首页> 外文期刊>Journal of Metamorphic Geology >Comparison of diagenetic and low-grade metamorphic evolution of chlorite in associated metapelites and metabasites: an integrated TEM and XRD study
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Comparison of diagenetic and low-grade metamorphic evolution of chlorite in associated metapelites and metabasites: an integrated TEM and XRD study

机译:亚氯酸盐在相关变质岩和变质岩中的成岩作用和低等变质作用演化的比较:TEM和XRD的综合研究

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Chlorite is a common sheet silicate that occurs in various lithologies over a wide grade range involving diagenesis and low-grade metamorphism. Thus, the reaction progress of chlorite offers a unique opportunity for direct correlation of zonal classification of metasedimentary rocks based on illite crystallinity with metabasite mineral facies. To provide such correlation, chlorite crystallinity indices, apparent mean crystallite sizes and lattice strains, crystallite size distributions and compositions of chlorite from coexisting metapelites and metabasites were determined by X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), analytical electron microscopy (AEM) and electron microprobe (EMP) methods. Samples were from Palaeozoic and Mesozoic formations of the Bukkium (innermost Western Carpathians, Hungary) that underwent Alpine (Cretaceous) orogenic metamorphism. Metapelites range in grade from late diagenesis to epizone, whereas metabasites vary from prehnite-pumpellyite through pumpellyite-actinolite to greenschist facies. Despite significant differences in composition, mineral assemblages and textures, reaction progress, as measured in part by chlorite crystallinity, in metapelites paralleled that in metabasites. Chlorite crystallinity and mean crystallite size increase and the proportion of mixed layers in chlorite decreases, whereas the calculated lattice strain does not change significantly with increasing metamorphic grade. Similar trends, but (especially at higher grades) significant differences, were found in mean crystallite size values using various methods for XRD line profile analyses. The increase in crystallite size with increasing grade was demonstrated also by direct TEM measurements on ion-milled whole-rock samples, but with a larger scatter of data at higher grades. In spite of the different kinds of mixed layering in chlorite (Mg-rich smectitic, mostly random, local corrensite-like units in metabasites, and Fe-rich berthierine and dioctahedral smectite in metapelites), XRD-calculated and TEM-measured parameters were found to be reliable tools for measuring reaction progress and metamorphic grade of the same degree in both lithotypes. [References: 46]
机译:亚氯酸盐是一种常见的片状硅酸盐,它以各种岩性发生在涉及成岩作用和低品位变质作用的广泛品位范围内。因此,绿泥石的反应进程为基于伊利石结晶度和变质岩矿物相的沉积岩地带分类直接相关提供了独特的机会。为了提供这种相关性,通过X射线衍射(XRD),扫描电子显微镜(SEM),透射电子显微镜确定了亚氯酸盐的结晶度指数,表观平均晶粒尺寸和晶格应变,微晶尺寸分布以及来自共存的变质岩和变质岩的亚氯酸盐成分。 (TEM),分析电子显微镜(AEM)和电子显微探针(EMP)方法。样品来自经历了高山(白垩纪)造山变质作用的Bukkium(匈牙利内西喀尔巴阡山脉)的古生代和中生代地层。变质岩的级别范围从成岩作用晚期到表生带,而变质岩的类型从葡萄石-球状磷灰石到pumpellyite-阳起石到绿片岩相。尽管在组成,矿物组成和质地方面存在显着差异,但在变质岩中的反应进展(部分由亚氯酸盐结晶度衡量)与在变质岩中的反应进程相似。亚氯酸盐的结晶度和平均晶粒尺寸增加,亚氯酸盐中混合层的比例降低,而计算的晶格应变不会随着变质等级的增加而显着变化。使用各种用于XRD线轮廓分析的方法,在平均晶粒尺寸值中发现了相似的趋势,但是(特别是在较高品位上)存在显着差异。结晶度随品位的增加而增加,这也通过对离子磨全岩石样品进行直接TEM测量来证明,但较高品位的数据散点更大。尽管在亚氯酸盐中有不同种类的混合层(富镁的蒙脱石,主要是无规的局部变红壤样单位,以及富铁的黄柏碱和二八面体的蒙脱石),却发现了XRD计算和TEM测量的参数是测量两种岩型中反应进度和相同程度的变质等级的可靠工具。 [参考:46]

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