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 >Rare-earth-element minerals in martian breccia meteorites NWA 7034 and 7533: Implications for fluid-rock interaction in the martian crust
【24h】

Rare-earth-element minerals in martian breccia meteorites NWA 7034 and 7533: Implications for fluid-rock interaction in the martian crust

机译:火星角砾岩陨石NWA 7034和7533中的稀土元素矿物:对火星地壳中流体-岩石相互作用的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Paired martian breccia meteorites, Northwest Africa (NWA) 7034 and 7533, are the first martian rocks found to contain rare-earth-element (REE) phosphates and silicates. The most common occurrence is as clusters of anhedral monazite-(Ce) inclusions in apatite. Occasionally, zoned, irregular merrillite inclusions are also present in apatite. Monazite-bearing apatite is sometimes associated with alkali-feldspar and Fe-oxide. Apatite near merrillite and monazite generally contains more F and OH (F-rich region) than the main chlorapatite host and forms irregular boundaries with the main host. Locally, the composition of F-rich regions can reach pure fluorapatite. The chlorapatite hosts are similar in composition to isolated apatite without monazite inclusions, and to euhedral apatite in lithic clasts. The U-Th-total Pb ages of monazite in three apatite are 1.0 +/- 0.4 Ga (2 sigma), 1.1 +/- 0.5 Ga (2 sigma), and 2.8 +/- 0.7 Ga (2 sigma), confirming a martian origin. The texture and composition of monazite inclusions are mostly consistent with their formation by the dissolution of apatite and/or merrillite by fluid at elevated temperatures (>100 degrees C). In NWA 7034, we observed a monazite-chevkinite-perrierite-bearing benmoreite or trachyandesite clast. Anhedral monazite and chevkinite-perrierite grains occur in a matrix of sub-micrometer REE-phases and silicates inside the clast. Monazite-(Ce) and -(Nd) and chevkinite-perrierite-(Ce) and-(Nd) display unusual La and Ce depletion relative to Sm and Nd. In addition, one xenotime-(Y)-bearing pyrite-ilmenite-zircon clast with small amounts of feldspar and augite occurs in NWA 7034. One xenotime crystal was observed at the edge of an altered zircon grain, and a cluster of xenotime crystals resides in a mixture of alteration materials. Pyrite, ilmenite, and zircon in this clast are all highly altered, zircon being the most likely source of Y and HREE now present in xenotime. The association of xenotime with zircon, low U and Th contents, and the low Yb content relative to Gd and Dy in xenotime suggest the possible formation of xenotime as a byproduct of fluid-zircon reactions.
机译:成对的火星角砾岩陨石,西北非洲(NWA)7034和7533,是发现包含稀土元素(REE)磷酸盐和硅酸盐的第一批火星岩石。最常见的情况是磷灰石中的无水独居石-(Ce)夹杂物簇。有时,磷灰石中也存在分区的,不规则的菱镁矿夹杂物。含独居石的磷灰石有时与碱长石和氧化铁有关。接近于磷灰石和独居石的磷灰石通常比主要的磷灰石主体包含更多的F和OH(富F区域),并与主要的主体形成不规则的边界。在局部,富F区的组成可以达到纯氟磷灰石。氯磷灰石基质的组成类似于不含独居石夹杂物的分离磷灰石,以及碎屑中的全面磷灰石。三种磷灰石中独居石的U-Th-总Pb年龄为1.0 +/- 0.4 Ga(2 sigma),1.1 +/- 0.5 Ga(2 sigma)和2.8 +/- 0.7 Ga(2 sigma)火星起源。独居石夹杂物的织构和组成大部分与它们在高温(> 100摄氏度)下通过流体溶解磷灰石和/或绢云母的形成一致。在NWA 7034中,我们观察到了含独居石-白云母/钙霞石的膨润土或砂铁矿碎屑。角屑内部的亚微米REE相和硅酸盐基质中存在无角质独居石和白云母-钙霞石晶粒。独居石-(Ce)和-(Nd)以及白云母-钙霞石-(Ce)和-(Nd)相对于Sm和Nd显示出异常的La和Ce损耗。此外,在NWA 7034中还发生了一个含少量X长石和(Y)的黄铁矿-钛铁矿-锆石的碎屑。在改变后的锆石晶粒的边缘观察到一个Xenotime晶体,并且存在一簇Xenotime晶体。在蚀变材料的混合物中。地壳中的硫铁矿,钛铁矿和锆石都发生了很大的变化,锆石是Xenotime现在存在的最可能的Y和HREE来源。异种时间与锆石的关系,异种时间中相对于Gd和Dy较低的U和Th含量以及低的Yb含量表明,可能形成异种时间作为液态锆石反应的副产物。

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