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激光烧蚀电感耦合等离子体质谱法对碳酸钙壳中微量元素的基体匹配定量分析:应用于扇贝壳(大扇贝)日生长纹层轮廓的测定

Matrix-matched quantitative analysis of trace-elements in calcium carbonate shells by laser-ablation ICP-MS: application to the determination of daily scale profiles in scallop shell (Pecten maximus).

作者信息

Barats A, Pécheyran C, Amouroux D, Dubascoux S, Chauvaud L, Donard O F X

机构信息

Laboratoire de Chimie Analytique Bio-Inorganique et Environnement, CNRS UMR 5034, Université de Pau et des Pays de l'Adour, Hélioparc Pau-Pyrénées, 64053, Pau Cedex 9, France.

出版信息

Anal Bioanal Chem. 2007 Feb;387(3):1131-40. doi: 10.1007/s00216-006-0954-8. Epub 2007 Jan 3.

Abstract

A micro-scale method has been developed for analysis of trace-element concentration profiles in the calcium carbonate shell of the Great Scallop (Pecten maximus). UV laser ablation at 266-nm coupled with ICP-MS detection was used to analyse daily calcite striae of shell samples to obtain high temporal resolution of trace element incorporation. Analysis of scallop shells was carefully examined to determine the quality of calcium carbonate ablation and calibration. An accurate external calibration method based on matrix matching was developed. Twelve sodium-free enriched calcium carbonate standards containing up to twenty-four elements were prepared, by co-precipitation with aqueous ammonia and NH(4)HCO(3), and subsequently back-calibrated in the laboratory. These CaCO(3) standards were found to be homogenous and their use enabled sensitive quantitative analysis (detection limits of a few ng g(-1)) over a wide range of concentrations (0.1 to 500 microg g(-1)). Use of these CaCO(3) standards was also evaluated by analysis of three calcium-rich certified reference materials. Because calibration was consistent with the certified results, this analytical method is a sensitive tool for analysis of environmental calcium carbonate matrices. Repeated analysis of scallop shell samples collected simultaneously at the same location showed that the trace elements are homogeneously distributed along a stria. The reliability of such in-situ records of biogenic calcium carbonate (scallop shells) is apparent from the inter-individual and inter-annual reproducibility of the trace element profiles.

摘要

已开发出一种微尺度方法,用于分析大扇贝(Pecten maximus)碳酸钙壳中的微量元素浓度分布。采用266 nm紫外激光烧蚀结合电感耦合等离子体质谱检测,分析贝壳样品的日生长方解石纹层,以获得微量元素掺入的高时间分辨率。仔细研究了扇贝贝壳的分析,以确定碳酸钙烧蚀和校准的质量。开发了一种基于基质匹配的精确外部校准方法。通过与氨水和NH(4)HCO(3)共沉淀制备了12种不含钠的富集碳酸钙标准物质,其中含有多达24种元素,随后在实验室进行反校准。发现这些CaCO(3)标准物质具有均匀性,使用它们能够在很宽的浓度范围(0.1至500 μg g(-1))内进行灵敏的定量分析(检测限为几ng g(-1))。还通过分析三种富含钙的有证标准物质评估了这些CaCO(3)标准物质的使用情况。由于校准结果与认证结果一致,这种分析方法是分析环境碳酸钙基质的灵敏工具。对在同一地点同时采集的扇贝贝壳样品进行重复分析表明,微量元素沿纹层均匀分布。生物源碳酸钙(扇贝贝壳)这种原位记录的可靠性从微量元素分布的个体间和年际再现性中可见一斑。

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