mainly high orthoclase or low sanidine, with optic angles (-2V) ranging from 40ºto 53º,All occupancies at t1 9O)sites from 0.36 to 0.38 and degree of order δ' from -0.32 to 0.11. It is seen under TEM that exsolved fine albite lamellae are formed by the decom-position process of coherent spinodal with the compositional wave-length about 50一10pnm, whereas wide albite lamellae are formed by strain-free exsolution with lamella width some 50-200 nm. These data suggest that the Xiangshan porphyroclastic lava was formed in environment rather than plutonic environment. seen under TEM thatposition process of coherent spinodal with‘ the compositio3zal wave-length . than plutonic envi.roumeut. was volcanic environment rather

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刘昌实,薛纪越,张根娣,等, 1992. 江西相山碎斑熔岩成因和钾长石亚显微结构[J]. 岩石矿物学杂志, 11(3):243~251.
Liu Changshi, Xue Jiyue, Zhang Gendi, et al, 1992. Genesis of the Xiangshan Porphyroclastic Lava and Submicroscopic Structure of Its K-feldspar Phenocrysts[J]. Acta Petrologica et Mineralogica, 11(3): 243~251.

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