Journal of Analytical Toxicology · 1996 · 28 citations · 13 references
EngineeringBlood Inorganic MercuryUrine Inorganic MercuryEnvironmental ChemistryEnvironmental Analytical ChemistryMetalloid ContaminationMercury BiogeochemistryAnalytical ChemistryToxicologyTotal MercuryClinical ChemistryHuman BiomonitoringCold Vapor AnalysisChromatographyPassive SamplingMercury ChemistryEnvironmental EngineeringMass SpectrometryEnvironmental ToxicologyInorganic Mercury AnalysisMedicine
A cold vapor atomic absorption technique for blood or urine mercury analysis that uses persulfate oxidation to prepare samples for total mercury analysis and acid permanganate oxidation to prepare samples for inorganic mercury analysis is described. The linearity of the procedures ranged from 0.5 to 25 micrograms/L. Precision ranged from 20% at 1 microgram/L to 7% at 20 micrograms/L. Documentation of accuracy is based on analysis of samples prepared by an international proficiency survey program. The development of a two-step digestion procedure followed by automated flow-injection mercury analysis was a necessary precursor to the assessment of inorganic and alkylmercury exposure in a large unexposed human population. Application of this technique to 902 blood and 902 urine samples collected from a normal human population who had no extraordinary mercury exposure generated mean plus two standard deviation skewed confidence-limit ranges of results as follows: blood total mercury, 0-8.4 micrograms/L; blood inorganic mercury, 0-1.7 micrograms/L; blood organic mercury, 0-7.5 micrograms/L; urine total mercury, 0-9.9 micrograms/L; urine inorganic mercury, 0-8.6 micrograms/L; and urine organic mercury, 0-1.8 micrograms/L.
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Bernhard Welz, Dimiter L. Tsalev, Michael Sperling · Analytica Chimica Acta · 1992 · 111 citations
Chemical Engineering, Environmental Chemistry, Engineering +12
Christopher Hanna, Julian F. Tyson, Susan McIntosh · Analytical Chemistry · 1993 · 96 citations