首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Geochemical signatures of uranium oxides in the Lufilian belt: From unconformity-related to syn-metamorphic uranium deposits during the Pan-African orogenic cycle
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Geochemical signatures of uranium oxides in the Lufilian belt: From unconformity-related to syn-metamorphic uranium deposits during the Pan-African orogenic cycle

机译:鲁非勒带中铀氧化物的地球化学特征:在泛非造山运动周期中,从与不整合有关的铀到同变质铀矿

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摘要

The Pan-African Lufilian belt (Zambia and Democratic Republic of Congo) is known for its world-class copper and cobalt deposits. In addition, the Lufilian Copperbelt hosts several uranium occurrences concentrated within de formed siliciclastic rocks of the basal Neoproterozoic Katanga Supergroup. We report LA-ICPMS and EMP analyses of the rare earth element (REE) and yttrium (Y) abundances (designated as the REY signatures) of uranium oxides from two uranium mineralizing events of the Lufilian belt previously dated at 652 ± 8 Ma and 530 ± 6 Ma by the U-Pb method on uraninite. Uranium oxides dated at ca. 650 Ma from the External fold-and-thrust belt are charac terized by (i) bell shape REE patterns centered on middle REE (MREE), (ii) positive europium (Eu) anomalies and (iii) relatively low Y contents. In contrast, uranium oxides dated at ca. 530 Ma from the Domes region are character ized by (i) REE patterns but with a less pronounced light REE (LREE) fractionation, (ii) negative Eu anomalies and (iii) higher Y contents. Moreover, the External fold-and-thrust belt also contains uranium mineralization dated at ca. 530 Ma having the same characteristics as the ca. 530 Ma uranium oxides from the Domes region (a moderately fractionated REE pattern and a negative Eu anomaly). As REY signatures are known to reflect mineralizing processes, the distinct geochemical signatures of the two uranium oxide generations (ca. 650 Ma and ca. 530 Ma) provide meaningful information about the uranium cycle during the Pan-African orogeny. Compared to the REY signatures of the known worldwide uranium de posit types, the REY signature of uranium oxides dated at ca. 650 Ma of the External fold-and-thrust belt is similar to the REE patterns from unconformity-related U deposits (Athabasca in Canada and Kombolgie in Australia). Uranium oxides of the Domes region and some of the External fold-and-thrust belt display similar characteristics to syn-metamorphic U deposit (Mistamisk in Canada). Accordingly, we propose that the two stages of uranium oxide crystallizations within the Lufilian belt, at ca. 650 and ca. 530 Ma, occurred under distinct physico-chemical conditions. The first stage, at ca. 650 Ma, may be related to late diagenesis hydro-thermal processes, at the basement/cover interface, with the circulation of highly saline basinal brines linked to evaporites of the Roan Group. This Pan-African unconformity-related uranium deposit is the youngest of this type described to date. The second stage may be connected to metamorphic fluid circulations, at about 530 Ma, during the Lufilian orogeny in the Domes region and also in the External fold-and-thrust belt.
机译:泛非卢菲勒带(赞比亚和刚果民主共和国)以其世界级的铜和钴矿床而闻名。此外,卢菲利安铜矿带还拥有几处铀矿,这些铀矿集中在基底新元古代加丹加超群的变形硅质碎屑岩中。我们报告了来自Lufilian带的两次铀矿化事件的铀氧化物的稀土元素(REE)和钇(Y)丰度(指定为REY签名)的LA-ICPMS和EMP分析,该事件先前于652±8 Ma和530 U-Pb方法对尿素的含量为±6 Ma。铀氧化物的日期约为来自外部褶皱-冲断带的650 Ma具有以下特征:(i)以中间REE(MREE)为中心的钟形REE模式,(ii)positive(Eu)正异常和(iii)相对较低的Y含量。相反,铀氧化物的年代大约为来自Domes地区的530 Ma的特征是(i)REE模式,但轻REE(LREE)分馏不明显,(ii)负Eu异常和(iii)Y含量较高。此外,外部褶皱冲断带也包含铀矿化,其年代约为。 530 Ma具有与ca相同的特性。来自Domes地区的530 Ma铀氧化物(中等分度的REE模式和负Eu异常)。由于已知REY签名反映了成矿过程,所以两个铀氧化物世代(约650 Ma和约530 Ma)的独特地球化学特征提供了有关泛非造山过程中铀循环的有意义的信息。与世界范围内已知的铀矿床类型的REY签名相比,铀氧化物的REY签名可追溯到大约。外褶皱冲断带的650 Ma与不整合相关的U矿床(加拿大的Athabasca和澳大利亚的Kombolgie)的REE模式相似。穹顶区的氧化铀和一些外部褶皱-冲断带显示出与准变质铀矿床(加拿大米斯塔米斯克)相似的特征。因此,我们建议在Lufilian带内铀氧化物结晶的两个阶段,大约在。 650和530 Ma,发生在不同的物理化学条件下。第一阶段,大约在650 Ma可能与地下/盖层界面的成岩作用后期热液作用有关,高盐度盆地水的循环与罗恩集团的蒸发物有关。迄今为止,与泛非不整合有关的铀矿床是此类中最年轻的。第二阶段可能与穹顶地区以及外部褶皱冲断带的卢菲利造山运动期间约530 Ma的变质流体循环有关。

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