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Controls on the Formation of Contact-Type Platinum-Group Element Mineralization in the East Bull Lake Intrusion

机译:东牛湖入侵中接触型铂族元素矿化形成的控制

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摘要

The East Bull Lake intrusion is the type example of a series of 2.48 to 2.49 Ga layered mafic intrusions that developed within the rifted southern margin of the Superior craton, central Ontario. The East Bull Lake intrusion contains contact-type PGE mineralization, e.g., strata-bound, PGE-rich, disseminated sulfide mineralization occurring within 200 to 300 m of the contact with footwall and sidewall units. Although the mineralization locally occurs in massive plagioclase cumulates (anorthosite zone), most of the sulfides are concentrated within an underlying, heterolithic, inclusion-rich unit (inclusion-bearing zone) that grades into an intrusive breccia. Disseminated sulfides also occur in fine-grained gabbroic veins within brecciated footwall rocks (border zone). Geochemical characteristics of the contact-type sulfide mineralization and its host rocks include: (1) high-average Pd abundances throughout the East Bull Lake intrusion, including an average of ca. 200 ppb in the Lower Series; (2) low-average S contents (typically <1 percent); (3) average pd/pt approx 3 and Cu/Ni approx 3; and (4) PGE concentrations and relative abundances similar to disseminated sulfide mineralization from the contact environment of other mafic-ultramafic intrusions.Contact-type PGE mineralization in the East Bull Lake intrusion reflects flow-enhanced gravitational set-thug of a Cu-rich sulfide liquid followed by local fractionation of Ni-rich monosulfide solid solution to produce minor amounts of Cu- and Pt-rich, residual sulfide liquid. Most of the observed compositional variation in the sulfides can be modeled using variable silicate liquid/sulfide liquid mass ratios. Field and geochemical observations suggest that the parental magmas to the mineralized parts of the East Bull Lake intrusion were S saturated and PGE rich at the time of their emplacement. These fertile parent magmas most likely originated as buoyant, feldspathic residual magmas that escaped from a deepen more primitive subchamberAlthough first described from the East Bull Lake intrusion, contact-type PGE mineralization is now recognized in all of the major East Bull Lake suite intrusions. Similar styles of magmatic sulfide mineralization are developed in the contact environments of the Bushveld Igneous Complex (Platreef deposits) and the Duluth Complex, Minnesota (e.g., Dunka Road deposit). These contact-type deposits are part of the family of "basal accumulation" magmatic sulfide deposits. The economics of low sulfide tenor, contact-type, PGE-Cu-Ni mineralization, such as that developed in the East Bull Lake intrusion will be most favorable in systems in which (1) the parent magmas possessed high initial PGE tenors and reached S saturation prior to emplacement; (2) the parent magmas experienced vigorous convection in the early stages of chamber development; and (3) segregated sulfide was not diluted by coprecipitating silicate minerals-a scenario that is most likely to occur in feldspathic magmas in which plagioclase is the principal high-temperature liquidus mineral.
机译:East Bull Lake入侵是一系列2.48至2.49 Ga层状镁铁质入侵的典型例子,这些入侵在安大略省中部上等克拉通的裂谷南部边缘发育而成。 East Bull Lake侵入体包含接触型PGE矿化作用,例如,与底壁和侧壁单元接触200-300 m内发生的地层约束,富含PGE的弥散性硫化物矿化作用。尽管矿化局部发生在大量斜长石堆积(钙铁斜长岩带)中,但大多数硫化物都集中在下伏的,多块的,富含夹杂物的单元(夹杂物带)中,从而变成侵入角砾岩。弥散的硫化物也发生在角砾状下盘岩石(边界带)内的细粒辉长岩脉中。接触型硫化物矿化及其宿主岩石的地球化学特征包括:(1)整个东牛湖侵入区的高平均Pd丰度,平均大约为。下层系列为200 ppb; (2)低平均S含量(通常<1%); (3)平均pd / pt约为3,Cu / Ni约为3; (4)PGE的浓度和相对丰度与其他镁铁质-超镁铁质侵入体接触环境中的弥散性硫化物矿化相似。East Bull Lake侵入体中的接触型PGE矿化反映了富含铜的硫化物的流动重力引力。液体,然后局部分馏富镍的单硫化物固溶体,以产生少量的富铜和铂的残留硫化物液体。可以使用可变的硅酸盐液体/硫化物液体质量比来模拟大多数观察到的硫化物组成变化。野外和地球化学观察表明,东牛湖侵入矿化部分的母岩浆在其位置时为S饱和且富含PGE。这些肥沃的母岩浆很可能起源于从更深的原始子室中逸出的浮力,长石质残留岩浆。尽管首先描述了East Bull Lake侵入,但现在在所有East Bull Lake套房的所有侵入中都认识到接触型PGE矿化作用。在Bushveld火成岩复合体(Platreef矿床)和明尼苏达州的Duluth矿床(例如Dunka Road矿床)的接触环境中,开发出了类似样式的岩浆硫化物成矿作用。这些接触型矿床是“基础堆积”岩浆硫化物矿床家族的一部分。低硫化物,接触型,PGE-Cu-Ni矿化的经济性(例如在东牛湖入侵中发展的)在以下系统中最为有利:(1)母岩浆具有较高的初始PGE品位并达到S放置前饱和; (2)母岩浆在腔室发育的早期经历了强烈的对流; (3)偏析的硫化物没有通过共沉淀硅酸盐矿物来稀释-这种情况最可能发生在以斜长石为主要高温液相线矿物的长石岩浆中。

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