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Coordination of Sr and Mg in calcite and aragonite

机译:方解石和文石中Sr和Mg的配位

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Strontium and Mg in calcite and aragonite are widely used as proxies of temperature in palaeo-environmental reconstructions. We use X-ray absorption fine structure (XAFS) to examine Sr and Mg substitution in calcite and aragonite. We have measured the K-edge X-ray absorption near-edge structure (XANES) and extended X-ray absorption fine structure (EXAFS) of Mg and Sr-bearing calcite and aragonite, plus the carbonates: strontianite, hydromagnesite, magnesite, dolomite and a suite of calcites with differing amounts of Mg. The Sr substitutes ideally for Ca in aragonite but causes a small (2%) dilation of the site. Strontium substitutes for octahedral Ca in calcite but with a 6.5% dilation and distortion. Magnesium in the calcites studied provides a variable XANES indicating that the Mg structural state in calcite is variable. Refinement of EXAFS gives Mg–O bond distances of ~2.12 Å, which are much smaller than the Ca–O bond distance of 2.35 Å but consistent with published amounts of relaxation of the calcite structure. The XANES and EXAFS are consistent with a model whereby some calcites contain nanodomains, e.g. of dolomite and/or huntite structures. The variability in the XANES can be explained by domains of different types and/or sizes. Substitution of Mg into aragonite has 9-fold coordination but relatively short bond distances (2.08 Å) demonstrating either: (1) substantial distortion of the site; or (2) that Mg is accommodated in nanodomains of an unknown phase. Variability in the Mg structural state in calcite may be linked to the variety of temperature dependences observed, e.g. in foraminiferal calcite.
机译:方解石和文石中的锶和镁被广泛用作古环境重建中的温度代理。我们使用X射线吸收精细结构(XAFS)来检查Sr 和方解石和文石中的镁替代。我们已经测量了 K边缘X射线吸收近边缘结构(XANES)和 扩展的Mg和含Sr的X射线吸收精细结构(EXAFS)< sup> 方解石和文石,以及碳酸盐:锶锶矿,水菱镁矿, 菱镁矿,白云石和一系列方解石,其中镁含量 不同。 Sr可以理想地替代文石中的Ca,但会导致该位置的 很小(2%)膨胀。锶替代方解石中的 八面体Ca,但膨胀和变形为6.5%。 方解石中的镁提供了XANES 变量,表明Mg方解石中的结构状态是可变的。 EXAFS的精制处理得到的Mg-O键距离为〜2.12 Å,远小于Ca-O键距离 < / sup>为2.35Å,但与方解石结构的弛豫 一致。 XANES和EXAFS与模型保持一致 ,其中一些方解石包含纳米域,例如白云石和/或hunt石结构的 的变异性可以通过不同类型和/或 大小的域来解释。 Mg取代文石具有9倍的配位 ,但键距相对较短(2.08Å),表明 :(1)该位点严重变形;或(2) Mg被容纳在未知相的纳米域中。方解石中Mg结构状态的变异性 可能与所观察到的温度依赖性的变化 有关。在有孔虫方解石中。

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