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首页> 外文期刊>The American mineralogist >Crystal chemistry of lunar merrillite and comparison to other meteoritic and planetary suites of whitlockite and merrillite
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Crystal chemistry of lunar merrillite and comparison to other meteoritic and planetary suites of whitlockite and merrillite

机译:月球绢云母的晶体化学性质以及与其他陨石和行星状辉钼矿和绢云母的比较

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Merrillite, also known as "whitlockite," is one of the main phosphate minerals, along with apatite, that occur in lunar rocks, martian meteorites, and in many other groups of meteorites. Significant structural differences between terrestrial whitlockite and lunar (and meteoritic) varieties warrant the use of "merrillite" for the H-free extraterrestrial material, and the systematic enrichment of REE in lunar merrillite warrants the use of "RE-merrillite." Laser Raman spectroscopy of extraterrestrial merrillite and terrestrial whitlockite confirms the absence of H in the former and presence of H in the latter. Lunar merrillite, ideally (Mg, Fe2+, Mn2+)(2)[Ca18-x (Y,REE)(x)](Na2-x)(P,Si)(14)O-56, contains high concentrations of Y+REE, reaching just over 3 atoms per 56 O atoms, or up to similar to 18 wt% as (Y,RE)(2)O-3. In the absence of extensive Si <-> P substitution, the "availability" of the Na site limits Y+REE substitution to similar to 2 atoms per 56 O atoms. Higher concentrations of Y+REE, with coupled substitution of Si for P to balance charge are possible, but rare in lunar material. Intrinsically low Na. concentrations in lunar rocks, combined with the typical formation of merrillite in late-stage basaltic mesostasis or residual, intercumulus melt pockets, produce these high REE concentrations. Lunar merrillite typically contains 0.1-0.4 Na atoms per 56 O atoms. For comparison, martian merrillite contains significantly higher Na concentrations (up to 1.7 Na atoms per 56 O atoms) and much lower REE concentrations. Meteoritic merrillite has relatively low REE contents, but exists in both Ca-rich and Na-rich varieties. Concentrations of Fe and Mg in all varieties sum to near 2 atoms per 56 O atoms. Merrillite in lunar crustal lithologies typically has Mg Fe; however, Fe-rich mare basalts contain up to 1.8 Fe2+ per 56 O. The structure of merrillite accommodates a variety of substitutions, and the compositional characteristics reflect conditions and processes specific to the parent planet.
机译:蒙脱石,也称为“硅钙铁矿”,是磷灰石和磷灰石的主要磷酸盐矿物之一,它们发生在月球岩石,火星陨石和许多其他陨石中。陆生辉绿岩与月球(和陨石)变种之间的重大结构差异,使得无H的外星物质需要使用“绢云母”,而在月球绢云母中REE的系统富集则需要使用“ RE-绢云母”。地外的美林岩和陆地的辉锰矿的激光拉曼光谱证实了前者中不存在H,而后者中则存在H。理想的(Mg,Fe2 +,Mn2 +)(2)[Ca18-x(Y,REE)(x)](Na2-x)(P,Si)(14)O-56的月球堇青石含有高浓度的Y + REE,每56个O原子刚好超过3个原子,或高达(Y,RE)(2)O-3的18 wt%。在没有广泛的Si-P取代的情况下,Na位的“可用性”将Y + REE取代限制为每56个O原子有两个相似的原子。较高的Y + REE浓度以及用Si代替P来平衡电荷是可能的,但在月球物质中很少见。本质上是低钠。在月球岩石中的高浓度稀土元素,再加上在后期玄武质介导作用中形成的典型的硫铁矿或残余的丘间熔体囊,都会产生这些高的稀土元素浓度。月球磷铝石通常每56个O原子含有0.1-0.4个Na原子。为了进行比较,火星绢云母中的Na浓度要高得多(每56 O原子最多含1.7个Na原子),而REE浓度要低得多。陨石陨石的稀土元素含量相对较低,但同时存在于富含Ca和Na的品种中。所有种类的Fe和Mg的浓度总计为每56 O原子2个原子。月球地壳岩性中的美铝石通常具有Mg Fe。然而,富铁母马玄武岩每56 O最多包含1.8 Fe2 +。硫铁矿的结构可适应多种取代,其组成特征反映了母行星特有的条件和过程。

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