首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Rare greenockite (CdS) within the chromite-PGE association in the Bangur Gabbro, Baula-Nuasahi Complex, Eastern India
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Rare greenockite (CdS) within the chromite-PGE association in the Bangur Gabbro, Baula-Nuasahi Complex, Eastern India

机译:印度东部Baula-Nuasahi矿区Bangur Gabbro中铬铁矿-PGE协会内的稀有绿岩(CdS)

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We report the presence of greenockite from the chromite-PGE-base metal sulfide association in the Bangor Gabbro, Baula-Nuasahi mafic-ultramafic complex. The CdS phase occurs, sans any precursor Cd-bearing phase, as minute grains within siderite micro-veins in close proximity to chlorite in the chalcopyrite + pyrrhotite + pentlandite + violarite assemblage. Using various calibrations, chlorite compositions yielded temperature ranges of 245 to 325 degrees C. The associated siderite might have formed at or little below the above temperature. Electron probe micro-analyses (EPMA) of greenockite reveal small amounts of Fe (1.01-1.61 wt.%), Zn (1.89-4.54 wt.%), and substitution of Zn for Cd. Laser-ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) analysis of chalcopyrite nearer to and away from siderite micro-veins that host greenockite confirms maximum Cd concentrations of 78 and 144 ppm, respectively, entailing possible derivation of Cd from chalcopyrite. We propose the transport of Cd as bisulfide complex in a low temperature alkaline and reducing fluid and the simultaneous precipitation of greenockite and siderite by reaction with Fe-rich minerals, aided by decrease in pH and/or increase in f(O2), (C) 2015 Elsevier B.V. All rights reserved.
机译:我们报告了在班戈加布罗,保拉-努沙希黑铁矿-超音速复合体中铬铁矿-PGE基金属硫化物协会中存在绿辉石。在没有任何含Cd的前驱体相的情况下,会发生CdS相,因为菱铁矿+黄铁矿+膨润土+堇青石组合中的菱铁矿微脉中的微小晶粒与绿泥石非常接近。使用各种校准,亚氯酸盐组合物产生的温度范围为245至325摄氏度。相关的菱铁矿可能在高于或低于上述温度时形成。绿岩的电子探针显微分析(EPMA)显示少量的Fe(1.01-1.61 wt。%),Zn(1.89-4.54 wt。%),以及用Zn代替Cd。靠近或远离容纳绿针石的菱铁矿微脉石的黄铜矿的激光烧蚀电感耦合等离子体质谱(LA-ICP-MS)分析确认最大的Cd浓度分别为78和144 ppm,这可能导致从黄铜矿中衍生出Cd。我们提出了在低温碱性和还原性流体中以二硫化物络合物形式运输Cd的方法,以及通过与pH值降低和/或f(O2)升高(C )2015 Elsevier BV保留所有权利。

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