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首页> 外文期刊>Journal of mineralogical and petrological sciences >Analysis of Mn-bearing lawsonite occurring in meta-siliceous rocks in Hakoishi serpentinite mélange of Kurosegawa Belt, Central Kyushu, Japan
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Analysis of Mn-bearing lawsonite occurring in meta-siliceous rocks in Hakoishi serpentinite mélange of Kurosegawa Belt, Central Kyushu, Japan

机译:日本九州中部黑濑​​川地区函石蛇纹岩混杂岩中准硅质岩中含锰的钙钠榴石的分析

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Mn-bearing lawsonite was discovered in meta-siliceous rocks metamorphosed under the lawsonite-blueschist facies formed at less than 350 °C and 0.8-1.0 GPa in the Hakoishi serpentinite mélange of the Kurosegawa Belt, Central Kyushu, Japan. The lawsonite deposits were accompanied by those of hematite, braunite (Mn~(2+)Mn_(6)~(3+)SiO_(12)), and quartz, indicating that the rock had metamorphosed under high Oxygen fugacity (f _(O2)) (~ -20 < log f _(O2) < -5) at the abovementioned P-T conditions. The Oxygen fugacity led to the conversion of all the iron into ferric compounds and some of the manganese into its trivalent form. As a result, the lawsonite was found to contain a significant amount of (Mn~(3+) + Fe~(3+)), substituting ~ 5-11 mol% of Al in the ideal lawsonite formula. Lawsonite in meta-siliceous rocks metamorphosed under low f _(O2) state (~ log f _(O2) < -20), and metabasites collected from the same mélange contained lesser amount of (Mn~(3+) + Fe~(3+)), substituting ~ 3-5 mol%. The amount of Sr and Ba in the analyzed lawsonite were below the detection limit of energy-dispersive microprobe analysis, ~ <0.1 wt%. This indicated the existence of an unknown endmember of the lawsonite group of minerals, CaFe_(2)~(3+)Si_(2)O_(7)(OH)_(2)·H_(2)O or CaMn_(2)~(3+)Si_(2)O_(7)(OH)_(2)·H_(2)O on the basis of the observed substitution. The extremely high f _(O2) state that results in the conversion of all the iron into ferric compounds along with the Mn-rich local chemical compositions would necessarily enhance (Mn~(3+) + Fe~(3+)) ? Al substitution in lawsonite.
机译:在日本九州中部黑川川地带的函石蛇纹岩混杂岩中,在低于350°C和0.8-1.0 GPa的硅钙石-蓝胶岩相下,变质的硅质岩中发现了含锰的钙硅钙石。钙钛矿矿床伴有赤铁矿,褐铁矿床(Mn〜(2+)Mn_(6)〜(3+)SiO_(12))和石英的矿床,表明该岩石在高氧逸度下变质了(在上述 PT条件下,f _(O2))(〜-20 (O2)<-20)下变质,从同一混杂岩中收集的变质岩中的(Mn〜(3)较少+)+ Fe〜(3+)),代替〜3-5 mol%。被分析的钙钠矿中的Sr和Ba含量低于能量分散微探针分析的检测极限,≤<0.1 wt%。这表明存在着钙钛矿矿物中未知的端基CaFe_(2)〜(3+)Si_(2)O_(7)(OH)_(2)·H_(2)O或CaMn_(2)根据观察到的取代,〜(3+)Si_(2)O_(7)(OH)_(2)·H_(2)O。导致所有铁都转化为三价铁化合物以及富锰局部化学成分的极高的f _(O2)状态必定会增强(Mn〜(3+)+ Fe〜(3+) )?铝在钙钠铝石中的替代。

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