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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Geochemistry of xenolithic eclogites from West Africa, part 2: Origins of the high MgO eclogites
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Geochemistry of xenolithic eclogites from West Africa, part 2: Origins of the high MgO eclogites

机译:西非异岩类榴辉岩的地球化学,第2部分:高MgO榴辉岩的起源

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Oxygen isotope, mineral trace element, and measured and reconstructed whole-rock compositions are reported for the high MgO eclogite xenolith suite (16 to 20 wt% MgO in the whole rock) from the Koidu Kimberlite complex, Sierra Leone. In contrast to the previously published data for low MgO eclogites (6 to 13 wt% MgO) from this area, high MgO eclogites equilibrated at higher temperatures (1080 to 1130degreesC vs. 890 to 930degreesC) have only mantlelike delta(18)O and show variable degrees of light rare earth element (REE) enrichment. Analyses of multiple mineral generations suggest that the heterogeneous REE patterns of the high MgO eclogites reflect variable degrees of metasomatic overprinting. High MgO and Al2O3 contents of the eclogites suggest a cumulate origin, either as high-pressure (2 to 3 GPa) garnet-pyroxene cumulates or low-pressure (<1 GPa) plagioclase-pyroxene-olivine cumulates. Trace element modeling suggests a low-P origin for eclogites with flat heavy REE patterns and a high-P origin for eclogites with fractionated heavy REE. Flat heavy REE patterns, the presence of Sr anomalies, and low to moderate transition element contents in the low-P group are consistent with a low-pressure origin as metamorphosed olivine gabbros and troctolites. These metagabbroic high MgO eclogites either could represent the basal section of subducted oceanic crust or foundered matic lower continental crust. In the former case, the metagabbroic high MgO eclogites may be genetically related to the Koidu low MgO suite. Crystal fractionation trends suggest that the metapyroxenitic high MgO eclogites formed at lower pressures than their current estimated equilibrium pressures (> 4 GPa). Copyright (C) 2002 Elsevier Science Ltd. [References: 88]
机译:据报道,来自塞拉利昂Koidu Kimberlite矿山的高MgO榴辉岩异岩体套件(整个岩石中16至20 wt%MgO)的氧同位素,矿物微量元素以及测量和重建的整块岩石成分。与之前发布的该地区低MgO榴辉岩(6至13 wt%MgO)的数据相比,在较高温度(1080至1130摄氏度与890至930摄氏度)下达到平衡的高MgO榴辉岩只有地幔三角洲(18)O并显示可变程度的轻稀土元素(REE)富集。对多种矿物世代的分析表明,高MgO榴辉岩的异质REE模式反映了不同程度的交代叠印。榴辉岩中高含量的MgO和Al2O3暗示有堆积成因,要么是高压(2至3 GPa)石榴石-辉石堆积,要么是低压(<1 GPa)斜长石-辉石-橄榄石堆积。痕量元素建模表明,重稀土元素分布平坦的榴辉岩的低磷成因,重稀土元素分馏的榴辉岩的高磷成因。低P组中平坦的重稀土元素模式,Sr异常的存在以及过渡元素含量的低到中度与低压源(如变质的橄榄辉闪石和闪闪石)一致。这些易变质的高MgO榴辉岩可以代表俯冲洋壳的基底部分,也可以代表低层大陆壳的基础。在前一种情况下,代谢区高MgO榴辉岩可能与Koidu低MgO套件在遗传上相关。晶体的分馏趋势表明,在高于其目前估计的平衡压力(> 4 GPa)的压力下,形成了高密度镁铁榴辉岩。版权所有(C)2002 Elsevier Science Ltd. [参考:88]

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