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High-Precision In Situ (87)Sr/(86)Sr Analyses through Microsampling on Solid Samples: Applications to Earth and Life Sciences

An analytical protocol for high-precision, in situ microscale isotopic investigations is presented here, which combines the use of a high-performing mechanical microsampling device and high-precision TIMS measurements on micro-Sr samples, allowing for excellent results both in accuracy and precision...

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Autores principales: Di Salvo, Sara, Braschi, Eleonora, Casalini, Martina, Marchionni, Sara, Adani, Teresa, Ulivi, Maurizio, Orlando, Andrea, Tommasini, Simone, Avanzinelli, Riccardo, Mazza, Paul P. A., Conticelli, Sandro, Francalanci, Lorella
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5937520/
https://www.ncbi.nlm.nih.gov/pubmed/29850369
http://dx.doi.org/10.1155/2018/1292954
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author Di Salvo, Sara
Braschi, Eleonora
Casalini, Martina
Marchionni, Sara
Adani, Teresa
Ulivi, Maurizio
Orlando, Andrea
Tommasini, Simone
Avanzinelli, Riccardo
Mazza, Paul P. A.
Conticelli, Sandro
Francalanci, Lorella
author_facet Di Salvo, Sara
Braschi, Eleonora
Casalini, Martina
Marchionni, Sara
Adani, Teresa
Ulivi, Maurizio
Orlando, Andrea
Tommasini, Simone
Avanzinelli, Riccardo
Mazza, Paul P. A.
Conticelli, Sandro
Francalanci, Lorella
author_sort Di Salvo, Sara
collection PubMed
description An analytical protocol for high-precision, in situ microscale isotopic investigations is presented here, which combines the use of a high-performing mechanical microsampling device and high-precision TIMS measurements on micro-Sr samples, allowing for excellent results both in accuracy and precision. The present paper is a detailed methodological description of the whole analytical procedure from sampling to elemental purification and Sr-isotope measurements. The method offers the potential to attain isotope data at the microscale on a wide range of solid materials with the use of minimally invasive sampling. In addition, we present three significant case studies for geological and life sciences, as examples of the various applications of microscale (87)Sr/(86)Sr isotope ratios, concerning (i) the pre-eruptive mechanisms triggering recent eruptions at Nisyros volcano (Greece), (ii) the dynamics involved with the initial magma ascent during Eyjafjallajökull volcano's (Iceland) 2010 eruption, which are usually related to the precursory signals of the eruption, and (iii) the environmental context of a MIS 3 cave bear, Ursus spelaeus. The studied cases show the robustness of the methods, which can be also be applied in other areas, such as cultural heritage, archaeology, petrology, and forensic sciences.
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spelling pubmed-59375202018-05-30 High-Precision In Situ (87)Sr/(86)Sr Analyses through Microsampling on Solid Samples: Applications to Earth and Life Sciences Di Salvo, Sara Braschi, Eleonora Casalini, Martina Marchionni, Sara Adani, Teresa Ulivi, Maurizio Orlando, Andrea Tommasini, Simone Avanzinelli, Riccardo Mazza, Paul P. A. Conticelli, Sandro Francalanci, Lorella J Anal Methods Chem Research Article An analytical protocol for high-precision, in situ microscale isotopic investigations is presented here, which combines the use of a high-performing mechanical microsampling device and high-precision TIMS measurements on micro-Sr samples, allowing for excellent results both in accuracy and precision. The present paper is a detailed methodological description of the whole analytical procedure from sampling to elemental purification and Sr-isotope measurements. The method offers the potential to attain isotope data at the microscale on a wide range of solid materials with the use of minimally invasive sampling. In addition, we present three significant case studies for geological and life sciences, as examples of the various applications of microscale (87)Sr/(86)Sr isotope ratios, concerning (i) the pre-eruptive mechanisms triggering recent eruptions at Nisyros volcano (Greece), (ii) the dynamics involved with the initial magma ascent during Eyjafjallajökull volcano's (Iceland) 2010 eruption, which are usually related to the precursory signals of the eruption, and (iii) the environmental context of a MIS 3 cave bear, Ursus spelaeus. The studied cases show the robustness of the methods, which can be also be applied in other areas, such as cultural heritage, archaeology, petrology, and forensic sciences. Hindawi 2018-04-22 /pmc/articles/PMC5937520/ /pubmed/29850369 http://dx.doi.org/10.1155/2018/1292954 Text en Copyright © 2018 Sara Di Salvo et al. httpS://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Di Salvo, Sara
Braschi, Eleonora
Casalini, Martina
Marchionni, Sara
Adani, Teresa
Ulivi, Maurizio
Orlando, Andrea
Tommasini, Simone
Avanzinelli, Riccardo
Mazza, Paul P. A.
Conticelli, Sandro
Francalanci, Lorella
High-Precision In Situ (87)Sr/(86)Sr Analyses through Microsampling on Solid Samples: Applications to Earth and Life Sciences
title High-Precision In Situ (87)Sr/(86)Sr Analyses through Microsampling on Solid Samples: Applications to Earth and Life Sciences
title_full High-Precision In Situ (87)Sr/(86)Sr Analyses through Microsampling on Solid Samples: Applications to Earth and Life Sciences
title_fullStr High-Precision In Situ (87)Sr/(86)Sr Analyses through Microsampling on Solid Samples: Applications to Earth and Life Sciences
title_full_unstemmed High-Precision In Situ (87)Sr/(86)Sr Analyses through Microsampling on Solid Samples: Applications to Earth and Life Sciences
title_short High-Precision In Situ (87)Sr/(86)Sr Analyses through Microsampling on Solid Samples: Applications to Earth and Life Sciences
title_sort high-precision in situ (87)sr/(86)sr analyses through microsampling on solid samples: applications to earth and life sciences
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5937520/
https://www.ncbi.nlm.nih.gov/pubmed/29850369
http://dx.doi.org/10.1155/2018/1292954
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