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Gold mineralization in archaean cherts and iron-formations : a review of the economic geology.

机译:古生的硅质硅质岩和铁矿中的金矿化:经济地质学评论。

摘要

The distribution of gold in igneous rocks and minerals is described and discussed. Not all the gold in igneous rocks is contained within early formed crystal lattices. Evidence that gold can be associated with late stage crystallizing phases is described. It is concluded that some of the gold in hydrothermal and volcanogenic deposits may have come from a primary magmatic source rather than having been leached from solid country rock. Gold is probably transported as chloride complexes at temperatures greater than about 300°C. At lower temperatures it is probably transported with other metals as sulphide and thio-sulphide complexes. The precipitation of gold from the transporting medium is brought about by changes in the physico-chemical conditions within that medium. Decrease in pressure isprobably not a major cause of precipitation in volcanogenic environments. The geology of volcanogenic iron-formations is described and discussed, relative to the development of greenstone belts. Oxide facies iron-formations were formed in shallow oxidizing environments. They are associated withvolcanogenic and clastic sediments. Sulphide facies iron-formations were precipitated in the deeper parts of geosynclinal structures. They are associated with mafic and ultramafic rocks similar to modern oceanic volcanic assemblages. Carbonate facies iron-formations were deposited in the regions between oxide facies and sulphide facies. Other banded iron-formations are found associated with base metal massive sulphide deposits related to arctypevolcanic centres. These deposits are found in the regions where carbonate facies iron-formations were formed. Exploration for and exploitation of gold deposits in Archaean iron-formations are discussed. Geochemical exploration programmes are aided by the association of gold with trace amounts of base metals. Geophysical exploration methods that can be employed include magnetometer, I.P. andE.M. surveys. The metallurgical treatment of the ores should include "roasting" because a large proportion of the gold occurs as submicroscopic grains within sulphide mineral crystals.
机译:描述并讨论了金在火成岩和矿物中的分布。并非火成岩中的所有黄金都包含在早期形成的晶格中。描述了金可以与后期结晶相相关的证据。结论是,热液和火山成矿中的某些金可能来自岩浆的主要来源,而不是从坚硬的岩石中浸出的。金可能以氯化物络合物的形式在高于约300°C的温度下运输。在较低温度下,它可能与其他金属(如硫化物和硫代硫化物)一起运输。传输介质中金的沉淀是由该介质中物理化学条件的变化引起的。压力下降可能不是造成火山环境中沉淀的主要原因。相对于绿岩带的发展,对火山成因的铁矿地质进行了描述和讨论。在浅层氧化环境中形成了氧化物相铁形成。它们与火山沉积和碎屑沉积有关。硫化物相的铁形成沉淀在地斜构造的较深部分。它们与类似于现代海洋火山组合的镁铁质和超镁铁质岩石有关。碳酸盐相铁形成沉积在氧化物相和硫化物相之间的区域。发现其他带状铁形成与与弧型火山中心有关的贱金属块状硫化物矿床有关。这些矿床发现在碳酸盐相铁形成的地区。讨论了古生铁矿中金矿的勘探和开采。黄金与痕量贱金属的结合有助于地球化学勘探计划。可以采用的地球物理勘探方法包括磁力计I.P.和E.M.调查。矿石的冶金处理应包括“焙烧”,因为很大一部分金是作为亚显微晶粒出现在硫化物矿物晶体中的。

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  • 作者

    Bellamy R.E.S;

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  • 年度 1979
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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