AI Article Synopsis

  • A new radiochemical neutron activation analysis (RNAA) method was developed to measure arsenic levels in standard reference materials (SRMs) for blood and urine samples.
  • Samples were freeze-dried, irradiated, and analyzed using gamma-ray spectroscopy after separating arsenic from other materials.
  • The results were standardized with values from other labs, yielding certified arsenic concentrations for several levels in the SRMs, while an information value was assigned for one level due to measurement discrepancies.

Article Abstract

A newly developed procedure for determination of arsenic by radiochemical neutron activation analysis (RNAA) was used to measure arsenic at four levels in SRM 955c Toxic Elements in Caprine Blood and at two levels in SRM 2668 Toxic Elements in Frozen Human Urine for the purpose of providing mass concentration values for certification. Samples were freeze-dried prior to analysis followed by neutron irradiation for 3 h at a fluence rate of 1×10cms. After sample dissolution in perchloric and nitric acids, arsenic was separated from the matrix by extraction into zinc diethyldithiocarbamate in chloroform, and As quantified by gamma-ray spectroscopy. Differences in chemical yield and counting geometry between samples and standards were monitored by measuring the count rate of a As tracer added before sample dissolution. RNAA results were combined with inductively coupled plasma - mass spectrometry (ICP-MS) values from NIST and collaborating laboratories to provide certified values of (10.81 ± 0.54) μg/kg and (213.1 ± 0.73) μg/kg for SRM 2668 Levels I and II, and certified values of (21.66 ± 0.73) μg/kg, (52.7 ± 1.1) μg/kg, and (78.8 ± 4.9) μg/kg for SRM 955c Levels 2, 3, and 4 respectively. Because of discrepancies between values obtained by different methods for SRM 955c Level 1, an information value of < 5 μg/kg was assigned for this material.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4544667PMC
http://dx.doi.org/10.1007/s10967-013-2866-3DOI Listing

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