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Chromian tourmaline and associated Cr-bearing minerals from the Nevado-Filabride Complex (Betic Cordilleras, SE Spain)

机译:内华达-费拉布莱德综合体(西班牙东南部贝蒂科迪勒拉斯)的铬碧玺和相关的含铬矿物

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Chromian tourmaline, in association with other Cr-bearing minerals (amphibole, mica, epidote, chlorite, titanite, rutile and chromian spinel), occurs in fine calc-schist levels within metacarbonate rocks from the Nevado-Filábride Complex, SE Spain. Electron microprobe analyses of tourmaline and coexisting minerals document both chemical differences dependent on the host-rock type and an irregular distribution of Cr at grain scale. Tourmaline is Na-rich dravite, with average Mg/(Mg+Fe) ratios of 0.83 and 0.63 a.p.f.u. and Cr contents of 0.32 and 0.18 a.p.f.u., in dolomitic and ankeritic marbles, respectively. Tourmaline contains small but significant concentrations of Zn (av. 0.01 a.p.f.u.) and in ankeritic marble it also contains Ni (av. 0.04 a.p.f.u.). Zn-rich chromian spinel appears as small relict inclusions in silicates, with average Cr, Fe, Al and Zn contents of 1.201, 1.241, 0.411 and 0.107 a.p.f.u., respectively. Amphibole, epidote, mica and chlorite show average Cr contents of 0.088, 0.138, 0.115 and 0.267 a.p.f.u., respectively, in dolomitic marbles, and 0.103, 0.078, 0.065 and 0.185 a.p.f.u., respectively, in ankeritic marbles. Cr-silicates formed through metamorphic reactions involving detrital Cr-rich spinel, in addition to clay minerals and carbonates. The B necessary to form tourmaline was probably derived from the leaching of underlying evaporitic rocks.
机译:铬碧玺与其他含铬矿物 (闪石,云母,山竹,绿泥石,钛矿,金红石和铬铁石)结合在一起,以细的钙片含量存在来自西班牙东南部内华达州-费拉布里德综合体的metacarbonate 岩石。电气石和共存矿物的电子 微探针分析 两者的化学差异均取决于基质岩石类型和 铬在晶粒尺寸上的不规则分布。电气石是 富含Na的德拉维特,平均Mg /(Mg + Fe)比为0.83, 0.63a.p.f.u。在 白云石和无角大理石中,Cr的含量分别为0.32和0.18 a.p.f.u.。电气石含有 少量但显着浓度的Zn(平均水平为0.01 apfu) ,在防锈大理石中也含有Ni(平均水平为0.04 apfu)。 富锌铬尖晶石在 硅酸盐中表现为小的残留物,平均Cr,Fe,Al和Zn含量分别为1.201, 1.241、0.411和0.107 apfu。在白云岩大理石, 和0.103中,闪石,附子, 云母和亚氯酸盐的平均Cr含量分别为0.088、0.138, 0.115和0.267。 ,分别在 防弹大理石中为,分别为0.078、0.065和0.185 apfu。除粘土矿物 和碳酸盐外,还通过涉及碎屑富铬尖晶石的变质反应 形成了铬硅酸盐。形成电气石所必需的B可能是 来自下层蒸发岩的浸出。

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