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Vein graphite deposits: geological settings, origin, and economic significance

机译:静脉石墨矿床:地质背景,成因和经济意义

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摘要

Graphite deposits result from the metamorphism of sedimentary rocks rich in carbonaceous matter or from precipitation from carbon-bearing fluids (or melts). The latter process forms vein deposits which are structurally controlled and usually occur in granulites or igneous rocks. The origin of carbon, the mechanisms of transport, and the factors controlling graphite deposition are discussed in relation to their geological settings. Carbon in granulite-hosted graphite veins derives from sublithospheric sources or from decarbonation reactions of carbonate-bearing lithologies, and it is transported mainly in CO2-rich fluids from which it can precipitate. Graphite precipitation can occur by cooling, water removal by retrograde hydration reactions, or reduction when the CO2-rich fluid passes through relatively low-fO2 rocks. In igneous settings, carbon is derived from assimilation of crustal materials rich in organic matter, which causes immiscibility and the formation of carbon-rich fluids or melts. Carbon in these igneous-hosted deposits is transported as CO2 and/or CH4 and eventually precipitates as graphite by cooling and/or by hydration reactions affecting the host rock. Independently of the geological setting, vein graphite is characterized by its high purity and crystallinity, which are required for applications in advanced technologies. In addition, recent discovery of highly crystalline graphite precipitation from carbon-bearing fluids at moderate temperatures in vein deposits might provide an alternative method for the manufacture of synthetic graphite suitable for these new applications.
机译:富含碳质沉积岩的变质作用或含碳流体(或熔体)产生的沉淀是造成石墨沉积的原因。后一个过程形成了脉状沉积物,这些沉积物在结构上受到控制,通常发生在粒状或火成岩中。讨论了碳的起源,运输的机理以及控制石墨沉积的因素,以及它们的地质背景。颗粒状石墨脉中的碳源自岩下层来源或含碳酸盐岩岩性的脱碳反应,并且主要在富含CO2的流体中运输并从中沉淀。石墨沉淀可通过冷却,逆向水合反应除水或富CO2流体通过相对较低的fO2岩石而减少时发生。在火成岩环境中,碳源自富含有机物的地壳材料的同化,这导致不溶混并形成富碳流体或熔体。这些火成岩沉积物中的碳以CO2和/或CH4的形式运输,并最终通过冷却和/或影响主体岩石的水化反应以石墨形式沉淀。不依赖于地质环境,脉状石墨的特征在于其高纯度和结晶性,这是先进技术应用所必需的。另外,最近发现在中等温度下从含碳流体中在脉状沉积物中沉淀出高结晶度的石墨可能为制造适合这些新应用的合成石墨提供另一种方法。

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