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- W2066751497 abstract "Homogenization, in combination with partial enzymic digestion with acrude protease alone or admixed with lipase or cellulase, was investigatedas a means of releasing Se residues from zoological and botanical matricesprior to slurry introduction ETAAS. Preliminary timed trials with twozoological certified reference materials (CRMs), one botanical CRM and oneanimal feed indicated that Se release became quantitative with 4–8 hof digestion, that homogenization prior to digestion increased the initialrate of analyte release, but that homogenization post-digestion andimmediately prior to ETAAS did not significantly improve the precision ofreplicate digestions. Storage of the crude botanical digests at 4 °Cfor 5 d resulted in quantitative recoveries of Se from each of thedigests. Storage at 4 °C for 10 d of 4 and 8 h lipase/protease digestsof six other CRMs resulted in quantitative recoveries of Se unless theircertified concentrations were appreciably less than the levels determinedin control digests containing the enzyme(s) alone. Apparently, Se residueswere transferred virtually quantitatively to the liquid phase of thedigested suspension and showed no tendency to segregate during the 10 d ofstorage. Eight other mixtures of ground plant matter (0.13 ≤ [Se] ≤1.31 µg g - 1), formulated as animal feedsupplements, behaved identically when stored post-digestion. The techniquewas also applied successfully to freeze-dried fresh and boiled fishtissues The principal advantages of the enzymic digestion procedure areits simplicity and lack of operator intervention." @default.
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- W2066751497 date "1997-01-01" @default.
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- W2066751497 title "Enzymic Digestion–High-pressure Homogenization Prior to Slurry Introduction Electrothermal Atomic Absorption Spectrometry for the Determination of Selenium in Plant and Animal Tissues" @default.
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- W2066751497 doi "https://doi.org/10.1039/a605880i" @default.
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