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 >Mare basalt meteorites, magnesian-suite rocks and KREEP reveal loss of zinc during and after lunar formation
【24h】

Mare basalt meteorites, magnesian-suite rocks and KREEP reveal loss of zinc during and after lunar formation

机译:Mare玄武岩陨石,Magnesian-Suite Rocks和Kreep在月球形成期间和之后揭示了锌的丧失

获取原文
获取原文并翻译 | 示例
           

摘要

Isotopic compositions of reservoirs in the Moon can be constrained from analysis of rocks generated during lunar magmatic differentiation. Mare basalts sample the largest lunar mantle volume, from olivine- and pyroxene-rich cumulates, whereas ferroan anorthosites and magnesian-suite rocks represent early crustal materials. Incompatible element enriched rocks, known as 'KREEP,' probably preserve evidence for the last highly differentiated melts. Here we show that mare basalts, including Apollo samples and meteorites, have remarkably consistent delta Zn-66 values (+1.4 +/- 0.2 parts per thousand) and Zn abundances (1.5 +/- 0.4 ppm). Analyses of magnesian-suite rocks show them to be characterized by even heavier delta Zn-66 values (2.5 to 9.3 parts per thousand) and low Zn concentrations. KREEP-rich impact melt breccia Sayh al Uhaymir 169 has a nearly identical Zn composition to mare basalts (delta Zn-66 =1.3 parts per thousand) and a low Zn abundance (0.5 ppm). Much of this variation can be explained through progressive depletion of Zn and preferential loss of the light isotopes in response to evaporative fractionation processes during a lunar magma ocean. Samples with isotopically light Zn can be explained by either direct condensation or mixing and contamination processes at the lunar surface. The delta Zn-66 of Sayh al Uhaymir 169 is probably compromised by mixing processes of KREEP with mafic components. Correlations of Zn with Cl isotopes suggest that the urKREEP reservoir should be isotopically heavy with respect to Zn, like magnesian-suite rocks. Current models to explain how and when Zn and other volatile elements were lost from the Moon include nebular processes, prior to lunar formation, and planetary processes, either during giant impact, or magmatic differentiation. Our results provide unambiguous evidence for the latter process. Notwithstanding, with the currently available volatile stable isotope datasets, it is difficult to discount if the Moon lost its volatiles relative to Earth either during giant impact or exclusively from later magmatic differentiation. If the Moon did begin initially volatile-depleted, then the mare basalt delta Zn-66 value likely preserves the signature, and the Moon lost 96% of its Zn inventory relative to Earth and was also characterized by isotopically heavy Cl (delta Cl-37 = >= 8 parts per thousand). Alternative loss mechanisms, including erosive impact removing a steam atmosphere need to be examined in detail, but nebular processes of volatile loss do not appear necessary to explain lunar and terrestrial volatile inventories. (C) 2019 Elsevier B.V. All rights reserved.
机译:月球上的储层同位素组成可以受到在月球岩岩分化期间产生的岩石的分析。 Mare Basalts采样最大的月球碎片体积,来自富含橄榄石和辉石和辉石的累积,而Ferroan Anorthosites和Magnesian-Suite Rock代表早期地壳材料。不相容的元素富集的岩石,被称为'kreep,'可能保留最后一个高度分化的熔体的证据。在这里,我们表明包括阿波罗样品和陨石在内的母马沼气,具有显着的ΔZn-66值(+1.4 +/- 0.2份)和Zn丰度(1.5 +/- 0.4 ppm)。 Magnesian-Suite Rocks的分析显示它们的特征在于较重的Delta Zn-66值(2.5至9.3份/份每千份)和低Zn浓度。富有的抗冲击Breccia Sayh Al Uhaymir 169具有几乎相同的Zn组合物,可以为Mare Basalts(Delta Zn-66 = 1.3份)和低Zn丰度(0.5ppm)。通过逐渐消耗Zn的渐进耗尽和响应于农历岩浆海洋期间的蒸发分馏过程的优先损失,可以解释许多这种变化。具有同位素光Zn的样品可以通过月球表面的直接缩合或混合和污染过程来解释。 Sayh Al Uhaymir 169的Delta Zn-66可能是通过用MAFIC组分的混合过程而受到损害。 Zn与Cl同位素的相关性表明,乌斯克雷德储层应相对于Zn具有同位素沉重,如玉米型岩石。目前,用于解释从月球丢失Zn和其他挥发性元素的方式和当在月球形成之前的骨肉过程,以及在巨大撞击期间的行星过程,或岩石分化。我们的结果为后一种过程提供明确的证据。尽管如此,对于目前可用的挥发性稳定的同位素数据集,如果月亮在巨型冲击期间失去其挥发物或完全来自后来的岩浆分化,难以折扣其挥发物。如果月亮开始最初挥发耗尽,那么母马玄武岩达到Zn-66值可能会保留签名,月球相对于地球损失了96%的Zn库存,并且还具有同位素重的Cl(Delta Cl-37 => = 8‰)。需要详细检查替代损失机制,包括去除蒸汽气氛的侵蚀影响,但易挥发性损失的易挥发性损失的过程不需要解释农历和陆地挥发性库存。 (c)2019 Elsevier B.v.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
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