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Pozebon D, Dressler VL, Gomes Neto JA, Curtius AJ: Determination of arsenic (III) and arsenic (V) by electrothermal atomic absorption spectrometry after complexation and sorption on a C-18 bonded silica column. Talanta. 1998 Apr;45(6):1167-75. A flow injection procedure for the separation and pre-concentration of inorganic arsenic based on the complexation with ammonium diethyl dithiophosphate (DDTP) and sorption on a C-18 bonded silica gel minicolumn is proposed. During the sample injection by a time-based fashion, the As (3+)-DDTP complex is stripped from the solution and retained in the column. Arsenic (V) and other ions that do not form complexes are discarded. After reduction to the trivalent state by using potassium iodide plus ascorbic acid, total arsenic is determined by electrothermal atomic absorption spectrometry (ETAAS). Arsenic (V) concentration can be calculated by difference. After processing 6 ml sample volume, the As (3+)-DDTP complexes were eluted directly into the autosampler cup (120 mul). Ethanol was used for column rinsing. Influence of pH, reagent concentration, pre-concentration and elution time and column size were investigated. When 30 mul of eluate plus 10 mul of 0.1% (w/v) Pd (NO (3))(2) were dispensed into the graphite tube, analytical curve in the 0.3-3 mug As l (-1) range was obtained (r=0.9991). The accuracy was checked for arsenic determination in a certified water, spiked tap water and synthetic mixtures of arsenite and arsenate. Good recoveries (97-108%) of spiked samples were found. Results are precise (RSD 7.5 and 6% for 0.5 and 2.5 mug l (-1), n=10) and in agreement with the certified value of reference material at 95% confidence level. |
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