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首页> 外文期刊>Geosphere >Mantle source heterogeneity in monogenetic basaltic systems: A case study of E?rikuyu monogenetic field (Central Anatolia, Turkey)
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Mantle source heterogeneity in monogenetic basaltic systems: A case study of E?rikuyu monogenetic field (Central Anatolia, Turkey)

机译:单基因玄武岩体系中的地幔源异质性:以E?rikuyu单基因场为例(土耳其中部安纳托利亚)

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The E?rikuyu monogenetic field is located in the southwestern part of the Central Anatolian volcanic province and includes numerous scoria cones and related lava flows, as well as a few maars. E?rikuyu monogenetic field basalts are mainly olivine-nepheline (Ol-Nph) normative, with higher MgO (7.9–11.5 wt%) and Ni (up to 226 ppm) contents compared to other Central Anatolian volcanic province basalts. Enrichment in large ion lithophile elements compared to high field strength elements and depletions in Nb, Ta, P, and Ti in the multi-element diagrams are typical trace-element characteristics of all Central Anatolian volcanic province basalts. Mineral, trace element, and isotope compositions of E?rikuyu monogenetic field basalts revealed the necessity of at least two distinct and variously enriched components responsible for their formation. Decompressional melting of metasomatized subcontinental lithospheric mantle (enriched mid-ocean-ridge basalt–like), with or without the contribution of upwelling deep asthenospheric melt (oceanic-island basalt–like), may explain the geochemical characteristics of all Central Anatolian volcanic province basalts. The lower 207 Pb/ 204 Pb ratios and some distinct clinopyroxene compositions (titaniferous augite and Fe-rich diopside) in E?rikuyu monogenetic field basalts are indicators for the presence of upwelling asthenosphere, which is also evident in the low-seismic-velocity anomalies and Cyprian slab tear that underlie the field. The E?rikuyu monogenetic field is a good example of mantle source heterogeneity in a monogenetic basaltic field and therefore constitutes a suitable region within the Central Anatolian volcanic province where different mantle source components can be traced.
机译:E?rikuyu单质场位于中部安纳托利亚火山省的西南部,包括众多的火山灰锥和相关的熔岩流,以及一些岩浆。 E?rikuyu单基因场玄武岩主要是橄榄石-肾上腺素(Ol-Nph)规范,与其他安那托利亚中部火山岩省玄武岩相比,MgO(7.9-11.5 wt%)和Ni(最高226 ppm)含量更高。与高场强元素相比,大型离子亲石元素的富集以及Nb,Ta,P和Ti中Nb,Ta,P和Ti的耗竭是安纳托利亚中部所有火山岩省玄武岩的典型痕量元素特征。 E?rikuyu单基因玄武岩的矿物,微量元素和同位素组成表明,至少有两种不同的,成分丰富的组分是必需的。交化的次大陆岩石圈地幔(富集的中海脊玄武岩样)的减压融化,无论是否伴有上升流的软流圈深部熔融(像海洋岛玄武岩样),可能解释了中部安纳托利亚火山岩省玄武岩的地球化学特征。 。 E?rikuyu单系玄武岩中较低的207 Pb / 204 Pb比值和一些独特的斜辉石成分(钛铁质辉石和富铁透辉石)是存在软流圈上升流的指标,这在低地震速异常中也很明显并在田野上留下了塞浦路斯人的平板泪。 E?rikuyu单质场是单源玄武岩田中地幔源异质性的一个很好的例子,因此构成了中安纳托利亚火山省内一个合适的区域,可以在其中追踪不同的地幔源成分。

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