首页> 外文期刊>Journal of Mineralogical and Petrological Sciences >Chromian Pumpellyite And Associated Chromian Minerals From Sangun Metamorphic Rocks, Osayama, Southwest Japan
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Chromian Pumpellyite And Associated Chromian Minerals From Sangun Metamorphic Rocks, Osayama, Southwest Japan

机译:日本西南部大山县Sangun变质岩中的Chromian Pumpellyite和相关的Chromian矿物

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摘要

Chromian pumpellyite and associated chromian minerals occur in basic schists in the Osayama ultramafic body in Okayama Prefecture, southwest Japan. The minerals were investigated to examine their chromium contents and mode of occurrence. The chromian minerals occur in basic schist blocks within the ultramafic body, but have not been found in basic schists adjacent to the ultramafic body. Three mineral assemblages were recognized in the basic schist blocks from the ultramafic body: (1) tremolite + chromian pumpellyite + chromian phengite + chromian chlorite + relic chromite; (2) amphibolc + chromian chlorite + chromian omphacite + chromian pumpellyite + titanite; (3) diopside + chromian chlorite + chromian vesuvianite + chromian garnet + stilpnomelane + titanite + ilmenite ± relic chromite. Chromian pumpellyite, chromian phengite, chromian chlorite and relic chromite in assemblage (1) form domains in a matrix consisting of fine prismatic tremolite crystals. In assemblage (2), chromian pumpellyite occurs within chromian chlorite domains, and chromian omphacite is distributed along their margins. In assemblage (3), chromian vesuvianite, chromian garnet and stilpnomelane form veinlets along fine fractures within chromian chlorite domains.rnChromian pumpellyite is reddish gray and twinned. The Cr distribution is extremely heterogeneous, and Cr_2O_3 content is highest around chromite, reaching 13.3 wt%. However, Fe distribution is relatively uniform, and is not related to the distribution of chromite. On the basis of the distribution coefficient of Cr between the X and Y sites determined by Nagashima and Akasaka (2007), the chemical formula of the chromian pumpellyite with greatest Cr_2O_3 content is calculated to be (K_(0.02)Na_(0.19)Ca_(7.86))∑_(8.07)(Mn_(0.05)~(21)Fe_(0.35)~(21)Ni_(0.01)Mg_(1.71)Cr_(1.13)Al_(0.76))∑_(4.01)(Cr_(2.34)rnV_(0.01)Al_(5.65))∑_(8.00)(Al_(0.16)Si_(11.84))∑_(12.00)O_(41.66)(OH)_(14.34).rnThe chromian mineral domains often contain relic chromite, and regions rich in Cr are confirmed to the vicinity of these chromite grains. These features suggest that chromite is the source of the Cr in the chromian metamorphic minerals, and that metamorphic fluid caused dissolution of chromite and diffusion of Cr into the surrounding metamorphic minerals. The bulk compositions of the basic schist blocks in the ultramafic body suggest their protoliths were ultrabasic rocks of picrobasaltic composition.
机译:在日本西南部的冈山县,冈山超镁铁质岩体中的碱性片岩中存在铬质水手榴石和伴生的铬质矿物。对这些矿物进行了调查,以检查其铬含量和发生方式。铬矿物质存在于超镁铁质岩体的基本片岩块中,但未在与超镁铁质岩体相邻的碱性片岩中发现。在超镁铁质岩体的基本片岩块中发现了三种矿物组合:(1)透闪石+铬铁水铝石+铬铁变质岩+铬铁亚氯酸盐+遗留铬铁矿; (2)闪石+铬绿亚氯酸盐+铬绿辉石+铬水闪石+钛矿; (3)透辉石+铬绿亚氯酸盐+铬绿维苏石+铬石榴石+ stilpnomelane +钛矿+钛铁矿±遗迹亚铬铁矿。铬铁水手榴石,铬铁亚辉石,铬铁亚氯酸盐和遗留亚铬铁矿在由细棱晶透闪石晶体组成的基质中形成畴。在组合(2)中,铬绿水钠钙石存在于铬绿亚氯酸盐域内,铬绿辉石沿其边缘分布。在组合(3)中,铬铁维苏石,铬铁石榴石和stilpnomelane沿着铬绿亚铁矿域内的细裂缝形成脉状。铬铬绿水pump石为红灰色并孪晶。 Cr的分布非常不均匀,Cr_2O_3含量在亚铬铁矿附近最高,达到13.3 wt%。但是,Fe的分布相对均匀,与亚铬酸盐的分布无关。根据长岛和赤坂(2007)确定的Cr在X和Y位点之间的分布系数,计算出Cr_2O_3含量最高的铬水pump水石的化学分子式为(K_(0.02)Na_(0.19)Ca_( 7.86))∑_(8.07)(Mn_(0.05)〜(21)Fe_(0.35)〜(21)Ni_(0.01)Mg_(1.71)Cr_(1.13)Al_(0.76))∑_(4.01)(Cr_( 2.34)rnV_(0.01)Al_(5.65))∑_(8.00)(Al_(0.16)Si_(11.84))∑_(12.00)O_(41.66)(OH)_(14.34).rn铬矿矿区通常含有遗物在这些铬铁矿晶粒附近确认到铬铁矿和富含Cr的区域。这些特征表明,铬铁矿是铬铁矿变质矿物中Cr的来源,而变质流体导致铬铁矿溶解和Cr扩散到周围的变质矿物中。超镁铁质岩体中基本片岩块体的大量组成表明,它们的原岩是微玄武岩组成的超碱性岩石。

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