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Titanian andradite in the Nomo rodingite: Chemistry, crystallography, and reaction relations

机译:诺莫铝矾土中的二氧化钛和辐射:化学,晶体学和反应关系

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摘要

Titanian andradite and hydroandradite containing up to ~ 10 wt% TiO_2 were identified in rodingite as well as the host serpentinite in a sample obtained from the Nomo unit, Nagasaki Metamorphic Rocks (western Kyushu, Japan), representing a Cretaceous subduction complex. The rodingite consists of garnet (solid solution among three end-member compositions: grossular, andradite, and titanian hydrogarnet), diopside and chlorite, along with minor amounts of perovskite, ilmenite, and titanite. This assemblage was formed by metasomatism under conditions of epidote-blueschist facies metamorphism at 0.6-0.8 GPa and ~ 400℃. X-ray single crystal diffraction and chemical analyses determined the formula Ca_(3.00)(Fe_(0.64)~(3+)Ti_(0.24)~(4+)Mg_(0.03)V_(0.03)Sc_(0.01)Al_(0.06)_2(Si_(0.90)Al_(0.03) □_(0.07))_3O_(11.35)(OH)_(0.65,) in which Fe~(3+) preferentially occupies the Y-sites and Ti is solely in the tetravalent state. We propose a new type of coupled substitution, Fe~(3+) + H~+ + □ = Ti~(4+) + □, in the titanian andradite, indicating that it does not belong to the solid solution in the andradite-morimotoite-schorlomite system of the International Mineralogical Association (IMA) classification scheme. The Fe ions are ferric (Fe~(2+) is estimated to be 3% or less), showing that the formation of the titanian andradite occurred under oxidizing conditions. In the reaction zone, the titanian andradite overgrowth on the ilmenite and the partial replacement of the perovskite by titanian andradite show the incorporation of TiO_2 into the garnet via reaction with TiO_2-bearing minerals under relatively oxidizing conditions. In addition, the presence of andradite coronas around the magnetite rim formed from the alteration of primary chromite provides evidence of Ti mobility in the serpentinite. These reaction relations highlight the titanian andradite formation process and allow us to propose associated reactions based on the singular value decomposition method.
机译:在从Nomo单元长崎变质岩(日本九州西部)获得的样品中,在针铁矿和主体蛇纹岩中鉴定出钛白云母,辉石和水硬锰矿,TiO_2含量高达10 wt%,代表白垩纪俯冲复合体。钙镁矿由石榴石(固溶体在三个端部组成:大块状,菱形和钛矿型水石榴石),透辉石和绿泥石以及少量钙钛矿,钛铁矿和钛矿组成。这种组合是由交变作用在0.6-0.8 GPa和〜400℃的Epidote-blueschist相变质条件下形成的。 X射线单晶衍射和化学分析确定了分子式Ca_(3.00)(Fe_(0.64)〜(3+)Ti_(0.24)〜(4+)Mg_(0.03)V_(0.03)Sc_(0.01)Al_(0.06) )_2(Si_(0.90)Al_(0.03)□_(0.07))_ 3O_(11.35)(OH)_(0.65,)其中Fe〜(3+)优先占据Y位并且Ti仅在四价态我们提出了一种新型的偶合取代,Fe〜(3+)+ H〜+ +□= Ti〜(4+)+□,并表明它不属于固溶体。国际矿物学协会(IMA)分类方案中的铁-堇青石-闪锌矿体系。Fe离子是三价铁(Fe〜(2+)估计为3%或更少),表明在氧化作用下发生了钛和铁的形成。在反应区中,钛铁矿和钛铁矿上的过度生长以及钛铁矿和钛矿对钙钛矿的部分替代表明,在相对氧化的情况下,TiO_2通过与含TiO_2的矿物反应而被掺入石榴石中。条件。另外,由初级铬铁矿的变化形成的磁铁矿边缘周围存在和辐射的电晕提供了蛇纹石中Ti迁移的证据。这些反应关系突出了钛酸和辐射的形成过程,并允许我们基于奇异值分解方法提出相关的反应。

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