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Oxygen isotopes composition of sapphires from the French Massif Central: implications for the origin of gem corundum in basaltic fields

机译:法国地块中部蓝宝石的氧同位素组成:对玄武岩田中宝石刚玉起源的影响

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Alluvial and colluvial gem sapphires are common in the basaltic fields of the French Massif Central (FMC) but sapphire-bearing xenoliths are very rare, found only in the Menet trachytic cone in Cantal. The O-isotope composition of the sapphires ranges between 4.4 and 13.9‰. Two distinct groups have been defined: the first with a restricted isotopic range between 4.4 and 6.8‰ (n = 22; mean δ18O = 5.6 ± 0.7‰), falls within the worldwide range defined for blue-green-yellow sapphires related to basaltic gem fields (3.0 < δ18O < 8.2‰, n = 150), and overlaps the ranges defined for magmatic sapphires in syenite (4.4 < δ18O < 8.3‰, n = 29). A second group, with an isotopic range between 7.6 and 13.9‰ (n = 9), suggests a metamorphic sapphire source such as biotite schist in gneisses or skarns. The δ18O values of 4.4–4.5‰ for the blue sapphire-bearing anorthoclasite xenolith from Menet is lower than the δ18O values obtained for anorthoclase (7.7–7.9‰), but suggest that these sapphires were derived from an igneous reservoir in the subcontinental spinel lherzolitic mantle of the FMC. The presence of inclusions of columbite-group minerals, pyrochlore, Nb-bearing rutile, and thorite in these sapphires provides an additional argument for a magmatic origin. In the FMC lithospheric mantle, felsic melts crystallized to form anorthoclasites, the most evolved peraluminous variant of the alkaline basaltic melt. The O-isotopic compositions of the first group suggests that these sapphires crystallized from felsic magmas under upper mantle conditions. The second group of isotopic values, typified for example by the Le Bras sapphire with a δ18O of 13.9‰, indicates that metamorphic sapphires from granulites were transported to the surface by basaltic magma. Keywords France - French Massif Central - Basalt - Oxygen isotopes - Sapphires Editorial handling: R. Moritz
机译:冲积和共生宝石蓝宝石在法国地块中部(FMC)的玄武岩田中很常见,但带有蓝宝石的异岩很罕见,仅在康塔尔省的梅奈(Menet)短锥中才发现。蓝宝石的O同位素组成介于4.4和13.9‰之间。已经定义了两个不同的组:第一个组的同位素范围限制在4.4至6.8‰之间(n = 22;平均δ 18 O = 5.6±0.7‰),属于蓝色定义的全球范围内与玄武岩宝石场有关的-绿色-黄色蓝宝石(3.0 <δ 18 O <8.2‰,n = 150),并且与菱镁矿中岩浆蓝宝石的定义范围重叠(4.4 <δ 18 O <8.3‰,n = 29)。第二组的同位素范围在7.6和13.9‰之间(n = 9),显示出变质的蓝宝石来源,如片麻岩或矽卡岩中的黑云母片岩。来自Menet的蓝色蓝宝石含钙硅钙石异种石的δ 18 O值为4.4–4.5‰,低于为钙钛矿所获得的δ 18 O值(7.7–7.9‰ ),但建议这些蓝宝石是来自FMC大陆下尖晶石亮晶石幔中的火成岩储层。这些蓝宝石中存在of族矿物,烧绿石,含Nb的金红石和石的夹杂物为岩浆成因提供了另一个论据。在FMC岩石圈地幔中,长英质熔体结晶形成无钙长石,这是碱性玄武质熔体发展最快的铝质变体。第一组的O同位素组成表明,这些蓝宝石是在上地幔条件下从长英质岩浆中结晶出来的。第二组同位素值,例如以δ 18 O为13.9‰的Le Bras蓝宝石为代表,表明来自花岗岩的变质蓝宝石被玄武岩浆运到地表。法国-法国中部地块-玄武岩-氧同位素-蓝宝石社论处理:R.莫里茨

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