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February 10, 20260 citationsOpen Access

Trace Metal Contents of NIST 1634c and NIST 8505 Multi-Element Petroleum Reference Materials: Compilation of Published Data and New Results Evaluating Acid Digestion Procedure

EREmiliya D. RaevaLBLora BidzhovaGMGatien Morin

Key Points

  • This study aims to evaluate the trace metal contents of petroleum reference materials using various digestion methods.
  • Analyzed NIST SRM 1634c and NIST RM 8505 petroleum products.
  • Utilized hotplate acid digestion and microwave acid digestion (one to three cycles).
  • Analyzed samples using Inductively Coupled Plasma Mass Spectrometry (ICP-MS).
  • Compiled new results with existing published data.
  • Achieved optimal recoveries for both reference materials with two and three cycles of microwave digestion.
  • Hotplate digestion efficiently decomposed petroleum but required more time and reagents.
  • V/Ni and V/(V + Ni) ratios remained close to expected values despite incomplete digestion.

Abstract

Knowledge of the trace element contents of petroleum can improve crude oil exploration and refining and aid environmental studies. Analytical challenges prompt experimentation with various digestion methods and analytical techniques, but the assessment of the efficiency of applied methodologies is hindered by the scarcity of multi-element standard reference materials. In this study, NIST SRM 1634c residual fuel oil and NIST RM 8505 crude oil were subjected to (i) hotplate acid digestion and (ii) one, two or three cycles of microwave acid digestion, and analyzed by ICP-MS. Comparison with the few available certificate values shows optimum recoveries for both reference materials with two and three cycles of microwave digestion. Hotplate digestion can also efficiently decompose petroleum, although this procedure requires more time and reagents than the microwave digestion. To better characterize the trace element composition of the two reference materials for future use in the community, we integrate our new results with a comprehensive compilation of published trace element data for both petroleum samples. Finally, we show that the V/Ni and V/(V + Ni) ratios commonly used for oil–oil and oil–source rock correlations remain sufficiently close to the expected ratios even in cases of incomplete digestion with lower recoveries for both elements.

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Cite This Study

Raeva et al. (2026) studied this question.

synapsesocial.com/papers/698acacb7c832249c30ba42ehttps://doi.org/10.3390/geosciences16020074
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