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首页> 外文期刊>Economic geology and the bulletin of the Society of Economic Geologists >Plumbotectonic Evolution of the Ossa Morena Zone, Iberian Peninsula: Tracing the Influence of Mantle-Crust Interaction in Ore-Forming Processes
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Plumbotectonic Evolution of the Ossa Morena Zone, Iberian Peninsula: Tracing the Influence of Mantle-Crust Interaction in Ore-Forming Processes

机译:伊比利亚半岛奥萨莫雷纳地区的古构造演化:追踪成矿过程中地幔-壳相互作用的影响

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摘要

The Ossa Morena zone in the Variscan belt of the Iberian Peninsula is characterized by a complex geotectonic evolution. It hosts a Neoproterozoic-Paleozoic sequence that records the existence of two erogenic events (Cadomian and Variscan) separated by rift and stable platform stages (Middle Cambrian to Late Devonian). Volcanogenic and sediment-hosted massive sulfides, skarns, magmatic Ni-(Cu) deposits, synmetamorphic and intragranitic and perigranitic veins, and replacement bodies are related to different magmatic-hydrothermal systems ranging in age from 650 Ma to about 250 Ma. The lead isotope signatures from 26 different mineral deposits show variable ratios of ~(206)Pb/~(204)Pb (17.49-18.44), ~(207)W~(204)Pb (15.47-15.67) and (208)Pb/(204)Pb (37.37-38.78) that have low average mu, values (9.7) but high a) values (38.3). As a whole, the lead isotope data define an irregular cluster that plots around the Stacey and Kramers (1975) growth curve but clearly marks the existence of two main ore-forming events during Cadomian and Variscan times. The most radiogenic samples are from some minor Zn-Pb stratiform (sedimentary exhalative) mineralization. They are interpreted as having a dominantly crustal derivation (mu > 10.1) in which most of the lead was leached from a pre-Cadomian continental basement with a long crustal history. This basement has strong geochemical affinities with the oldest rocks of the Iberian terrane. However, most of the ore samples investigated plot below the Stacey and Kramers (1975) reference curve, indicating polyphase but variable mixing of lead from upper crustal and mantle lead reservoirs at the terrane scale. Clear mixing lines between the two end-member reservoirs are evident only in the oldest volcanic rock- and sedimentary rock-hosted massive sulfide deposits related to the Cadomian (late Neoproterozoic-Early Cambrian) magmatic arc; in the other deposit types lead isotopes have more restricted values. The crustal lead is interpreted as having been derived from ancient crust (2.1-2.5 Ga) and the derived shales (Montemolin Formation) that predated the Cadomian orogeny. The mantle-derived lead may have been derived from three different sources: Neoproterozoic tholeiitic orthoamphibolite, syn-Cadomian calc-alkaline andesite, or calc-alkaline metaluminous plutonic rocks intruded during the Variscan orogeny. The first two sources probably controlled the lead isotope signatures of the Cadomian massive sulfide deposits and the Variscan synmetamorphic veins.
机译:伊比利亚半岛瓦里斯卡纳带的奥萨莫雷纳地带以复杂的大地构造演化为特征。它拥有一个新元古代-古生代的序列,该序列记录了由裂谷和稳定的台地阶段(中寒武纪至晚泥盆世)分开的两个性成因事件(Cadomian和Variscan)的存在。火山成岩和沉积物蕴藏的块状硫化物,矽卡岩,岩浆镍(Cu)矿床,同形变质和粒内和粒周脉以及置换体与年龄从650 Ma到约250 Ma的不同岩浆热液系统有关。来自26个不同矿床的铅同位素特征显示〜(206)Pb /〜(204)Pb(17.49-18.44),〜(207)W〜(204)Pb(15.47-15.67)和(208)Pb的可变比率/(204)Pb(37.37-38.78)具有较低的平均mu值(9.7)但较高的a)值(38.3)。总体而言,铅同位素数据定义了一个不规则的簇,围绕着Stacey和Kramers(1975)生长曲线作图,但清楚地标明了在Cadomian和Variscan时期存在两个主要的成矿事件。放射源最多的样品来自一些较小的Zn-Pb层状(沉析性呼出气)矿化。它们被解释为具有主要的地壳派生作用(μ> 10.1),其中大部分铅是从具有悠久地壳历史的前加东亚大陆基底中浸出的。该地下室与伊比利亚地层最古老的岩石具有很强的地球化学亲和力。但是,大多数被调查的矿石样品都在Stacey and Kramers(1975)参考曲线下方绘制,表明地层范围内的上地壳和地幔铅储层中的铅是多相的,但混合不定。仅在最古老的火山岩和沉积岩中存在着与Cadomian(晚新元古代-早寒武纪)岩浆弧有关的块状硫化物矿床,才可以看到两个末端储层之间清晰的混合线。在其他矿床类型中,铅同位素的限制值更高。地壳铅被解释为源自古代地壳(2.1-2.5 Ga)和早于卡多马造山运动的衍生页岩(蒙特莫林组)。来源于地幔的铅可能来自三种不同的来源:新元古代的生辉石正闪石,同加多福钙碱性安山岩或钙碱性金属质深部岩石在瓦里斯卡造山运动中侵入。前两个来源可能控制了Cadomian块状硫化物矿床和Variscan同形变脉的铅同位素特征。

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