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首页> 外文期刊>Contributions to Mineralogy and Petrology >Hollandite–strontiomelane solid solutions coexisting with kanonaite and braunite in late quartz veins of the Stavelot Massif, Ardennes, Belgium
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Hollandite–strontiomelane solid solutions coexisting with kanonaite and braunite in late quartz veins of the Stavelot Massif, Ardennes, Belgium

机译:在比利时阿登的斯塔韦洛地块晚期石英脉中,钙铁矿和褐铁矿中的钙锰矿和褐铁矿共存的荷锰矿-锶钛矿固溶体

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摘要

In a newly found type of quartz vein cross-cutting the famous "viridine"-bearing phyllites at Le Coreux, hollandite, ideally BaMn8O16, was discovered for the first time at this locality and in Belgium. Because the crystals contain up to 60 mol% of the Sr end member, this is also the second occurrence of strontiomelane. The coexisting "viridine" (= kanonaite) contains the highest amount (88 mol%) of the ideal end member MnAlSiO5 ever found worldwide. The hollandite-type minerals are intimately intergrown with braunite containing appreciable Ca and Mg. Ba-bearing muscovite, Fe-poor excess-Al clinochlore (not quite trioctahedral), and albite are the remaining accessory minerals in the dominant quartz matrix. Microprobe analyses of all phases show rather extreme element fractionations: nearly all K is located in muscovite and none in the hollandite phase despite the existence of the end member KMn8O16 (cryptomelane). Similarly, nearly all Na is in albite and not in hollandite (no NaMn8O16=manjiroite component). Nearly all Mn resides in the two oxide phases and in kanonaite. Mg is strongly fractionated into chlorite. The small amounts of Fe and Ti present are predominantly partitioned into the hollandite phase, which also accommodates most of the Ba and Sr. Indeed, the hollandite phase is stabilized by the latter two elements relative to other Mn oxides. Kanonaite is stabilized by Al. Although no requisite sites are available in its crystal structure, braunite always contains small amounts of Ba and Sr. However, the Sr/(Sr+Ba) ratios in braunite are spurious and unrelated to those of the directly adjoining hollandite phases The conditions of formation of these veins may be well below 300 °C at low pressures (1–2 kbar), in agreement with the experimental results that the maximum Mn contents in kanonaite increase with falling temperatures.
机译:在Le Coreux的一种新发现的石英脉中横切了著名的带有“ viridine”的系统晶石,在该地区和比利时首次发现了钙沸石,理想的是BaMn8 O16 。因为晶体包含高达60 mol%的Sr端基,所以这也是锶提花素的第二次出现。共存的“ viridine”(= kanonaite)含有世界上发现的最高数量的(88 mol%)理想末端成员MnAlSiO5 。钙铁矿型矿物与含有可观的钙和镁的褐铁矿紧密共生。含钡的白云母,贫铁的过量铝斜绿石(不完全是八面体)和钠长石是主要石英基质中剩余的辅助矿物。所有相的微探针分析均显示出极端的元素分离:尽管存在末端成员KMn8 O16 (隐孢子虫),但几乎所有K都位于白云母相中,而没有一个处于钾铁矿相中。同样,几乎所有的Na都在钠长石中,而不是在白铁矿中(没有NaMn8 O16 = manjiroite组分)。几乎所有的Mn都存在于两个氧化物相和卡诺石中。镁被强烈分馏成亚氯酸盐。存在的少量Fe和Ti主要分配到堇青石相中,它也容纳了大部分Ba和Sr.实际上,相对于其他Mn氧化物,该堇青石相通过后两种元素得以稳定。金铝石被Al稳定化。尽管在其晶体结构中没有必要的位点,但褐铁矿始终含有少量的Ba和Sr,但是,褐铁矿中Sr /(Sr + Ba)的比率是虚假的,与直接毗邻的堇青石相的比率无关。在低压(1-2 kbar)下,这些脉中的大部分可能远低于300°C,这与实验结果一致,即钠锰矿中的最大Mn含量随温度降低而增加。

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