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Unique PGE–Cu–Ni Noril’sk Deposits, Siberian Trap Province: Magmatic and Tectonic Factors in Their Origin

机译:西伯利亚陷阱省独特的PGE-Cu-Ni Noril'sk矿床:成因岩浆和构造因素

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The unique and very large PGE–Cu–Ni Noril’sk deposits are located within the Siberian trap province, posing a number of questions about the relationship between the ore-forming process and the magmatism that produced the traps. A successful answer to these questions could greatly increase the possibility of discovering new deposits in flood basalt provinces elsewhere. In this contribution, we present new data on volcanic stratigraphy and geochemistry of the magmatic rocks in the key regions of the Siberian trap province (Noril’sk, Taimyr, Maymecha-Kotuy, Kulyumber, Lower Tunguska and Angara) and analyze the structure of the north part of the province. The magmatic rocks of the Arctic zone are characterized by variable MgO (3.6–37.2 wt %) and TiO 2 (0.8–3.9 wt %) contents, Gd/Yb (1.4–6.3) and La/Sm (2.0–10.4) ratios, and a large range of isotopic compositions. The intrusions in the center of the Tunguska syneclise and Angara syncline have much less variable compositions and correspond to a “typical trap” with MgO of 5.6–7.2 wt %, TiO 2 of 1.0–1.6 wt %, Gd/Yb ratio of 1.4–1.6 and La/Sm ratio of 2.0–3.5. This compositional diversity of magmas in the Arctic zone is consistent with their emplacement within the paleo-rift zones. Ore-bearing intrusions (the Noril’sk 1, Talnakh, Kharaelakh) are deep-situated in the Igarka-Noril’sk rift zone, which has three branches, namely the Bolsheavamsky, Dyupkunsky, and Lower Tunguska, that are prospected for discovering new deposits. One possible explanation for the specific position of the PGE–Cu–Ni deposits is accumulation of sulfides in these long-lived zones from the Neoproterozoic to the Mesozoic era during magmatic and metamorphic processes. Thus, trap magmatism, itself, does not produce large deposits, but mobilizes earlier formed sulfide segregations in addition carrying metals in the original magmas. These deposits are the results of several successive magmatic events, in which emplacement of the traps was the final event.
机译:独特而巨大的PGE-Cu-Ni Noril'sk矿床位于西伯利亚圈闭省内,这对成矿过程与产生圈闭的岩浆作用之间的关系提出了许多问题。对这些问题的成功回答可能会大大增加在其他地方的洪水玄武岩省中发现新矿床的可能性。在这项贡献中,我们提供了西伯利亚圈闭省重点地区(诺里尔斯克,泰米尔,梅梅恰-科图伊,库留姆伯,下通古斯卡和安加拉)岩浆岩的火山地层和地球化学新数据,并分析了该岩体的结构。该省北部。北极地区的岩浆岩具有以下特征:MgO(3.6–37.2 wt%)和TiO 2(0.8–3.9 wt%)含量,Gd / Yb(1.4–6.3)和La / Sm(2.0-10.4)比,以及各种同位素组成通古斯突触和安加拉向斜中心的侵入物的成分变化要少得多,相当于一个“典型陷阱”,MgO为5.6–7.2 wt%,TiO 2为1.0–1.6 wt%,Gd / Yb比为1.4– 1.6和La / Sm比为2.0-3.5。北极地区岩浆的这种组成多样性与其在古裂谷带中的位置一致。含矿入侵(Noril'sk 1,Talnakh,Kharaelakh)位于Igarka-Noril'sk裂谷带的深处,该裂谷带具有三个分支,即Bolsheavamsky,Dyupkunsky和Lower Tunguska,有望发现新的存款。关于PGE-Cu-Ni矿床特定位置的一种可能解释是在岩浆和变质过程中,从新元古代到中生代这些长寿命区域中的硫化物积累。因此,圈闭岩浆作用本身不会产生大量沉积物,但会动员较早形成的硫化物偏析,并在原始岩浆中携带金属。这些矿床是几次连续岩浆事件的结果,其中圈闭的形成是最后的事件。

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