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Application of ICP-MS for Clarification of the Elemental Composition of Geological Reference Materials and Certification of Candidate Reference Materials. / Nikolaeva, I. V.; Palesskiy, S. V.; Shaibalova, A. S.

In: Geochemistry International, Vol. 62, No. 11, 26.12.2024, p. 1219-1226.

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Nikolaeva IV, Palesskiy SV, Shaibalova AS. Application of ICP-MS for Clarification of the Elemental Composition of Geological Reference Materials and Certification of Candidate Reference Materials. Geochemistry International. 2024 Dec 26;62(11):1219-1226. doi: 10.1134/S0016702924700691

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Nikolaeva, I. V. ; Palesskiy, S. V. ; Shaibalova, A. S. / Application of ICP-MS for Clarification of the Elemental Composition of Geological Reference Materials and Certification of Candidate Reference Materials. In: Geochemistry International. 2024 ; Vol. 62, No. 11. pp. 1219-1226.

BibTeX

@article{5d7eaa3fa8fa4cf3bc17d5d7e7c556e8,
title = "Application of ICP-MS for Clarification of the Elemental Composition of Geological Reference Materials and Certification of Candidate Reference Materials",
abstract = "Abstract: The contents of 25 elements were established in prospective reference materials, black shales SChS-1A and SLg-1A, using a developed analysis technique based on fusing samples with lithium metaborate and determining elements by external calibration with an internal standard on an ELEMENT high-resolution mass spectrometer. The passport characteristics of Russian reference materials of magmatic and sedimentary rocks SG-3, SGD-2A, ST-2A, SI-2, and BIL-1 and technical standards ZUK-1 and ZUA-1 have been clarified. New data of rare-earth elements were obtained for SI-2 and ZUA-1, which were missing during certification. Based on the inductively coupled mass-spectrometry analysis of standards SG-3 and SI-2 from 2005 to 2024, their applicability now has been confirmed. The new obtained ICP-MS results make it possible to expand the number of certified parameters of reference materials and clarify their results and can be used in analytical practice.",
keywords = "inductively coupled mass-spectrometry, rare-earth elements, reference materials, inductively coupled mass-spectrometry, rare-earth elements, reference materials",
author = "Nikolaeva, {I. V.} and Palesskiy, {S. V.} and Shaibalova, {A. S.}",
note = "The work was performed in accordance with scientific topic FWZN-2022-0032, state record no. 122041400171-5.",
year = "2024",
month = dec,
day = "26",
doi = "10.1134/S0016702924700691",
language = "English",
volume = "62",
pages = "1219--1226",
journal = "Geochemistry International",
issn = "0016-7029",
publisher = "PLEIADES PUBLISHING INC",
number = "11",

}

RIS

TY - JOUR

T1 - Application of ICP-MS for Clarification of the Elemental Composition of Geological Reference Materials and Certification of Candidate Reference Materials

AU - Nikolaeva, I. V.

AU - Palesskiy, S. V.

AU - Shaibalova, A. S.

N1 - The work was performed in accordance with scientific topic FWZN-2022-0032, state record no. 122041400171-5.

PY - 2024/12/26

Y1 - 2024/12/26

N2 - Abstract: The contents of 25 elements were established in prospective reference materials, black shales SChS-1A and SLg-1A, using a developed analysis technique based on fusing samples with lithium metaborate and determining elements by external calibration with an internal standard on an ELEMENT high-resolution mass spectrometer. The passport characteristics of Russian reference materials of magmatic and sedimentary rocks SG-3, SGD-2A, ST-2A, SI-2, and BIL-1 and technical standards ZUK-1 and ZUA-1 have been clarified. New data of rare-earth elements were obtained for SI-2 and ZUA-1, which were missing during certification. Based on the inductively coupled mass-spectrometry analysis of standards SG-3 and SI-2 from 2005 to 2024, their applicability now has been confirmed. The new obtained ICP-MS results make it possible to expand the number of certified parameters of reference materials and clarify their results and can be used in analytical practice.

AB - Abstract: The contents of 25 elements were established in prospective reference materials, black shales SChS-1A and SLg-1A, using a developed analysis technique based on fusing samples with lithium metaborate and determining elements by external calibration with an internal standard on an ELEMENT high-resolution mass spectrometer. The passport characteristics of Russian reference materials of magmatic and sedimentary rocks SG-3, SGD-2A, ST-2A, SI-2, and BIL-1 and technical standards ZUK-1 and ZUA-1 have been clarified. New data of rare-earth elements were obtained for SI-2 and ZUA-1, which were missing during certification. Based on the inductively coupled mass-spectrometry analysis of standards SG-3 and SI-2 from 2005 to 2024, their applicability now has been confirmed. The new obtained ICP-MS results make it possible to expand the number of certified parameters of reference materials and clarify their results and can be used in analytical practice.

KW - inductively coupled mass-spectrometry

KW - rare-earth elements

KW - reference materials

KW - inductively coupled mass-spectrometry

KW - rare-earth elements

KW - reference materials

UR - https://www.mendeley.com/catalogue/e4566b9d-58d7-37bf-b4bd-fb6695992114/

UR - https://www.scopus.com/record/display.uri?eid=2-s2.0-85213082314&origin=inward&txGid=74cc9edff34199736c05994ca7236523

U2 - 10.1134/S0016702924700691

DO - 10.1134/S0016702924700691

M3 - Article

VL - 62

SP - 1219

EP - 1226

JO - Geochemistry International

JF - Geochemistry International

SN - 0016-7029

IS - 11

ER -

ID: 61414667