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High spatial resolution analysis of ferromanganese concretions by LA-ICP-MS†

机译:通过LA-ICP-MS†对高锰铁凝结物进行高空间分辨率分析

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摘要

A procedure was developed for the determination of element distributions in cross-sections of ferromanganese concretions using laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS). The effects of carrier flow rates, rf forward power, ablation energy, ablation spot size, repetition rate and number of shots per point on analyte intensity were studied. It is shown that different carrier gas flow rates are required in order to obtain maximum sensitivities for different groups of elements, thus complicating the optimisation of ICP parameters. On the contrary, LA parameters have very similar effects on almost all elements studied, thus providing a common optimum parameter set for the entire mass range. However, for selected LA parameters, the use of compromise conditions was necessary in order to compensate for relatively slow data acquisition by ICP-MS and maintain high spatial resolution without sacrificing the multielemental capabilities of the technique. Possible variations in ablation efficiency were corrected for mathematically using the sum of Fe and Mn intensities. Quantification by external calibration against matrix-matched standards was successfully used for more than 50 elements. These standards, in the form of pressed pellets (no binder), were prepared in-house using ferromanganese concentrates from a deep-sea nodule reference material as well as from shallow-marine concretions varying in size and having different proportions of three major phases: aluminosilicates, Fe- and Mn-oxyhydroxides. Element concentrations in each standard were determined by means of conventional solution nebulisation ICP-MS following acid digestion. Examples of selected inter-element correlations in distribution patterns along the cross-section of a concretion are given.
机译:开发了一种使用激光烧蚀电感耦合等离子体质谱法(LA-ICP-MS)测定铁锰凝固断面中元素分布的程序。研究了载流子流速,射频前向功率,消融能量,消融斑大小,重复率和每点发射次数对分析物强度的影响。结果表明,为了获得不同元素组的最大灵敏度,需要使用不同的载气流速,从而使ICP参数的优化复杂化。相反,LA参数对几乎所有研究的元素都有非常相似的影响,因此为整个质量范围提供了一个通用的最佳参数集。但是,对于选定的LA参数,必须使用折衷条件,以补偿ICP-MS相对较慢的数据采集并保持高空间分辨率,而又不牺牲该技术的多元素功能。使用Fe和Mn强度的总和在数学上校正了消融效率的可能变化。通过针对基质匹配标准品的外部校准进行的定量分析已成功用于50多种元素。这些标准品以压丸(无粘合剂)的形式在内部使用铁锰精矿内部制备,这些铁锰精矿来自深海结核参考物质以及大小各异且具有不同比例的三个主要相的浅海凝结物:铝硅酸盐,铁和锰的羟基氧化物。酸消解后,通过常规溶液雾化ICP-MS测定每种标准物中的元素浓度。给出了沿混凝土横截面分布模式中选定元素间相关性的示例。

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