与东印度盾太古代绿岩带相关的含钛磁铁矿矿床

R. Mondal, T. K. Baidya
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引用次数: 7

摘要

在东印度盾区,与太古宙绿岩带相关的含钛磁铁矿产于奥里萨邦的Kumhardubi、Betjharan和Nuasahi地区以及贾坎德邦的Dublabera地区。矿体由辉长岩中的透镜体、脉体、带状和斑块组成。岩石成因研究揭示了矿石的原生和次生矿物组成,如钛磁铁矿、钛铁矿、赤铁矿、尖晶石、钴矿、针铁矿、马闪石、金红石和硅酸盐脉石矿物。亚固态岩浆在冷却过程中不同温度下的析出和氧化导致了不同的结晶共生。化学分析表明,该矿石含TiO2 10.35 ~ 17.68 wt.%, V2O3 0.148 ~ 0.227 wt.%, Fe2O3 32.75 ~ 67.39 wt.%。不同的地球化学成分图证实了它们的斑岩成因。块状矿体的形成是由拉斑岩浆晚期岩浆结晶,富Fe-Ti残液在寄主岩内注入所致。认为东印度盾太古宙绿岩带的磁铁矿与辉长-斜长岩侵入形成较晚
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Titaniferous Magnetite Deposits Associated with Archean Greenstone Belt in the East Indian Sheild
In the East Indian Shield, occurrence of titaniferous magnetite deposits associated with the Archean Greenstone belt occur in Kumhardubi, Betjharan and Nuasahi areas of Odisha and Dublabera area of Jharkhand. The ore bodies comprise lenses, veins, bands and patches within gabbroic rocks. Petrogenetic studies have revealed the primary and secondary mineral constituents of the ores such as titanomagnetite, ilmenite, hematite, spinel, cobaltite, goethite, martite, rutile and silicate gangue minerals. Various crystallographic intergrowths are resulted from exsolution & oxidation at different temperatures during cooling of the sub-solidus magma. Chemical analyses show that the ore contains 10.35 -17.68 wt.% TiO2, 0.148 – 0.227 wt.% V2O3 and 32.75 – 67.39 wt.% Fe2O3. Different geochemical composition diagrams confirm their tholeiitic origin. The formation of the massive ore bodies is referred to late magmatic crystallization from tholeiitic magma followed by Fe-Ti enriched residual liquid injection within the host rocks. Syn to late formation of the magnetite ores along with gabbro-anorthositic intrusive with respect to the Archean Greenstone Belt of East Indian Shield is suggested
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