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Highly Siderophile and Strongly Chalcophile Elements in Magmatic Ore Deposits

机译:岩浆矿床中的高度亲铁元素和强嗜硫元素

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An ore deposit by definition must be economically viable, that is to say it must contain sufficient material at high enough grade to make it possible to mine and process it at a profit (Bates and Jackson 1987). This requires the elements to be collected and concentrated by some phase and for them to be deposited close to the surface of the earth. At the oxygen fugacities found in the crust, native Fe is not normally stable and thus the highly siderophile elements (defined as Ru, Rh, Pd, Re, Os, Ir, Pt, and Au) cannot behave as siderophile elements except in rare cases such as on Disko Island (Klock et al. 1986) where the magma is sufficiently reduced for native Fe to be present. However, if mafic magmas become saturated in a base-metal-sulfide liquid, the highly siderophile elements behave as highly chalcophile elements (Table 1). Thus these elements are generally found in association with base-metal-sulfide minerals which crystallized from a magmatic sulfide liquid, namely pyrrhotite, pentlandite, chalcopyrite, cubanite±pyrite. An exception to this is Au. Although Au is strongly chalcophile and is produced as a by-product from many platinum-group element (PGE) deposits (Table 2), most primary Au deposits consist of native Au (Groves et al. 1998). These will not be discussed in this chapter.
机译:从定义上讲,矿石矿床必须在经济上可行,也就是说,它必须包含足够高品位的足够材料,以便有可能开采和加工利润(Bates and Jackson 1987)。这就要求元素被某一相收集和浓缩,并使其沉积在地球表面附近。在地壳中的氧气逸出状态下,天然铁通常不稳定,因此,除少数情况外,高度亲铁元素(定义为Ru,Rh,Pd,Re,Os,Ir,Pt和Au)不能像亲铁元素那样起作用。例如迪斯科岛(迪斯科岛)(Klock等,1986),那里的岩浆被充分还原,使得天然铁存在。但是,如果铁镁质岩浆在贱金属硫化物液体中变得饱和,则高度亲铁元素将表现为高度亲硫元素(表1)。因此,通常发现这些元素与从岩浆硫化物液体中结晶的贱金属硫化物矿物结合,即黄铁矿,方铁矿,黄铜矿,绿铅矿±黄铁矿。金的例外。尽管金具有很强的亲硫性,并且是许多铂族元素(PGE)沉积物的副产品(表2),但大多数初级金沉积物都是天然金(Groves等,1998)。这些将不在本章中讨论。

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