...
首页> 外文期刊>Chemical geology >Mineralogical control of selenium, tellurium and highly siderophile elements in the Earth's mantle: Evidence from mineral separates of ultra-depleted mantle residues
【24h】

Mineralogical control of selenium, tellurium and highly siderophile elements in the Earth's mantle: Evidence from mineral separates of ultra-depleted mantle residues

机译:地幔中硒,碲和高度嗜铁元素的矿物学控制:来自超耗尽地幔残留物矿物分离的证据

获取原文
获取原文并翻译 | 示例

摘要

The budget of Se-Te and other highly siderophile elements (HSEs) in major silicate and oxide mineral separates (olivine, orthopyroxene, clinopyroxene, spinel), and intergranular fine components of an ultra-refractory harzburgite have been determined via isotope dilution hydride generation ICPMS after mineral separation, high-pressure acid digestion and chemical purification. In addition, x-ray computed micro-tomography (micro-CT) has been performed in order to constrain and illustrate the original location, distribution and size of sulfides and/or alloys inside their intact, bulk harzburgite matrix. The results show that the whole-rock Se-Te budget of mantle residues, that are devoid of base metal sulfides (BMS) after high degrees of partial melting (F approximate to 23%), is almost completely controlled by olivine-hosted micro-inclusions and intergranular fractions of platinum group minerals (PGMs). The scarcity and heterogeneous distribution of intergranular PGMs generally sized 3-5 mu m in the harzburgite are revealed by 3D micro-CT, while PGM inclusions in olivine are smaller than 2.5 mu m. The heterogeneous distribution of these microphases as well as the range of Se-Te contents in the bulk harzburgite complicate a quantification of individual contributions of separates to the whole-rock Se-Te budget. However, PGM micro-inclusions in olivine with residual-type CI chondrite-normalized HSE patterns and suprachondritic Se/Te ratios between 30 and 218 (Se/Te-CI chondrite = 9) host close to 100% of the bulk rock Se. Interstitial fine components up to 125 mu m grain size may contribute only minor amounts of Se, but up to 50% of Te to the bulk harzburgite and show subchondritic Se/Te ratios of ca. 4, resembling metasomatic PGM signatures. In dependence on increasing proportions of interstitial and metasomatic PGMs vs. olivine-hosted residual PGMs, the bulk rock Te contents may increase and the Se/Te ratios decrease. The systematics seen in mineral separates of one harzburgitic sample resembles the entire spectrum of Se-Te signatures of all suites of peridotites and host phases so far published. The results are consistent with a higher compatibility of Se in covalent monosulfides compared to Te that prefers sulfide melts. It is further consistent with the stabilization of residual PGMs after Mss exhaustion as well as with formation of metasomatic PGMs in a S-Cu-volatile-rich sulfide melt. Altogether this reconciles a higher incompatibility of Te over Se during partial mantle melting, subsequent removal of Te over Se with Cu-Ni-rich sulfide fractionation from high-degree partial mantle melts, and explains the similar Te but higher Se abundances in MORBs compared to peridotites that is globally observed. (C) 2014 Elsevier B.V. All rights reserved.
机译:已通过同位素稀释氢化物生成ICPMS确定了主要硅酸盐和氧化物矿物分离物中(橄榄石,邻比邻苯,斜茂铁,尖晶石)的Se-Te和其他高度铁卫元素元素(HSE)的预算以及超难熔Harzburgite的晶间精细成分的预算矿物分离后,进行高压酸消化和化学纯化。此外,已经进行了X射线计算机断层扫描(micro-CT),以约束和说明硫化物和/或合金在其完整的块状Harzburgite基体内的原始位置,分布和大小。结果表明,经过高度部分熔融(F约23%)后,不含碱金属硫化物(BMS)的地幔残渣的全岩Se-Te收支几乎完全由橄榄石微晶控制。铂族矿物(PGM)的夹杂物和晶间分数。 3D micro-CT显示,通常在哈兹伯格岩中粒度为3-5μm的粒间PGM的稀缺性和非均质分布,而橄榄石中的PGM夹杂物小于2.5μm。这些微相的不均匀分布以及块状哈氏石中Se-Te含量的范围使量化各个分离物对整个岩石Se-Te预算的贡献复杂化。但是,橄榄石中的PGM微夹杂物具有残留型CI球粒晶归一化的HSE模式和超晶质Se / Te比在30到218之间(Se / Te-CI球粒晶= 9),占总体岩石Se的100%。晶粒尺寸最大为125μm的间隙细粒成分可能仅贡献少量的Se,但对块状刚铁矿最多贡献了50%的Te,并显示出约亚硒化的Se / Te比。 4,类似交代的PGM签名。依赖于间隙和交代PGM与橄榄石残留的PGM比例的增加,块状岩石中Te的含量可能会增加,而Se / Te的比例会降低。在一个哈氏成因样品的矿物分离物中看到的系统学类似于迄今为止所有橄榄岩的所有套房和宿主相的Se-Te标记的整个光谱。该结果与硒在共价单硫化物中的相容性高于优选硫化物熔体的Te相比是一致的。这与Mss耗尽后残余PGM的稳定以及在富含S-Cu-挥发物的硫化物熔体中形成交代PGM的现象是一致的。总而言之,这在部分地幔融化过程中使Te与Se的不相容性更高,随后通过从高度部分地幔熔体中富集Cu-Ni的硫化物分馏除去Se而与Se相比具有更高的不相容性,并解释了与MoBs相似的Te但更高的Se丰度全球观察到的橄榄岩。 (C)2014 Elsevier B.V.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号