Bindeman I N, Wotzlaw J-F, Stern R A, Chiaradia M, Guillong M, Colón D P
Earth Sciences, University of Oregon, Eugene, OR, USA.
Fersman Mineralogical Museum, Moscow, Russia.
Data Brief. 2021 Feb 20;35:106896. doi: 10.1016/j.dib.2021.106896. eCollection 2021 Apr.
The dataset presented here is associated with the article "Young Silicic Magmatism of the Greater Caucasus, Russia with implication for its delamination origin based on zircon petrochronology and thermomechanical modeling" [1]. We present detailed sample descriptions and source locations for the rocks from the Chegem, Tyrnyauz, and Elbrus volcanic center localities presented in that study. The dataset presents extensive isotope and trace element geochemistry of zircon crystals from these rocks, major phenocrysts, and whole rock O and H isotopic and elemental compositions. Zircon ages, trace element compositions, and Hf and O isotopic compositions were obtained by both laser ablation ICP-MS and secondary ionization mass spectrometry in situ techniques and chemical abrasion isotope dilution-thermal ionization mass spectrometry techniques. We also present whole-rock major element compositions obtained by X-ray fluorescence and trace element compositions obtained by solution inductively-coupled plasma mass spectrometry. We also report δO analyses of phenocrysts and groundmass in samples, δO-δC analyses of limestones and limestone xenoliths in the Chegem ignimbrite, and coupled δO-δD-ΔO analyses of glass and groundmass of rock samples from the Chegem ignimbrites that show abundant evidence of post-emplacement interaction with meteoric waters. To supplement the associated study [1], this article also includes field photographs, cathodoluminescence images of zircons, plots of trace element compositions in zircon, plots of stable isotopic variations in Chegem ignimbrites vs. stratigraphy, and selected trace elemental whole-rock diagrams.
此处展示的数据集与论文《俄罗斯大高加索地区的年轻硅质岩浆作用及其基于锆石岩石年代学和热机械模拟的拆沉成因》[1]相关。我们给出了该研究中呈现的来自切格姆、特尔尼奥兹和厄尔布鲁士火山中心地区岩石的详细样本描述及来源位置。该数据集展示了这些岩石中锆石晶体、主要斑晶以及全岩的氧和氢同位素及元素组成的广泛同位素和微量元素地球化学信息。锆石年龄、微量元素组成以及铪和氧同位素组成通过激光烧蚀电感耦合等离子体质谱法和二次离子质谱原位技术以及化学磨蚀同位素稀释-热电离质谱技术获得。我们还给出了通过X射线荧光获得的全岩主量元素组成以及通过溶液电感耦合等离子体质谱获得的微量元素组成。我们还报告了样品中斑晶和基质的δO分析、切格姆熔结凝灰岩中石灰岩和石灰岩捕虏体的δO-δC分析,以及切格姆熔结凝灰岩岩石样品玻璃和基质的耦合δO-δD-ΔO分析,这些分析显示出与大气降水发生后期相互作用的大量证据。为补充相关研究[1],本文还包括野外照片、锆石的阴极发光图像、锆石中微量元素组成图、切格姆熔结凝灰岩中稳定同位素变化与地层关系图以及选定的微量元素全岩图。