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首页> 外文期刊>Clay Minerals >The accurate crystal chemistry of ferric smectites from the lateritic nickel ore of Murrin Murrin (Western Australia). Ⅱ. Spectroscopic (IR and EXAFS) approaches
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The accurate crystal chemistry of ferric smectites from the lateritic nickel ore of Murrin Murrin (Western Australia). Ⅱ. Spectroscopic (IR and EXAFS) approaches

机译:Murrin Murrin(西澳大利亚州)的红土镍矿中蒙铁铁的精确晶体化学。 Ⅱ。光谱(IR和EXAFS)方法

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摘要

Fe-rich smectites from lateritic weathering profiles have previously been studied by XRD, ICP-AES, SEM-EDX and TEM-EDX analyses (Gaudin et al., 2004). These smectites exhibit intermediate chemistries between five end-members: Al-Fe beidellites, Al-Fe montmorillonites and Mg+Ni-saponite. The Spectroscopic study by FTIR and XAS of these smectites reveals that: (1) tetrahedral Fe~(3+) is near or below the detection limit (0.05 cation for 4Si); (2) the large chemical variability is due to substitution of the three major cations (Fe, Al, Mg) within adjacent octahedra; (3) Ni is not concentrated in another clay phase such as Ni-kerolite and is located in the octahedral sheets of smectite; (4) octahedral cations are not randomly distributed but ordered in separated Fe, Al, Mg, Ni clusters; (5) the Mg-Ni saponite end-member actually appears as small trioctahedral clusters of Mg and Ni distributed within the dioctahedral smectite.
机译:以前已经通过XRD,ICP-AES,SEM-EDX和TEM-EDX分析研究了来自红土风化剖面的富铁蒙脱石(Gaudin等,2004)。这些蒙脱石在五个末端成员之间表现出中间化学性质:铝铁贝得石,铝铁蒙脱石和镁镍皂石。 FTIR和XAS对这些绿土的光谱研究表明:(1)四面体Fe〜(3+)接近或低于检出限(4Si为0.05阳离子); (2)较大的化学变异性是由于相邻八面体中的三个主要阳离子(Fe,Al,Mg)被取代所致; (3)Ni不集中在另一个粘土相中,例如Ni-kerolite,位于蒙脱石的八面体薄片中; (4)八面体阳离子不是随机分布,而是排列在分开的Fe,Al,Mg,Ni簇中; (5)Mg-Ni皂石的最终成员实际上是分布在二八面体蒙脱石中的Mg和Ni的小三面体簇。

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