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Halogen (F, CI and Br) variations in alkaline rocks from the Upper Rhine Graben, SW Germany

机译:卤素(F,CI和BR)来自莱茵河上部莱茵河Graben,SW德国的碱性岩石的变化

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We present halogen compositions in a series of alkaline rocks from the Kaiserstuhl, Hegau and Urach areas of the Upper Rhine graben region (South Germany).Most primitive rocks (olivine melilitites and olivine nephelinites) have lower CI and Br concentrations (generally below 100 μg/g and below 0.3 μg/g, respectively) compared to more evolved tephrites, phonolites and related rocks (up to 7600 μg/g CI and 34 μg/g Br).However, the Cl/Br ratios of the majority of the investigated samples are relatively uniform (371 ± 120), regardless of rock type and sample locality, suggesting that partial melting, fractional crystallization, and degassing have limited effects on the fractionation of Cl from Br.The mean value of the Cl/Br ratio is similar to previous estimates for basaltic rocks with MORB and OIB mantle signatures.Fluorine concentrations of the primitive rocks show limited variations (900-1100 μg/g) and are within the range defined by the evolved rocks (400-2100 μg/g), but are much higher than previous estimates for the MORB and OIB mantle (50-135 μg/g).This may indicate a relatively F-rich mantle source beneath the Rhine Graben region.In contrast to Cl/Br ratios, the F/Cl ratios vary significantly over three orders of magnitudes (from <0.1 to around 100) and decrease from primitive rocks to more evolved ones, implying that magmatic processes such as fractional crystallization and degassing strongly effect this ratio.
机译:我们将卤素组成含有来自Kaiserstuhl,Hegau和Urach地区的一系列碱性岩石(南德德国)。最重要的岩石(橄榄石丝丝酸盐和橄榄石新孔岩)具有较低的Ci和Br浓度(通常低于100μg与更多演进的Tepharites,发光物和相关岩石(高达7600μg/ g ci和34μg/ g br)相比,分别为0.3μg/ g。然而,大多数研究的CL / BR比率除了岩石类型和样本局部,样品相对均匀(371±120),表明部分熔化,分数结晶和脱气对来自BR的CL的分馏有限。CL / Br比的平均值相似对于先前具有Morb和Oib Mantle签名的玄武岩岩石的估计。原始岩石的氟浓度呈现有限的变化(900-1100μg/ g),并且在演进的岩石定义的范围内(400-2100μg/ g),但是很高比以前的Marb和Oib披露(50-135μg/ g)的估计值。这可以指示莱茵河Graben地区下方的相对f的富含地幔源。与Cl / Br比对比,F / Cl比率显着变化超过三个大小(从<0.1到约100),并从原始岩石减少到更加进化的岩石,暗示岩浆过程,例如分数结晶和脱气强烈影响该比率。

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