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首页> 外文期刊>Mineralogical Magazine >Niocalite-cuspidine solid solution and manganoan monticellite from natrocarbonatite, Oldoinyo Lengai, Tanzania
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Niocalite-cuspidine solid solution and manganoan monticellite from natrocarbonatite, Oldoinyo Lengai, Tanzania

机译:坦桑尼亚的Oldoinyo Lengai的钠碳沸石中的镍铬铁矿-cuspidine固溶体和芒果锰铁矿

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摘要

Lapilli and spatter of natrocarbonatite extruded from the T56B cone of Oldoinyo Lengai (Tanzania) in August 2003 are unusually rich in apatite, silicate, oxide and sulphide minerals. These minerals occur primarily within inclusions of quenched natrocarbonatite in gregoryite and fractures in nyerereite-gregoryite intergrowths. Silicates include members of the sodian cuspidine-niobian cuspidine-niocalite solid-solution series and manganoan monticellite. Oxides are represented by members of the magnesioferrite-jacobsite-magnetite solid-solution series. Sulphides occurring in decreasing order of abundance include: ferroan alabandite, manganoan ferroan sphalerite, galena and pyrrhotite. Petrographic and compositional data for these minerals are interpreted to indicate that all are high-temperature (<900-650 deg C), early-crystallizing phases from relatively-unevolved natrocarbonatite magma, with the sulphides forming prior to the silicates, and the latter before gregoryite. Sulphur fugacity and oxygen fugacity of natrocarbonatite magma are considered to decrease and increase, respectively, during the formation of the sulphide-oxide assemblage. Crystallization of cuspidine-niocalite, monticellite and Si-bearing apatite rapidly depletes natrocarbonatite magma of its initial low silica content, preventing crystallization of late-stage groundmass silicates.
机译:2003年8月从Oldoinyo Lengai(坦桑尼亚)的T56B锥体中挤出的碎石和钠碳酸盐散布异常丰富的磷灰石,硅酸盐,氧化物和硫化物矿物。这些矿物主要存在于格列高岭石中淬火的钠碳酸盐夹杂物和黑闪石-格列高岭石共生的裂缝中。硅酸盐包括大豆cuspidine-niobian cuspidine-neolite固溶体系列和manganoan蒙脱石成员。氧化物由菱镁矿-水铁矿-磁铁矿固溶体系列的成员表示。以丰度递减的顺序出现的硫化物包括:亚铁锰矿,锰锰矿闪锌矿,方铅矿和黄铁矿。这些矿物的岩石学和成分数据被解释为表明它们都是高温(<900-650摄氏度),来自相对未演化的碳酸钠岩浆的早期结晶相,硫化物先于硅酸盐形成,而后者在硅酸盐之前形成。钙长石。碳酸盐岩浆的硫逸度和氧逸度被认为在硫化物-氧化物组合的形成过程中分别减少和增加。 cuspidine-Niocalite,蒙脱石和含Si磷灰石的结晶迅速耗尽了初始低二氧化硅含量的NaNacarbonatite岩浆,从而阻止了后期地基硅酸盐的结晶。

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