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Skarn zonation and rock physical properties of the Wondong Fe-Pb-Zn polymetallic deposit, Korea

机译:韩国Wondong Fe-Pb-Zn多金属矿床的矽卡岩区带和岩石物理性质

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The Wondong Fe-Pb-Zn polymetallic skarn deposit is located in the Taebaeksan Basin, South Korea. This deposit is associated with the Paleocene quartz porphyry and characterized by abundant exoskarn and subordinate endoskarn. A general zonation pattern is developed comprising a proximal reddish-brown garnet-rich zone, a distal greenish garnet +/- pyroxene zone, and a wollastonite-rich zone at the marble front. The mineralization is characterized by Fe in the proximal garnet-rich zone and Pb-Zn within and beyond the garnet +/- pyroxene zone. In general, skarn deposits show complex geophysical signatures in their rock properties in relation to metasomatism. Garnet-rich and garnet +/- pyroxene skarns accompanying Fe-oxides and sulfides are significantly denser (3.3-3.4 g/cm(3)) than the other rocks (2.5-3.0 g/cm(3)) such as quartz porphyry, wollastonite-rich skarn, and silicic hornfels. Reactions related to creating garnet may increase porosity, which promotes further infiltration and reaction to produce garnet growth. The porosity of skarn rocks (1.8-8.4%) has a broad range and is generally higher than the other rocks (0.8-3.3%). In contrast, most skarn rocks show a remarkably low electrical resistivity (mostly 211-848 Omega m) than the other rocks (1,815-8,601 Omega m). Magnetic susceptibilities of skarn rocks (15-140 x 10(-5) SI) are higher than quartz porphyry and siliceous hornfels (< 25 x 10(-5) SI). P wave velocities in the garnet +/- pyroxene zone at the skarn front show lower values (1,487-3,674 m/s) than the other rocks (2,902-5,590 m/s), which is likely related to the porosity of the rocks. Thus, in general, the physical properties of rocks as exampled above from the skarn environment reflect their mineral assemblages and can be used for mineral exploration of skarn deposits.
机译:Wondong Fe-Pb-Zn多金属矽卡岩矿床位于韩国的太白山盆地。该矿床与古新世石英斑岩有关,其特征是大量的外骨骼和下层的内生矽卡岩。已开发出一种大致的分区模式,包括近端的红棕色石榴石富集区,远端的绿色石榴石+/-辉石区和大理石前端的富硅灰石区。矿化的特征是在近石榴石富集区中的Fe和在石榴石+/-辉石区之内外的Pb-Zn。一般而言,矽卡岩沉积物的岩石性质与交代作用有关,显示出复杂的地球物理特征。富含石榴石和石榴石+/-辉石的矽卡岩伴有Fe-氧化物和硫化物,其密度(3.3-3.4 g / cm(3))比其他岩石(2.5-3.0 g / cm(3))例如石英斑岩,硅灰石含量丰富的矽卡岩和硅质角horn。与制造石榴石有关的反应可能会增加孔隙率,从而促进进一步的渗透和反应,从而导致石榴石的生长。矽卡岩的孔隙度(1.8-8.4%)范围很广,通常高于其他岩石(0.8-3.3%)。相比之下,大多数矽卡岩岩石的电阻率(主要为211-848Ωmega)比其他岩石(1,815-8,601Ωmega)要低得多。矽卡岩(15-140 x 10(-5)SI)的磁化率高于石英斑岩和硅质角铁(<25 x 10(-5)SI)。矽卡岩前的石榴石+/-辉石带中的P波速度显示出较低的数值(1,487-3,674 m / s),低于其他岩石(2,902-5,590 m / s),这可能与岩石的孔隙度有关。因此,总的来说,上面从矽卡岩环境中举例说明的岩石的物理性质反映了它们的矿物组合,可用于矽卡岩矿床的矿物勘探。

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