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首页> 外文期刊>Journal of geophysical research. Planets >Mixing relationships and the effects of secondary alteration in the Wishstone and Watchtower Classes of Husband Hill, Gusev Crater, Mars
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Mixing relationships and the effects of secondary alteration in the Wishstone and Watchtower Classes of Husband Hill, Gusev Crater, Mars

机译:混合的影响关系和次要的变更Wishstone和瞭望塔类的丈夫希尔,古谢夫陨石坑,火星

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摘要

The Wishstone and Watchtower Class rocks on Husband Hill preserve evidence for a geochemical relationship consistent with two-component mixing between a high Al2O3, TiO2, CaO, Na2O, P2O5 end-member and a second end-member enriched in the elements MgO, Zn, S, Br, and Cl. The first end-member appears to be reasonably well represented by rocks of the Wishstone Class, while the second end-member is consistent with a chemical component, not represented by any lithology encountered by Spirit. The Watchtower Class appears to be an intermediate in the mixture. The concentration of the redox sensitive elements Fe and Mn display no systematic variation between rock classes, and the Fe-redox state of the Watchtower Class is elevated relative to the Wishstone Class. Combined with evidence for two-component mixing, these observations suggest that the mixture was generated by interaction between an initially Wishstone-like deposit and a fluid phase enriched in the elements MgO, Zn, S, Br, and Cl. The fluid phase may have been weakly acidic (pH > 4) to basic (pH ≥ 9), resulting in oxidation and immobilization of Fe and Mn. A number of secondary rock surface alteration processes which obscure the mixing relationship are also identified. These include (1) removal of CaO and P2O5 from rock surfaces by dissolution of Ca-phosphate minerals under acidic, low water-to-rock ratio conditions, (2) addition of SO3 to rock surfaces via aeolian deposition of high SO3 soil and/or precipitation of sulfate salts from solution, and (3) homogenization of rock surface chemistry by soil contamination.
机译:Wishstone和瞭望塔类岩石丈夫山保护地球化学证据符合双组分混合的关系之间的高氧化铝、二氧化钛、曹Na2O P2O5包体和第二个包体丰富采用的元素、锌、年代,Br, Cl。包体似乎相当不错由岩石Wishstone类的,而第二个包是一致的化学成分,而不是由任何表示岩性遇到的精神。类似乎是一个中间的混合物。铁和锰元素显示没有系统性岩石类之间的变异,Fe-redox瞭望塔类是升高的状态相对于Wishstone类。双组分混合的证据,这些观察结果表明,混合之间的相互作用所产生的最初Wishstone-like存款和流体相纯度采用的元素,锌、年代、Br、Cl。阶段可能是弱酸性(pH > 4)基本(pH值≥9),导致氧化固定的铁和锰。二次岩石表面蚀变过程也掩盖了混合关系识别。P2O5从岩石表面的解散Ca-phosphate矿物质在酸性下,低water-to-rock比条件,(2)增加SO3通过风成沉积的岩石表面高SO3土壤和/或硫酸沉淀盐解决方案,和(3)化的岩石表面化学,土壤污染。

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