首页> 外文期刊>Economic geology and the bulletin of the Society of Economic Geologists >Supergene Alteration of Primary Ore Assemblages from Low-Sulfidation Au-Ag Epithermal Deposits at Pongkor, Indonesia, and Nazareno, Peru
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Supergene Alteration of Primary Ore Assemblages from Low-Sulfidation Au-Ag Epithermal Deposits at Pongkor, Indonesia, and Nazareno, Peru

机译:来自印度尼西亚庞哥和秘鲁纳扎雷诺的低硫化金银超热矿床原矿组合的超基因蚀变

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摘要

The textures and mineralogical assemblages of high-grade ore samples from the low-sulfidation -Au-Ag epithermal deposits of Pongkor (2 Ma; West Java, Indonesia) and Nazareno (10 Ma; Cordillera Shila. southern Peru) were studied to investigate processes related to post-depositional alteration of primary mineral parageneses. Both deposits are characterized by a late primary high-grade base and precious metal stage composed of chalcopyrite-sphalerite-galena-pyrite-polybasite-pearceite-tennantite-tetrahedrite-electrum. Minerals of the polybasite-pearceite series the main Ag carriers, were found to be transformed into acanthite, Acanthite was also found locally in association with native silver, as a replacement product of base metal sulfides, as veinlets, alternating rhythmically with supergene iron oxyhydroxides replacing pyrite, as well as associated with barite, iron oxyhydroxides and covellite is boxwork fillings Primary electrum (grains with a composition of about Au_(0.6)Ag_(0.4) are partially replaced by Au-Ag sulfide locally identified as uytenbogaardtite (Ag_3AuS_2), and/or by acanthite, with both of the replacing minerals commonly associated with vermicular electrum of a greater fineness (up to Au_(0.8)Ag_(0.2). The occurrence of the replacement textures near the present-day surface and the associated second in minerals, strongly suggests a supergene origin for the Au and Ag sulfide phases. The comparison of Pongkor and Nazareno also suggests that supergene remobilization of Au and Ag is geochemically significant and can occur in widely differing morphological and climatic contexts
机译:研究了Pongkor(2 Ma;印度尼西亚西爪哇省)和Nazareno(10 Ma; Cordillera Shila,秘鲁南部)低硫化度-Au-Ag超热矿床中的高品位矿石样品的质地和矿物学组合,以研究过程。与主要矿物亚种的沉积后改变有关。两种矿床的特征都是后期的初级高品位贱金属和贵金属阶段,其由黄铜矿-闪锌矿-方铅矿-黄铁矿-多钡铁矿-白云母-球铁矿-四面体-电构成。发现主要Ag载体为多辉石-白云母系列的矿物已转变为a石,还与天然银结合在当地发现了can石,作为贱金属硫化物的替代产品,如细矿,有节奏地与超基因羟基氧化铁替代黄铁矿以及重晶石,羟基氧化铁和Covellite都是盒装馅料初级电子(组成大约为Au_(0.6)Ag_(0.4)的谷物被部分被称为Uytenbogaardtite(Ag_3AuS_2)的Au-Ag硫化物替代,并且/或通过尖晶石,这两种替代矿物通常与较高的蠕虫elect有关(最高为Au_(0.8)Ag_(0.2)。在当今表面附近发生替代织构,并在矿物中产生第二种替代矿物) Pongkor和Nazareno的比较也表明Au和Ag的超基因转移是具有化学意义,可以在形态和气候背景广泛的环境中发生

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