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Mineralogy and Paragenesis of the Co-Ni Arsenide Ores of Bou Azzer, Anti-Atlas, Morocco

机译:摩洛哥反阿特拉斯的Bou Azzer Co-Ni砷化物矿石的矿物学和共生作用

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The Co-Ni arsenide ore deposits at Bou Azzer, Morocco, represent an uncommon type of Co mineralization. Several Co-Ni-As-Au-Ag mines are active in Bou Azzer and adjacent areas. The Co-Ni arsenide ores are structurally controlled and concentrated mainly within quartz-carbonate veins along the boundaries of Neoprotero-zoic serpentinized mantle peridotites, quartz diorite, and Precambrian volcanic rocks. They have varying shapes and sizes; however, all deposits have the same general mineralogy in decreasing order of abundance: arsenides, sulfarsenides, and sulfides. Arsenide minerals include skutterudite (CoAs_3), safflorite (CoAs_2), loellingite (FeAs_2), nickeline (NiAs), rammelsbergite (NiAS_2), and S-rich Ni-Co diarsenide. Co-rich ores are predominant over Ni-rich ones in almost all deposits. Arsenopyrite and, to a lesser extent, gersdorffite are the main sulfarsenide minerals in almost all samples studied. Bornite, an unidentified Cu-Zn sulfide, chalcocite, chalcopyrite, pyrite, pyrrhotite, sphalerite, and tetrahedrite, in decreasing order of abundance, are the main sulfide minerals present in Bou Azzer ores. Gold-silver alloys, with about 15 wt percent Ag on average, are commonly associated with Ni-Co arsenides and/or disseminated in quartz veins. In the Ni-rich assemblage pure nickeline with high Ni content (approx 48 wt percent) and very low Co content (< = 0.1 wt percent) grades outward to compositions with less Ni (approx 20 wt percent) and very high Co (up to 18 wt percent). This suggests a depositional sequence from Ni monoarsenide (nickeline) to Ni-Co diarsenide to cobalt triarsenides (i.e., a progressive increase in Co and As). The ore-forming elements (Co, Ni, Fe, and As) were originally leached from serpentinites by acidic magmatic fluids under moderately reducing conditions at high fluid/rock ratios. Deposition of ore minerals occurred in response to increasing pH and decreasing oxygen fugacity of the mineralizing fluids caused by mixing between the magmatic brines and meteoric water. The predominance of Co over Ni arsenide minerals in the Bou Azzer mineralization despite the high Ni/Co ratio of the serpentinites may be attributable to the different solubilities of Ni and Co in the hydrothermal system.
机译:摩洛哥的Bou Azzer的Co-Ni砷化物矿床是一种罕见的Co矿化类型。 Bou Azzer及其附近地区有几处Co-Ni-As-Au-Ag矿山活跃。 Co-Ni砷化物矿石在结构上受到控制并主要集中在沿新元古代蛇形化地幔橄榄岩,石英闪长岩和前寒武纪火山岩边界的石英碳酸盐岩脉内。它们具有不同的形状和大小。但是,所有矿床具有相同的一般矿物学,但其丰度从高到低依次为:砷化物,硫砷化物和硫化物。砷的矿物包括方钴矿(CoAs_3),方铁矿(CoAs_2),菱镁矿(FeAs_2),镍(NiAs),斜方锰矿(NiAS_2)和富S的Ni-Co二砷化物。在几乎所有矿床中,富钴矿均比富镍矿为主。在几乎所有研究的样品中,毒砂和少量的锗石都是主要的亚砷酸盐矿物。布兹矿中主要存在的硫化物矿物有硼铁矿(一种未确定的Cu-Zn硫化物),黄铜矿,黄铜矿,黄铁矿,黄铁矿,闪锌矿和四面体。平均含银量约为15%(重量)的金银合金通常与Ni-Co砷化物结合和/或散布在石英脉中。在富镍组合物中,具有高镍含量(约48 wt%)和非常低的Co含量(<= 0.1 wt%)的纯镍逐渐变成具有更少的Ni(约20 wt%)和非常高的Co(高达5%)的成分。 18重量%)。这表明从单砷化镍(镍线)到Ni-Co二砷化物到三砷化钴的沉积顺序(即,Co和As的逐渐增加)。成矿元素(Co,Ni,Fe和As)最初是在高流体/岩石比的条件下,在中等还原条件下,通过酸性岩浆流体从蛇纹岩中浸出的。矿物质的沉积是由于岩浆盐水和陨石水混合引起的pH值升高和矿化液的氧气逸度降低而发生的。尽管蛇纹石的Ni / Co比例很高,但Bou Azzer矿床中Co的含量高于砷化镍矿物,这可能是由于Ni和Co在水热系统中的溶解度不同所致。

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