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首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >The influence of metal mobility on resource potential in circumneutral pH iron-rich copper mine waste rocks
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The influence of metal mobility on resource potential in circumneutral pH iron-rich copper mine waste rocks

机译:金属流动性对血管型富含铁富铜矿废物岩石资源潜力的影响

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摘要

Waste rocks from iron-oxide copper-gold (IOCG) deposits are dominated by Fe-bearing silicates and oxides, with only minor sulphides and potentially no pyrite. Hence, waste rock piles typically have circumneutral pH. However, oxidation of minor sulphides and Fe-bearing minerals can cause localised acidification at the mineral grain scale, especially where Fe oxidation and ferrihydrite precipitation is facilitated by bacteria. This study characterises the general biogeochemical system of waste rock piles at the Salobo IOCG mine, Brazil using a combination of biotic and abiotic leaching experiments on typical, weakly mineralised rocks, and observations of mineralogical changes and associated metal mobility in incipiently weathered, Cu-bearing overburden. Biotic experiments used a strain of the Fe- and S-oxidising Acidithiobacillus ferrooxidans subsp. cultured from the Salobo mine site. Most of the acid generated during oxidation of Salobo rocks is neutralised by alteration of labile Fesilicates, particularly biotite, chlorite, olivine and amphiboles. Copper in our laboratory experiments was mobilised into solution (up to 1000 mg/l) from disseminated Cu-sulphide minerals during this acidification, and reprecipitated nearby (on the m-scale) within the rock mass during neutralisation. Much of this Cu precipitated with the abundant ferrihydrite, with some Cu precipitating locally with Mn-oxides, suggesting that secondary ferrihydrite and Mn-oxides represent possible exploration targets associated with comparable near-surface, weathered targets. Primary microparticulate gold was found encapsulated in magnetite and Cu-sulphides, with the sulphide-bearing portion of gold liberated during oxidation. Magnetite only demonstrated minor alteration (pm-scale) during short-term acidic oxidation (months). All these alteration processes are expected to occur within the waste piles during storage at the site, and could enhance the metallurgical leachability of these low-grade rocks for future re-processing. In the meantime, the lack of large-scale acidification, and adsorption of mobilised trace metals to the abundant ferrihydrite will ensure that the waste rocks remain environmentally benign.
机译:来自氧化铁铜金(IOCG)沉积物的废弃物通过含Fe含硅酸盐和氧化物来支配,仅具有轻微的硫化物,并且可能是没有硫铁矿。因此,废岩桩通常具有圆周pH。然而,轻微硫化物和Fe承载矿物的氧化可能导致矿物粒度下的局部酸化,特别是其中通过细菌促进了Fe氧化和Ferrihydrite沉淀。本研究表征了萨洛博Iocg矿的废岩桩的一般生物地球化学系统,巴西使用生物和非生物浸出实验对典型,弱矿化的岩石的组合,以及在初生风化,Cu承载中的矿物学变化和相关金属移动性的观察覆盖层。生物实验使用了Fe和S氧化酸的菌株的酸酸脱氧衣毒剂患者。从萨罗巴矿场培养。通过改变不稳定的脂合物,特别是生物团,亚氯酸盐,橄榄石和倍差,从氧化物岩石氧化过程中产生的大多数酸。在我们的实验室实验中铜在该酸化期间从甲状腺硫化物矿物的溶液(高达1000mg / L)调入溶液(高达1000mg / L),并在中和期间在岩体内的附近(在M级)附近的附近。其中大部分Cu用丰富的Ferrihydite沉淀,一些Cu用Mn-氧化物局部沉淀出局部沉淀,表明次级Ferrihydrite和Mn-氧化物代表了与可比近表面,风化靶标相关的可能勘探靶标。发现初级微粒金在磁铁矿和Cu-硫化物中封装,用氧化期间释放的金的硫化物部分。磁铁矿仅在短期酸性氧化(月份)期间仅显示微小的改变(PM级)。所有这些改变过程预计将在现场储存期间发生在废物桩中,并且可以提高这些低级岩石的冶金可渗透性,以便进行未来重新处理。与此同时,缺乏大规模的酸化,并将动员的痕量金属吸附到丰富的Ferrihydite中,将确保废物岩石仍然是良性的。

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