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首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Origin of nelsonite and Fe-Ti oxides ore of the Damiao anorthosite complex, NE China: Evidence from trace element geochemistry of apatite, plagioclase, magnetite and ilmenite
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Origin of nelsonite and Fe-Ti oxides ore of the Damiao anorthosite complex, NE China: Evidence from trace element geochemistry of apatite, plagioclase, magnetite and ilmenite

机译:Nelsonite和Fe-Ti氧化物矿石的起源,Ne中国的Damiao Hyorporyosite综合体:来自磷灰石,Plagioclase,磁铁矿和Ilmenite的痕量元素地球化学的证据

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Nelsonite and Fe-Ti oxides ore are common in Proterozoic massif-type anorthosites and layered intrusions. Their geneses have long been controversial, with existing hypotheses including liquid immiscibility between Si-rich and Fe-Ti-P-rich melts and gravitational fractionation among apatite, magnetite, ilmenite and silicates. In this paper, we report detailed field geology and mineral geochemical studies of the nelsonite and Fe-Ti oxides ore from the Damiao anorthosite complex, NE China. Geological observations indicate that the nelsonite and Fe-Ti oxides ore occur as irregularly inclined stratiform-like or lensoid or veins, and are in sharp contact with the anorthosite and gabbronorite. The widespread veins and lenses structure of the Damiao nelsonite and Fe-Ti oxides ore in the anorthosite indicates their immiscibility-derived origin. The apatite in the nelsonite and gabbronorite shows evolution trends different from that in the gabbronorite in the diagrams of Sr versus REEs and Eu/Eu*, suggesting that petrogenesis of the nelsonite and gabbronorite is different from the gabbronorite. Compared with the gabbronorite, the nelsonite and Fe-Ti oxides ore have magnetite high in Cr, plagioclase high in Sr and low in An, and apatite high in Sr, low in REEs with negative Eu anomaly. The evidence permits us to propose that the Damiao Fe-Ti oxides ore/nelsonite and gabbronorite were derived from different parental magmas. The gabbronorite was formed by solidification of the interstitial ferrodioritic magma in the anorthosite, which was the residual magma after extensive plagioclase and pyroxene crystallization and was carried upward by the plagioclase crystal mesh. In contrast, the Fe-Ti oxides ore and nelsonites and mangerite were produced by crystallization of the Fe-Ti-P-rich and SiO2-rich magmas, respectively, due to the liquid immiscibility that occurred when the highly evolved ferrodioritic magma mixed with newly replenished magmas. The variation from Fe Ti oxides ore to nelsonite and gabbro-nelsonite upwards (as apatite content increases with height) in the steeply inclined Fe-Ti oxides orebodies suggest that gravity fractionation may have played important roles during the crystallization of the Fe-Ti-P-rich magma. (C) 2016 Elsevier B.V. All rights reserved.
机译:铌酸盐和Fe-Ti氧化物矿石是正常的型肿块型阿抗肠和层状入侵。它们的基因长期存在争议,现有假设,包括在磷灰石,磁铁矿,钛铁矿和硅酸盐中的Si-富含和Fe-Ti-P的熔体和重力分馏之间的液体不混溶。本文报告了纳尔逊岩和牛硝酸镍矿的详细领域地质和矿物地球化学研究。地质观测表明,纳尔尼岩和Fe-Ti氧化物矿石发生为不规则倾斜的层状或山曲面或脉状物,并且与稳定性和加布硼岩有尖锐的接触。在恶性化学中的Damiao Nelsonite和Fe-Ti氧化物矿石的广泛静脉和镜片结构表明它们不混溶的起源。 Nelsonite和Gabbronorite中的磷灰石表现出与REES和EU / EU *图中的加布布里特中的进化趋势不同,这表明纳尔尼岩和加布罗氏岩的纤维化与加布罗岩不同。与加布罗钛矿相比,纳尔松和Fe-Ti氧化物矿石在Cr中具有高的磁铁矿,在Sr中高,磷灰石高,SR高磷灰石,REES含有负欧盟异常的REES。证据允许我们提出Damiao Fe-Ti氧化物Ore / Nelsonite和Gabbronorite来自不同的父母岩浆。通过稳定性的高硅酸盐岩体凝固来形成Gabbronorite,其在广泛的Plagioclase和辉石结晶之后是残留的岩浆,并由Plagioclase晶体网向上携带。相反,由于当高度进化的铁司毛炎岩浆与新的液体不混溶时,通过分别结晶Fe-Ti-P-富含和SiO 2的岩浆制备Fe-Ti-Ti-富含和SiO 2的岩浆制备。补充魔法岩浆。在陡峭倾斜的Fe-Ti氧化物矿物中,Fe Ti氧化物矿石与纳尔逊和磷灰石含量增加的Gabbro-Nelsonite的变化表明,在Fe-Ti-P的结晶过程中,重力分级可能在重要作用中发挥着重要作用-rich magma。 (c)2016年Elsevier B.v.保留所有权利。

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