首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >COMPARATIVE DETERMINATIONS OF TRACE AND MINOR ELEMENTS IN CORAL ARAGONITE BY ION MICROPROBE ANALYSIS, WITH PRELIMINARY RESULTS FROM PHUKET, SOUTHERN THAILAND
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COMPARATIVE DETERMINATIONS OF TRACE AND MINOR ELEMENTS IN CORAL ARAGONITE BY ION MICROPROBE ANALYSIS, WITH PRELIMINARY RESULTS FROM PHUKET, SOUTHERN THAILAND

机译:离子微探针分析法测定珊瑚文石中的微量元素和微量元素(泰国南部普吉岛的初步结果)

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The ion microprobe technique was developed for semiquantitative analysis of trace and miner elements in coralline aragonite. The size of the microprobe beam (ca. 30 mu m diameter) allows an examination of the spatial geochemical heterogeneity of coral skeletons on a much finer scale than has previously been possible. Of the elements investigated magnesium, calcium, rubidium, strontium, barium, and uranium appeared suitable for analysis under the operating conditions used although it was not possible to unequivocally confirm that Rb-85 and U-238 were not subject to molecular interferences. A homogenous carbonate standard was only available for magnesium so some relative ion yields were calculated using a standard silicate glass. Magnesium, rubidium, strontium, and barium concentrations were in reasonable agreement with previously reported values. Uranium concentrations were considerably lower, probably reflecting a miscalibration of the ion microprobe. Reproducibility of analysis was investigated by comparing immediately adjacent pairs of analyses on coral material. Although analytical accuracy was questionable, precision was good and concentration differences between samples reflect true variations in geochemistry. High resolution time series analyses of magnesium, rubidium, strontium, barium, and uranium in Porites lutea corals indicated that the aragonite was heterogeneous on a small spatial scale (over distances attributed to less than one month's skeletal growth). This heterogeneity does not appear to reflect expected variations in seawater temperature or chemistry. It may reflect the metal binding capacity of a heterogeneous organic matrix unevenly distributed throughout the coral skeleton. Individual coral colonies deposited substantially different ranges of Mg and Ba, within and between reef sites, which could lead to significantly different seawater:coral distribution coefficients being calculated between individuals of the same coral species. [References: 30]
机译:开发了离子微探针技术,用于对珊瑚文石中痕量和矿物质的半定量分析。微探针束的大小(直径约30微米)允许以比以前更精细的尺度检查珊瑚骨骼的空间地球化学异质性。在所研究的元素中,镁,钙,rub,锶,钡和铀似乎适合在所使用的操作条件下进行分析,尽管不可能明确证实Rb-85和U-238不受分子干扰。均质的碳酸盐标准品仅适用于镁,因此使用标准的硅酸盐玻璃计算了一些相对离子产率。镁,rub,锶和钡的浓度与先前报道的值在合理范围内。铀浓度要低得多,可能反映了离子微探针的校准错误。通过比较直接相邻的珊瑚材料分析对,研究了分析的可重复性。尽管分析的准确性值得怀疑,但精确度却很高,并且样品之间的浓度差异反映了地球化学的真实变化。对Porites lutea珊瑚中镁,rub,锶,钡和铀的高分辨率时间序列分析表明,文石在较小的空间尺度上是非均质的(由于距离小于一个月的骨骼生长,因此存在距离)。这种异质性似乎并未反映出海水温度或化学成分的预期变化。它可能反映了不均匀分布在整个珊瑚骨骼中的异质有机基质的金属结合能力。在珊瑚礁站点内和之间,各个珊瑚群落沉积的镁和钡含量范围大不相同,这可能导致在同一珊瑚物种的个体之间计算出明显不同的海水:珊瑚分布系数。 [参考:30]

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