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Unusual types of degassing from melts of peripheral magma chambers of 'dormant' El'brus volcano, Russia: Geochemical and mineralogical features

机译:俄罗斯“休眠”埃尔布鲁斯火山外围岩浆腔室熔体中异常脱气的类型:地球化学和矿物学特征

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In addition to traditional degassing of the melt in the subsurface magma chambers of the "dormant" El'brus volcano, alsodegassing through pores and microcracks that occur in the top of magma chambers has also been detected. It is proven by studies of compactness, porosity, and permeability of the rocks. The speeds at which gases (H, He, H2S, CO2, F, and Cl) pass through gneiss and volcanic rocks were estimated. Magma chambers on the ground surface are expressed in stable thermal anomalies revealed by night-time thermal sounding from an NOAA satellite. The presence of magma chambers at depths of 2-12 km was proven by magnetotelluric sounding [Sobisevich et al., 2003] and gravity studies. In addition to occasional "columns" of bright-white fluorescence above the thermal anomalies, aerosol "clouds" and hydrogen flows were detected by lidar and hydrogen surveying [Alekseev et al., 2007, 2009]. Observation at the same sites detected steam outbursts occurring periodically, the snow-ice cover thaws and the smell of hydrogen sulfide is felt. Geochemical characteristics of degassing were studied by snow sampling from up to 1 m deep pits. They were taken within contours of the thermal anomalies, above active fault zones, in the sites of bright-white fluorescence "columns," and on a new fumarole locality. It is shown that the degassing of melt was accompanied by the gas transporting many elements (Li, B, Si, P, S, Ca, Zn, Pb, Mo, Ba, W, Hg, Ag, U, Th, I, Au, and Pt) in a fine-grained state (a few microns or possibly nanometers) with an active participation of F and Cl. Native platinum, chalcopyrite, halite, sylvite, barite, gypsum, zircon, opal, chlorinated organics, etc. were for the first time discovered in the Mt. El'brus area using electron microscope studies of solid residue from dehydrated snow samples. "Hidden" ore mineralization genetically related to degassing of melts enriched in ore elements may be supposedly found in paleo- and present-day areas of volcanic activity.[PUBLICATION ABSTRACT] Show less
机译:除了对“休眠” El'brus火山地下岩浆室内的熔体进行传统脱气外,还可以检测到岩浆室内顶部发生的孔隙和微裂纹的脱气。通过对岩石的致密性,孔隙率和渗透性的研究证明了这一点。估算了气体(H,He,H2S,CO2,F和Cl)穿过片麻岩和火山岩的速度。地面上的岩浆室表现为稳定的热异常,由NOAA卫星的夜间热探测表明。大地电磁测深[Sobisevich et al。,2003]和重力研究证明了在2-12 km深度的岩浆室的存在。除了在热异常上方偶尔出现明亮的白色荧光“列”外,还通过激光雷达和氢气测量发现了气溶胶“云”和氢气流[Alekseev et al。,2007,2009]。在同一地点进行观察,发现蒸汽周期性地爆发,冰雪覆盖融化,并感觉到硫化氢的气味。通过从高达1 m深的矿坑中采样雪来研究脱气的地球化学特征。它们是在热异常的轮廓内,活动断层带上方,亮白色荧光“柱”的位置以及新的富马ole位置上采集的。结果表明,熔体脱气伴随着气体中许多元素的迁移(Li,B,Si,P,S,Ca,Zn,Pb,Mo,Ba,W,Hg,Ag,U,Th,I,Au和Pt)处于细颗粒状态(几微米甚至可能是纳米),并具有F和Cl的有效参与。在山中首次发现了天然铂,黄铜矿,盐岩,钾盐,重晶石,石膏,锆石,蛋白石,氯化有机物等。 El'brus地区使用电子显微镜研究了脱水雪样品中的固体残留物。据推测,在古今的火山活动区中发现了与富含矿元素的熔体脱气有关的“隐匿”矿石矿化作用。[出版物摘要]显示较少

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