首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Hydrothermal iron oxide-Cu-Au (IOCG) mineralization at the Jalal-Abad deposit, northwestern Zarand, Iran
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Hydrothermal iron oxide-Cu-Au (IOCG) mineralization at the Jalal-Abad deposit, northwestern Zarand, Iran

机译:伊朗西北部沉积物的热热氧化铁-Cu-Au(IoCG)矿化,伊朗西北部

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The Jalal-Abad iron oxide +/- Cu +/- Au +/- Bi +/- Co deposit is hosted in Early Cambrian volcanosedimentary units (CVSU) of the Kashmar-Kerman zone, Central Iran. Magnetite is the main ore mineral at depth and is associated with Na-Ca rich alteration, dominated by actinolite. Magnetite compositions (EPMA) are very low in TiO2 (0.03-0.07 wt%), V2O3 (0.02-0.06 wt%) and CoO (0.01 > to 0.42 wt%). At intermediate to shallow levels potassic alteration is associated with chalcopyrite, pyrite, arsenopyrite, cobaltite, bismuthinite and gold. The mineralization occurs in massive, breccia matrix, open space filling, disseminated and vein-like styles. Gold occurs as small inclusions (< 50 mu m) within chalcopyrite and pyrite. The delta S-34 values of pyrite at Jalal-Abad vary from 4.7 to 22.8% with an average of 12.7% (CDT) indicating more than one source of S, including evaporites, and minor mixing with magmatic sulfur. The delta O-18 values of magnetite are 1.0-6.4%, with an average of 3.4% consistent with precipitation from magmatic-hydrothermal fluids. The delta C-13 values of dolomites are between -5 and -11% (PDB), while the delta O-18 values varies from 13.6 to 14.3%, indicating hydrothermal dolomitization. Multiphase fluid inclusions in quartz from the iron ore stage (L + V + S) are abundant with homogenization temperatures of 220-480 degrees C. Salinities vary between 32 and 53 wt% NaCl equivalent. Laser-ablation inductively-coupled-plasma mass spectrometry (LA-ICP-MS) analyses performed on individual fluid inclusions hosted by quartz indicate significant concentrations of Fe and Cu, up to 16,076 and 3204 ppm with an average of 6914 and 792 ppm respectively. Ca/K values for fluid inclusions are 0.53-8.68 with an average of 1.75 indicating mixing of magmatic and non-magmatic fluids. Our proposed model for the Jalal-Abad deposit is that during the Early Cambrian gabbro-diorite magmas intruded the sedimentary sequence and provided magmatic constituents and a heat source for hydrothermal processes. Stable isotope, microthermometry and chemistry of fluid inclusions suggest that both magmatic and basinal fluids play a role in the mineralization.
机译:牛肉 - 阿巴氧化铁+/- Cu +/- au +/-双+/- Co押金在伊朗中部克什马尔 - 肯纳州区的早期寒武纪火山口(CVSU)举行。磁铁矿是深度的主要矿石矿物质,与Na-Ca富有的改变有关,由Actinolite主导。磁铁矿组合物(EPMA)在TiO 2中非常低(0.03-0.07wt%),V2O3(0.02-0.06wt%)和CoO(0.01>至0.42wt%)。在中间地至浅水平的母蒸质改变与黄铜矿,硫铁矿,砷吡啶,钴罐,铋素和金有关。矿化发生在大规模的,Breccia矩阵,开放空间填充,散发和静脉样曲位中。黄金发生在黄铜矿和黄铁矿内的小夹杂物(<50μm)。贾拉尔 - 阿巴的黄铁矿的ΔS-34值从4.7分为22.8%,平均值为12.7%(CDT),表明多于一个S的S,包括蒸发素,与岩浆硫的次要混合。磁铁矿的Delta O-18值为1.0-6.4%,平均值为3.4%,与岩浆 - 水热流体的沉淀一致。 Dolomites的Delta C-13值在-5和-11%(PDB)之间,而Delta O-18值从13.6%变化,表明水热量为二摩尔。从铁矿石阶段(L + V + S)中石英中的多相流体夹杂物具有丰富的均质温度,均匀化温度为220-480℃。盐度在32至53wt%NaCl当量之间变化。对由石英托管的单个流体夹杂物进行的激光烧蚀感应耦合等离子体质谱(La-ICP-MS)分析表明了显着浓度的Fe和Cu,高达16,076和3204ppm,平均分别为6914和792ppm。流体夹杂物的CA / k值为0.53-8.68,平均为1.75,表明岩浆和非岩石液的混合。我们提出的雅拉尔 - ABAD矿床模型是,在早期的寒武罩Gabbro-Diority岩浆中侵入了沉积序列,并提供了岩浆成分和用于水热过程的热源。稳定的同位素,微热测定和流体夹杂物的化学表明,岩石和底座流体均在矿化中发挥作用。

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