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Nuclear analytical methods for platinum group elements
IAEA, VIENNA, 2005, IAEA-TECDOC-1443, -60p. (анг. язык)

Platinum group elements (PGE) are of special interest for analytical research due to their economic importance — chemical peculiarities as catalysts, medical applications as anticancer drugs, and possible environmental detrimental impact as exhaust from automobile catalyzers. Natural levels of PGE are so low in concentration that most of the current analytical techniques approach their limit of detection capacity. In addition, Ru, Rh, Pd, Re, Os, Ir, and Pt analyses still constitute a challenge in accuracy and precision of quantification in natural matrices. Nuclear analytical techniques, such as neutron activation analysis, X-ray fluorescence, or proton-induced X ray emission (PIXE), which are generally considered as reference methods for many analytical problems, are useful as well. However, due to methodological restrictions, they can, in most cases, only be applied after pre-concentration and under special irradiation conditions.
This report was prepared following a coordinated research project and a consultants meeting addressing the subject from different viewpoints. The experts involved suggested to discuss the issue according to the (1) application, hence, the concentration levels encountered, and (2) method applied for analysis.
Each of the different fields of application needs special consideration for sample preparation, PGE pre-concentration, and determination. Additionally, each analytical method requires special attention regarding the sensitivity and sample type. Quality assurance/quality control aspects are considered towards the end of the report.
It is intended to provide the reader of this publication with state-of-the-art information on the various aspects of PGE analysis and to advise which technique might be most suitable for a particular analytical problem related to platinum group elements. In particular, many case studies described in detail from the authors’ laboratory experience might help to decide which way to go. As in many cases nuclear techniques might not be available or might not be sufficiently sensitive, other non-nuclear techniques, such as atomic absorption spectrophotometer (AAS), voltammetry or inductively coupled plasma mass spectrometry (ICP-MS) are also included in the discussion. The complexity of the problem requires full exploitation of the analytical armoury to obtain reliable and accurate results.
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