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The giant Bayan Obo REE-Nb-Fe deposit, China: Controversy and ore genesis

机译:中国巴彦鄂博大型稀土-铌-铁矿床:争议和成因

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Bayan Obo ore deposit is the largest rare-earth element (REE) resource, and the second largest niobium (Nb) resource in the world. Due to the complicated element/mineral compositions and involving several geological events, the REE enrichment mechanism and genesis of this giant deposit still remains intense debated. The deposit is hosted in the massive dolomite, and nearly one hundred carbonatite dykes occur in the vicinity of the deposit. The carbonatite dykes can be divided into three types from early to late: dolomite, co-existing dolomite-calcite and calcite type, corresponding to different evolutionary stages of carbonatite magmatism based on the REE and trace element data. The latter always has higher REE content. The origin of the ore-hosting dolomite at Bayan Obo has been addressed in various models, ranging from a normal sedimentary carbonate rocks to volcano-sedimentary sequence, and a large carbonatitic intrusion. More geochemical evidences show that the coarse-grained dolomite represents a Mesoproterozoic carbonatite pluton and the fine-grained dolomite resulted from the extensive REE mineralization and modification of the coarse-grained variety. The ore bodies, distributed along an E–W striking belt, occur as large lenses and underwent more intense fluoritization and fenitization. The first episode mineralization is characterized by disseminated mineralization in the dolomite. The second or main-episode is banded and/or massive mineralization, cut by the third episode consisting of aegirine-rich veins. Various dating methods gave different mineralization ages at Bayan Obo, resulting in long and hot debates. Compilation of available data suggests that the mineralization is rather variable with two peaks at ~1400?and 440?Ma. The early mineralization peak closes in time to the intrusion of the carbonatite dykes. A significant thermal event at ca. 440?Ma resulted in the formation of late-stage veins with coarse crystals of REE minerals. Fluids involving in the REE-Nb-Fe mineralization at Bayan Obo might be REE-F-CO 2 -NaCl-H 2 O system. The presence of REE-carbonates as an abundant solid in the ores shows that the original ore-forming fluids are very rich in REE, and therefore, have the potential to produce economic REE ores at Bayan Obo. The Bayan Obo deposit is a product of mantle-derived carbonatitic magmatism at ca. 1400?Ma, which was likely related to the breakup of Columbia. Some remobilization of REE occurred due to subduction of the Palaeo-Asian oceanic plate during the Silurian, forming weak vein-like mineralization. Graphical abstract Display Omitted Highlights ? Carbonatite dyke and dolomite at Bayan Obo were derived from carbonatitic magma. ? Giant Bayan Obo REE-Nb-Fe deposit underwent two-stage mineralization. ? REE-rich ore-forming fluids laid a foundation to form giant REE mineralization.
机译:巴彦鄂博矿床是世界上最大的稀土元素(REE)资源和第二大铌(Nb)资源。由于复杂的元素/矿物成分并涉及若干地质事件,该大型矿床的稀土元素富集机制和成因仍存在激烈的争论。该矿床位于块状白云岩中,在矿床附近发生了近百个碳酸盐岩堤。碳岩岩脉从早期到晚期可分为三种类型:白云岩,共存的白云岩-方解石和方解石类型,根据REE和微量元素数据对应于碳酸盐岩岩浆作用的不同演化阶段。后者总是具有较高的REE含量。从正常的沉积碳酸盐岩到火山沉积序列,再到大量的碳酸盐岩侵入,巴扬奥伯的赋矿白云岩的成因已经有多种模型。更多的地球化学证据表明,粗粒白云岩代表了中元古代碳酸盐岩岩体,而细粒白云岩是由于广泛的稀土元素矿化和对粗粒变种的改造而产生的。沿E-W撞击带分布的矿体以大的晶状体形式出现,并经历了更强烈的氟化作用和特征化作用。第一阶段矿化的特征是白云岩中的分散矿化。第二个或主要片段是带状和/或大量矿化,由富含埃吉里因的静脉组成的第三集被削减。各种测年方法赋予了巴彦鄂博不同的矿化年龄,引起了长期而激烈的争论。现有资料汇编表明,该矿化作用变化较大,在〜1400?和440?Ma有两个峰值。早期的矿化峰在碳酸盐岩堤防侵入时及时关闭。约有一个重大的热事件。 440Ma导致后期脉的形成,并带有REE矿物的粗晶体。在巴彦奥伯的REE-Nb-Fe矿化中涉及的流体可能是REE-F-CO 2 -NaCl-H 2 O系统。 REE碳酸盐以丰富的固体形式存在于矿石中,这表明原始的成矿流体非常富含REE,因此有潜力在Bayan Obo生产经济的REE矿石。 Bayan Obo矿床是地幔衍生的岩性岩浆作用的产物。 1400马,这很可能与哥伦比亚解体有关。由于志留纪期间古亚洲洋板块的俯冲作用,稀土元素发生了一些迁移,形成了弱的脉状矿化作用。图形摘要显示省略的突出显示?巴彦鄂博的碳酸盐岩脉和白云岩均来自碳酸盐岩浆。 ?巨大的巴彦鄂博稀土铁-铌-铁矿床经历了两个阶段的矿化。 ?富含REE的成矿流体为形成巨大的REE矿化奠定了基础。

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