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通过合成材料与天然材料直接熔融制备用于钛矿物微分析的校准材料:钛铁矿和金红石中一些重要微量元素的激光烧蚀电感耦合等离子体质谱分析经验

Preparation of calibration materials for microanalysis of Ti minerals by direct fusion of synthetic and natural materials: experience with LA-ICP-MS analysis of some important minor and trace elements in ilmenite and rutile.

作者信息

Odegård M, Mansfeld J, Dundas S H

机构信息

Geological Survey of Norway, Trondheim.

出版信息

Fresenius J Anal Chem. 2001 Aug;370(7):819-27. doi: 10.1007/s002160100844.

Abstract

Calibration materials for microanalysis of Ti minerals have been prepared by direct fusion of synthetic and natural materials by resistance heating in high-purity graphite electrodes. Synthetic materials were FeTiO3 and TiO2 reagents doped with minor and trace elements; CRMs for ilmenite, rutile, and a Ti-rich magnetite were used as natural materials. Problems occurred during fusion of Fe2O3-rich materials, because at atmospheric pressure Fe2O3 decomposes into Fe3O4 and O2 at 1462 degrees C. An alternative fusion technique under pressure was tested, but the resulting materials were characterized by extensive segregation and development of separate phases. Fe2O3-rich materials were therefore fused below this temperature, resulting in a form of sintering, without conversion of the materials into amorphous glasses. The fused materials were studied by optical microscopy and EPMA, and tested as calibration materials by inductively coupled plasma mass spectrometry, equipped with laser ablation for sample introduction (LA-ICP-MS). It was demonstrated that calibration curves based on materials of rutile composition, within normal analytical uncertainty, generally coincide with calibration curves based on materials of ilmenite composition. It is, therefore, concluded that LA-ICP-MS analysis of Ti minerals can with advantage be based exclusively on calibration materials prepared for rutile, thereby avoiding the special fusion problems related to oxide mixtures of ilmenite composition. It is documented that sintered materials were in good overall agreement with homogeneous glass materials, an observation that indicates that in other situations also sintered mineral concentrates might be a useful alternative for instrument calibration, e.g. as alternative to pressed powders.

摘要

用于钛矿物微分析的校准材料是通过在高纯石墨电极中电阻加热直接熔融合成材料和天然材料制备的。合成材料是掺杂了微量和痕量元素的钛酸亚铁(FeTiO₃)和二氧化钛(TiO₂)试剂;钛铁矿、金红石和富钛磁铁矿的标准参考物质用作天然材料。富含Fe₂O₃的材料在熔融过程中出现了问题,因为在大气压下,Fe₂O₃在1462℃时会分解成Fe₃O₄和O₂。测试了一种加压下的替代熔融技术,但所得材料的特征是广泛的偏析和分离相的形成。因此,富含Fe₂O₃的材料在该温度以下熔融,导致一种烧结形式,而材料没有转化为非晶态玻璃。通过光学显微镜和电子探针微分析(EPMA)研究了熔融材料,并通过配备激光烧蚀进样的电感耦合等离子体质谱法(LA-ICP-MS)作为校准材料进行测试。结果表明,在正常分析不确定度范围内,基于金红石成分材料的校准曲线通常与基于钛铁矿成分材料的校准曲线一致。因此,可以得出结论,钛矿物的LA-ICP-MS分析可以有利地仅基于为金红石制备的校准材料,从而避免与钛铁矿成分的氧化物混合物相关的特殊熔融问题。记录表明,烧结材料与均匀的玻璃材料总体上吻合良好,这一观察结果表明,在其他情况下,烧结的矿物精矿也可能是仪器校准的有用替代品,例如作为压制粉末的替代品。

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