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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Water content and hydrogen behaviour during metasomatism in the uppermost mantle beneath Ray Pic volcano (Massif Central, France)
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Water content and hydrogen behaviour during metasomatism in the uppermost mantle beneath Ray Pic volcano (Massif Central, France)

机译:雷·皮克火山下面最上层地幔交代作用期间的水含量和氢行为(法国马西夫中部)

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To understand the deep cycle of water, upper mantle water content and distribution between nominally anhydrous minerals (NAMs) and hydrous minerals (e.g., amphibole) must be constrained. We need then to understand H behaviour during mantle melting and metasomatism. Major, minor and trace element compositions including water contents were obtained on ten xenoliths of spinel-bearing peridotites from the Ray Pic locality, in the Southern part of the Massif Central (France). The sample suite investigated here is composed of rather fertile lherzolites (89.4 <= Fo <= 90.8%; 11.3 <= cr# in spinel <= 21.1%; 0.942 <= [Yb](cpx) <= 1.90 ppm; cpx: clinopyroxene), which can be best explained by batch melting, with degree of melting between 3 and 10%. These xenoliths contain up to 8% modal amphibole. Three groups are defined as a function of the amphibole modal abundance (above or below 1%) and equilibrium temperature (above or below 1000 degrees C). Results show no clear positive correlation between modal metasomatism (amphibole) and incompatible element enrichment in cpx. Trace element compositions in cpx show strong enrichments of the most incompatible elements (e.g., (La/Sm)(PM) as high as 15.7; PM: normalised to primitive mantle values), but strong negative anomalies of the high field strength elements (e.g., (Th/Nb)(PM) as high as similar to 680). Such trace element fractionations are usually ascribed to the so-called carbonatitic metasomatism involving the percolation of small volume melts which are enriched in volatiles. The hydrogen concentrations in cpx range from 203 to 330 ppm wt. H2O, in orthopyroxene from 66 to 160 ppm wt. H2O and in olivine from 2 to 6 ppm wt. H2O. These values are within the common concentration range of other spinel-bearing peridotites. Amphiboles contain 1.9 +/- 0.5 wt.% of H2O.
机译:为了了解水的深层循环,必须限制上地幔中的水含量以及名义无水矿物(NAM)和含水矿物(例如闪石)之间的分布。然后,我们需要了解地幔融化和交代作用期间的H行为。在Massif Central(法国)南部的Ray Pic地区,从十个含尖晶石的橄榄岩橄榄石上获得了主要,次要和微量元素组成,包括水含量。此处研究的样品套件由相当肥沃的锂沸石组成(89.4 <= Fo <= 90.8%; 11.3 <= cr#in尖晶石<= 21.1%; 0.942 <= [Yb](cpx)<= 1.90 ppm; cpx:斜辉石),最好用批处理熔化来解释,熔化程度在3%至10%之间。这些异石含有高达8%的模态闪石。根据闪石模态丰度(高于或低于1%)和平衡温度(高于或低于1000摄氏度)将三组定义为函数。结果显示,模态交感(双闪)与cpx中不相容元素富集之间没有明显的正相关。 cpx中的痕量元素组成显示出最不相容元素的强富集(例如(La / Sm)(PM)高达15.7; PM:归一化为原始地幔值),但是高场强元素的强负异常(例如,(Th / Nb)(PM)高达680)。这种痕量元素的分馏通常归因于所谓的碳交代交代作用,涉及小体积熔体的渗透,这些熔体富含挥发物。 cpx中的氢浓度范围为203至330 ppm wt。邻位邻苯甲醛中的H2O为66至160 ppm wt。 H2O和橄榄石中2至6 ppm wt。水这些值在其他含尖晶石的橄榄岩的共同浓度范围内。闪石含有1.9 +/- 0.5重量%的H 2O。

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