岩石元素富集的评价:以Kısacık及其邻域为例(Ayvacık, Çanakkale/ t rkiye)

A. Vural
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引用次数: 1

摘要

本文研究了Kısacık及其附近(Ayvacık-Çanakkale/ t rkiye)露头岩石中主氧化物、微量元素/重金属和稀土元素的富集情况。对野外岩石进行5组处理,对代表这些岩石组的22个样品进行了全岩分析,计算了岩石中主要氧化物、微量元素/重金属和稀土元素的元素富集系数(EEF)。结果,它是确定Kı囊Kı火山岩是富含二氧化硅,Fe2O3、K2O,,有限公司Cs, Th, U, W,洛杉矶,欧盟、Tm, Yb,陆,莫,,Cd,某人,Bi和汞元素的速度> 1 > 150根据上流社会的价值观,和Fe2O3分别,曹,二氧化钛,P2O5、MnO, Cr、Sc,有限公司,Nb、Sr、钼、铜、镍、Cad、某人,Bi, V,铜和镉浓度的蛇绿混杂岩丰富比率从> 1 > 36根据上流社会的价值观。与上地壳相比,蛇绿质msamulange岩体中Cr、Co、Ni、As和Hg元素富集。卡兹达伊尔群富集了MgO、CaO、K2O、MnO、Cr、Co、Ta、U、W、Mo、Cu、Ni、As和Cd。听石中SiO2、Fe2O3、MgO、Mn、Cr、Co、Ni、As、Sb和Hg的富集速率为>1 ~ >32。综合评价发现,部分氧化物(CaO、MgO、Fe2O3、TiO2)和元素(Cr、Ni、Co)因母岩富集,部分氧化物(SiO2、K2O、MnO)和元素(As、Sb、Hg)因热液蚀变、风化等表生作用富集。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An evaluation of elemental enrichment in rocks: In the case of Kısacık and its neighborhood (Ayvacık, Çanakkale/Türkiye)
In this study, the enrichment of the major oxide, trace element/heavy metal and rare earth element contents of the rocks outcropping in Kısacık and its vicinity (Ayvacık-Çanakkale/Türkiye) were investigated. The rocks in the field were handled in 5 groups, and whole rock analyses were carried out for 22 samples collected representing these rock groups and Element Enrichment Factor (EEF) of the major oxide, trace element/heavy metal and rare earth element contents of the rocks were calculated. As a result, it was determined that the Kısacık volcanics were enriched in SiO2, Fe2O3, K2O, Be, Co, Cs, Th, U, W, La, Eu, Tm, Yb, Lu, Mo, As, Cd, Sb, Bi and Hg elements at a rate of >1 to >150 according to the upper crust values, and the Fe2O3, MgO, CaO, TiO2, P2O5, MnO, Cr, Sc, Co, Nb, Sr, Mo, Cu, Ni, Cad, Sb, Bi, V, Cu and Cd concentrations of the Ophiolitic Mélange were enriched in ratios ranging from >1 to >36 according to the upper crust values. It has been also observed that the listvenitic rocks in the Ophiolitic Mélange are enriched in Cr, Co, Ni, As and Hg elements compared to the upper crust. As to Kazdağ Group, MgO, CaO, K2O, MnO, Cr, Co, Ta, U, W, Mo, Cu, Ni, As and Cd were enriched. Listvenite were enriched in SiO2, Fe2O3, MgO, Mn, Cr, Co, Ni, As, Sb and Hg at a rate of >1 to >32 according to the upper crust values. When the rocks in the area were evaluated together, some oxides (e.g., CaO, MgO, Fe2O3, TiO2) and elements (e.g., Cr, Ni, Co) were enriched due to parental rock, while some oxides (e.g., SiO2, K2O and MnO) and elements (As, Sb, Hg) were enriched due to epigenic processes such as hydrothermal alteration and weathering.
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