Julio C. Chávez-Ambriz, Juan Pablo Bernal, Bodo Weber, Carlos Ortega-Obregón, Liliana Corona-Martínez, Óscar Carranza-Castañeda
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Here we thoroughly characterise several teeth from <i>Carcharinus leucas</i> (Bull shark) for the spatial distribution of Sr and Rb mass fraction by LA-ICP-Q-MS, and their <sup>87</sup>Sr/<sup>86</sup>Sr ratio by solution MC-ICP-MS, MC-TIMS and LA-MC-ICP-MS, and which were used subsequently as a reference material during laser ablation measurement of Sr isotope ratios in bioapatite. We establish a protocol to estimate the <sup>85</sup>Rb/<sup>87</sup>Rb mass bias from the analysis of shark teeth that demonstrates that the common assumption of equal Sr and Rb instrument induced fractionation can lead to a systematic bias in <sup>87</sup>Sr/<sup>86</sup>Sr isotope ratios. Using the shark teeth as an \"external\" reference material to measure β<sub>Rb</sub> yielded <sup>87</sup>Sr/<sup>86</sup>Sr compositions in unknown samples that are within approximately -42 ppm to +66 ppm of expected values, instead of approximately -50 ppm to +190 ppm if assuming β<sub>Rb</sub> = β<sub>Sr</sub>. Finally, this methodology was tested on fossil gomphotherid (<i>Rhynchotherium sp.)</i> enamel, allowing us to make preliminary inferences about its palaeobiogeography.</p>","PeriodicalId":12631,"journal":{"name":"Geostandards and Geoanalytical Research","volume":"48 3","pages":"595-612"},"PeriodicalIF":2.7000,"publicationDate":"2024-07-25","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://onlinelibrary.wiley.com/doi/epdf/10.1111/ggr.12576","citationCount":"0","resultStr":"{\"title\":\"Accuracy Improvement in the LA-MC-ICP-MS Measurement of 87Sr/86Sr in Bioapatite Using Dentin of Carcharinus leucas (Bull shark) to Estimate 87Rb/85Rb Instrument Induced Fractionation\",\"authors\":\"Julio C. 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引用次数: 0
摘要
利用激光烧蚀(LA-)MC-ICP-MS 对生物磷灰石进行原位 87Sr/86Sr 显微分析是来源研究的重要工具,因为珐琅质组织的堆积记录了摄入食物和水源的区域性 Sr 同位素组成。有几个因素阻碍了可靠而精确的 87Sr/86Sr 数据的获取:等压干扰、Rb 和 Sr 的元素和同位素分馏以及缺乏经过认证的参考材料。在此,我们通过 LA-ICP-Q-MS 对鳞鲨牙齿的 Sr 和 Rb 质量分数的空间分布进行了全面鉴定,并通过溶液 MC-ICP-MS、MC-TIMS 和 LA-MC-ICP-MS 对其 87Sr/86Sr 比值进行了鉴定,这些牙齿随后被用作激光烧蚀测量生物磷灰石中 Sr 同位素比值的参考材料。我们建立了一个从鲨鱼牙齿分析中估算 85Rb/87Rb 质量偏差的方案,该方案证明了 Sr 和 Rb 仪器诱导分馏相等的常见假设可能会导致 87Sr/86Sr 同位素比值的系统性偏差。使用鲨鱼牙齿作为 "外部 "参考材料来测量βRb,未知样品中的87Sr/86Sr组成与预期值相差约-42ppm至+66ppm,而如果假设βRb = βSr,则相差约-50ppm至+190ppm。最后,我们在化石鹅掌虫(Rhynchotherium sp.)珐琅质上测试了这一方法,从而对其古生物地理做出了初步推断。
Accuracy Improvement in the LA-MC-ICP-MS Measurement of 87Sr/86Sr in Bioapatite Using Dentin of Carcharinus leucas (Bull shark) to Estimate 87Rb/85Rb Instrument Induced Fractionation
In situ87Sr/86Sr microanalysis in bioapatite using laser ablation (LA-)MC-ICP-MS is an essential tool for provenance studies, as enamel tissue build-up records the regional Sr isotopic composition of ingested food and water sources. Several factors hamper the acquisition of reliable and precise 87Sr/86Sr data: isobaric interferences, elemental and isotopic fractionation of Rb and Sr, and the lack of certified reference materials. Here we thoroughly characterise several teeth from Carcharinus leucas (Bull shark) for the spatial distribution of Sr and Rb mass fraction by LA-ICP-Q-MS, and their 87Sr/86Sr ratio by solution MC-ICP-MS, MC-TIMS and LA-MC-ICP-MS, and which were used subsequently as a reference material during laser ablation measurement of Sr isotope ratios in bioapatite. We establish a protocol to estimate the 85Rb/87Rb mass bias from the analysis of shark teeth that demonstrates that the common assumption of equal Sr and Rb instrument induced fractionation can lead to a systematic bias in 87Sr/86Sr isotope ratios. Using the shark teeth as an "external" reference material to measure βRb yielded 87Sr/86Sr compositions in unknown samples that are within approximately -42 ppm to +66 ppm of expected values, instead of approximately -50 ppm to +190 ppm if assuming βRb = βSr. Finally, this methodology was tested on fossil gomphotherid (Rhynchotherium sp.) enamel, allowing us to make preliminary inferences about its palaeobiogeography.
期刊介绍:
Geostandards & Geoanalytical Research is an international journal dedicated to advancing the science of reference materials, analytical techniques and data quality relevant to the chemical analysis of geological and environmental samples. Papers are accepted for publication following peer review.