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首页> 外文期刊>Chemical geology >Olivine and sulfur isotopic compositions of the Uitkomst Ni-Cu sulfide ore-bearing complex, South Africa: evidence for sulfur contamination and multiple magma emplacements
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Olivine and sulfur isotopic compositions of the Uitkomst Ni-Cu sulfide ore-bearing complex, South Africa: evidence for sulfur contamination and multiple magma emplacements

机译:南非Uitkomst Ni-Cu硫化物矿床中的橄榄石和硫同位素组成:硫污染和多种岩浆沉积的证据

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The Uitkomst Complex in northern South Africa is host to a Ni-Cu deposit containing a minerable reserve of 2.9 Mt massive ore with grades of 2% Ni, 1% Cu and 6 ppm Pt + Pd and an indicated plus inferred resource of 98 Mt disseminated ore with grades of 0.6% Ni, 0.2% Cu and I ppm Pt + Pd. Based on similar age and composition to that of the Bushveld Complex, the Uitkomst Complex is believed by some investigators to be a satellite body of the Bushveld Complex. It has a tubular shape with an exposed surface area of about 0.8 X 8 km and a thickness of up to 1000 m, apparently exploiting the bedding planes of gently dipping footwall sediments that include shale, quartzite and dolomite. The Uikomst Complex comprised of stratiform mafic and ultramafic rock units that from base to top include gabbro, sulfide-mineralized harzburgite, unmineralized harzburgite, pyroxenite, gabbronorite and gabbro. The compositions of olivine from different rock units are significantly different. Olivines from the gabbronorite unit are highly fractionated, containing < 30 mol% Fo (forsterite, Mg2SiO4) and < 300 ppm Ni. Olivines from the underlying pyroxenite and harzburgite units are much more primitive, containing 86-91 mol% Fo. Abrupt changes in the contents of Ni in olivine occur within the pyroxenite unit, and between the mineralized and unmineralized harzburgite units. The contents of Ni in olivine from the unmineralized harzburgite unit are between 2900 and 3600 ppm. The contents of Ni in olivine from the underlying mineralized harzburgite units are similar to 1500 ppm lower. Olivines from the lower part of the pyroxenite unit are similar to olivines from the underlying harzburgite unit, whereas olivines from the upper part of the pyroxenite unit contain much lower Ni (< 600 ppm). Numerical modelling suggests that the strikingly different compositions of olivine are related to different parental magmas with different MgO/FeO ratios and/or Ni contents. The delta(34)S values of the basal gabbro and umnineralized rock units range from -0.9% to 2.6%, which are similar to typical mantle values ( similar to 0+/-3%). In contrast, the delta(34)S values of the sulfide ores in the harzburgite units are significantly lower, varying between similar to 2.6% and similar to 7.1%. The low delta(34)S values of the sulfide ores indicate addition of 34 S-depleted crustal sulfur. The obvious sources of such crustal sulfur are the Malmani dolomite and the Timebal Hill shale that contain pyrite with negative delta(34)S values up to -11% and -18%, respectively. Sulfide saturation in the magma of the mineralized harzburgite units is thought to have resulted from addition of the crustal sulfur. The resulting immiscible sulfide liquid droplets were then concentrated in the base of the magma channel. Some of the sulfide liquid was expelled into the basal gabbro that separated the active magma channel from the footwall quartzite. New magma then entered the channel, displacing most of the resident magma to form the unmineralized harzburgite, The overlying pyroxenite, gabbronorite and gabbro units formed either by in situ differentiation of the same magma giving rise to the underlying unmineralized harzburgite or by subsequent emplacement of a more evolved magma. (C) 2002 Elsevier Science B.V All rights reserved. [References: 20]
机译:南非北部的Uitkomst矿场拥有一个镍铜矿床,该矿床包含可开采的2.9吨块状矿石,品位为2%镍,1%铜和6 ppm铂+钯,标明可推断的资源量为98吨镍品位为0.6%镍,0.2%铜和I ppm Pt + Pd。基于与布什维尔德综合体相似的年龄和组成,一些研究人员认为,维特科姆斯特综合体是布什维尔德综合体的附属机构。它呈管状,暴露表面积约为0.8 X 8 km,厚度最大为1000 m,显然利用了页岩,石英岩和白云岩等缓蚀底盘沉积物的顺层平面。 Uikomst Complex由层状镁铁质和超镁铁质岩石单元组成,从底部到顶部包括辉长岩,硫化物矿化的Harzburgite,未矿化的Harzburgite,辉石,辉长辉石和辉长岩。不同岩石单元的橄榄石成分明显不同。来自辉长岩单元的橄榄石被高度分馏,包含小于30 mol%的Fo(镁橄榄石,Mg2SiO4)和小于300 ppm的镍。来自下层的辉石岩和钙锰矿单元的橄榄石更为原始,含有86-91 mol%的Fo。橄榄石中镍含量的突然变化发生在辉石岩单元内,以及矿化和未矿化的钙锰矿单元之间。未矿化的Harzburgite单元中橄榄石中的Ni含量在2900至3600 ppm之间。底层矿化的Harzburgite单元中橄榄石中的Ni含量降低了1500 ppm。辉石岩单元下部的橄榄石与下伏的辉石岩单元的橄榄石相似,而辉石岩单元上部的橄榄石含镍量低得多(<600 ppm)。数值模拟表明,橄榄石的显着不同组成与具有不同MgO / FeO比和/或Ni含量的不同父母岩浆有关。基底辉长岩和未矿化岩石单元的delta(34)S值在-0.9%至2.6%的范围内,与典型的地幔值相似(类似于0 +/- 3%)。相反,在harzburgite单元中硫化矿的delta(34)S值明显较低,介于2.6%和7.1%之间。硫化物矿石的低delta(34)S值表明添加了34 S贫乏的地壳硫。这种地壳硫的明显来源是马尔马尼白云岩和Timebal Hill页岩,其中的黄铁矿具有负δ(34)S值,分别高达-11%和-18%。矿化的哈兹伯格岩单元岩浆中的硫化物饱和被认为是由于添加了地壳硫造成的。然后将所得的不混溶的硫化物液滴浓缩在岩浆通道的底部。一些硫化物液体被排入基底辉长岩中,从而使活动岩浆通道与下盘石英岩分离。然后,新的岩浆进入该通道,取代了大部分常驻岩浆,形成了未矿化的Harzburgite。上覆的辉石岩,辉长辉石和辉长岩单元是由同一岩浆的原位分化形成的,从而形成了下伏的未矿化的Harzburgite。更进化的岩浆。 (C)2002 Elsevier Science B.V保留所有权利。 [参考:20]

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