首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Syngenetic inclusions of yimengite in diamond from Sese kimberlite (Zimbabwe)-evidence for metasomatic conditions of growth
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Syngenetic inclusions of yimengite in diamond from Sese kimberlite (Zimbabwe)-evidence for metasomatic conditions of growth

机译:塞斯金伯利岩(津巴布韦)中钻石中的亚眠石同质夹杂物-生长的交代条件的证据

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Syngenetic inclusions of yimengite K (Cr,Ti,Mg,Fe,Al)_(12)O_(19),a potassium member of the magnetoplumbite mineral group,have been recorded in an octahedral macrodiamond from the Sese kimberlite (50 km south of Masvingo,Zimbabwe).One yimengite inclusion carries lamellae of chromite suggesting peridotitic diamond paragenesis.The diamond and inclusions were studied in situ in a plate polished parallel to (011).Cathodoluminescence (CL) imaging has shown blue colour and octahedral zonation of the diamond,lack of cracks and the location of five yimengites in different growth zones.Nitrogen (N) contents (at.ppm) in the diamond determined by Fourier transform infrared spectroscopy (FTIR) steadily decrease from 576 (core) to 146 (rim).N aggregation (%laB) is correspondingly 40% in the core and 30% in the rim.Hydrogen (H) content is high in the core,moderate in the intermediate and very high in the rim zones.Four yimengites were dated using the laser ~(40)Ar/~(39)Ar method.Three inclusions yielded total gas ages that agree with,or are younger than,or within error of,the Sese kimberlite eruption age (538+-11 Ma) but may be compromised by gas loss.One inclusion,with the highest tapped interface gas yield,gave a total gas age of 892+-21 Ma that is a likely minimum yimengite age.Time-TdegC constraints from N aggregation systematics give a range of possible ages from kimberlite eruption date back to Archean and do not resolve the variable results of the ~(40)Ar/~(39)Ar dating.Compared with the published chemistry of yimengite from kimberlites,inclusions from the Sese diamond contain higher Al,Mg,and Sr and have lower concentration of Fe~(3+).The chondrite-normalised REE pattern of the yimengite shows enrichment in LREE and depletion in HREE,but LREE/HREE fractionations are lower than for lindsleyite-mathiasite series mantle titanates and rather similar to the REE concentrations in kimeberlite and lamproite rocks.It is suggested that sese yimengite formed in the lithospheric mantle from metasomatism of chrome spinel by a fluid rich in Ti,K,Ba and LREE.
机译:曾在Sese金伯利岩(以南50公里处)的八面体大型金刚石中记录了易蒙石K(Cr,Ti,Mg,Fe,Al)_(12)O_(19)的同生包裹体。津巴布韦的马斯温戈)。一种易蒙脱石包裹体上带有铬铁矿的薄片,暗示着橄榄铁质金刚石的共生作用。在平行于(011)的抛光板上对原石和包裹体进行了原位研究。阴极发光(CL)成像显示出蓝色和钻石的八面体分区,裂纹的消失以及五个生长在不同生长区域的钇铝锰矿的位置。通过傅立叶变换红外光谱(FTIR)测定的钻石中氮(at.ppm)逐渐从576(核)降低到146(边缘)。 N聚集(%1aB)分别在芯中占40%,在边缘中占30%。氢(H)含量在芯中高,在中部中等且在边缘区域中非常高。使用激光打标了四个Yimengite 〜(40)Ar /〜(39)Ar方法。三个包裹体符合或小于Sese金伯利岩喷发年龄(538 + -11 Ma)的总瓦斯年龄,或可能因瓦斯损失而受到损害。一种夹杂物,最高分接界面瓦斯产生率总的天然气年龄为892 + -21 Ma,这可能是最小的伊蒙纪年龄.N聚集系统的时间TdegC约束给出了从金伯利岩喷发日期到太古宙的可能年龄范围,并且无法解决〜( 40)Ar /〜(39)Ar测年。与已发表的金伯利岩伊蒙石的化学性质相比,Sese钻石中的夹杂物含有较高的Al,Mg和Sr,并且具有较低的Fe〜(3+)浓度。益蒙石的REE模式显示LREE富集和HREE耗竭,但LREE / HREE的分馏率低于lindsleyite-mathiasite系列地幔钛酸盐,并且与金伯利岩和斑岩岩中的REE浓度相似。岩石圈地幔e来自富含Ti,K,Ba和LREE的流体的铬尖晶石的交代作用。

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