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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Paleozoic diamonds within a Precambrian peridotite lens in UHP gneisses of the Norwegian Caledonides
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Paleozoic diamonds within a Precambrian peridotite lens in UHP gneisses of the Norwegian Caledonides

机译:挪威Caledonides的UHP片麻岩中前寒武纪橄榄岩透镜中的古生界钻石

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摘要

Re-Os data obtained by LAM-ICPMS techniques from sulfides within the Bardane peridotite body in the Western Gneiss Region of the Norwegian Caledonides indicate a Proterozoic, or possibly Archean, origin for the peridotite, probably as depleted residue formed through melt extraction in the mantle. Sm-Nd mineral ages from primary garnetbearing assemblages in a megacrystic orthopyroxenite within the peridotite indicate the mantle was invaded by melts that crystallized in the garnet-stability field during the mid-Proterozoic. However, microdiamonds within this megacrystic orthopyroxenite formed well after these processes, during the Paleozoic Caledonian Orogeny. Clinopyroxenes show enriched trace element patterns and radiogenic Sr and non-radiogenic Nd isotopic ratios, indicating fertilization of the Bardane peridotite with incompatible elements, presumably including carbon. Metasomatism may have occurred while the peridotite was part of the mantle wedge above an Iapetus subduction zone or it may have occurred after the lenses were introduced into the crust. Textural and field relationships and Sm-Nd mineral results from secondary garnet-bearing assemblages indicate the microdiamonds formed during Caledonian metamorphism, probably during the Scandian Orogeny, when the peridotite body was introduced from the mantle into a subducting crustal gneiss complex and carried to mantle depths within the diamond-stability field. Texturally and mineralogically similar megacrystic orthopyroxenites on the nearby island of Otroy lack microdiamonds, suggesting they underwent all the above processes except the metasomatic introduction of carbon.
机译:通过LAM-ICPMS技术从挪威喀里多尼德斯西部片麻岩地区的Bardane橄榄岩体中的硫化物获得的Re-Os数据表明,橄榄岩的元古生代或可能是太古宙的起源,可能是由于地幔中熔融提取而形成的贫化残渣。橄榄岩中超晶质正辉石中主要含石榴石的组合物的Sm-Nd矿物年龄表明,在元古代中期,石榴石稳定性场中结晶的熔体侵入了地幔。然而,在古生代古苏格兰造山运动中,这些大晶原辉石中的微金刚石在这些过程之后形成得很好。 Clinopyroxenes具有丰富的痕量元素模式,放射性Sr和非放射性Nd同位素比,表明Bardane橄榄岩与不相容元素(可能包括碳)受精。橄榄岩是伊阿佩图斯俯冲带上方地幔楔的一部分时,可能发生了交代作用,也可能是在将晶状体引入地壳之后发生的。构造和田间的关系以及次生石榴石组合产生的Sm-Nd矿物结果表明,在古苏格兰变质期间,可能是在斯堪的纳造山运动期间,将橄榄岩体从地幔中引入俯冲地壳片麻岩复合体,并携带到地幔深处,形成了微金刚石。在钻石稳定领域。从质地和矿物学上讲,在附近的Otroy岛上,类似的大晶正辉石缺乏微金刚石,表明它们经历了上述所有过程,但碳的交代引入。

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