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Journal of Analytical and Atomic

Williams, J.G. Jarvis, K.E. (1993) Preliminary assessment of laser ablation inductively coupled plasma mass spectrometry for quantitative multielement determination of silicates. Journal of Analytical and Atomic Spectrometry 8, 25-34. [Pg.442]

Figure 2 Simultaneous separation of 12 species of four elements. Concentration of the elements As, Sb, Te lOOpgr each, Se 1000ngl (Prange A and Schaumidfel D (1999) Determination of element species at trace levels using capillary electrophoresis-inductively coupled plasma sector field mass spectrometry. Journal of Analytical and Atomic Spectrometry 14 1329-1332 reproduced by permission of The Royal Society of Chemistry.)... Figure 2 Simultaneous separation of 12 species of four elements. Concentration of the elements As, Sb, Te lOOpgr each, Se 1000ngl (Prange A and Schaumidfel D (1999) Determination of element species at trace levels using capillary electrophoresis-inductively coupled plasma sector field mass spectrometry. Journal of Analytical and Atomic Spectrometry 14 1329-1332 reproduced by permission of The Royal Society of Chemistry.)...
Fig. 3.2. LA-ICP-MS spectral scan of PVC material. After Marshall et al [69]. From J. Marshall et al., Journal of Analytical and Atomic Spectrometry 6, 145-150 (1991). Reproduced by permission of The Royal Society of Chemistry. Fig. 3.2. LA-ICP-MS spectral scan of PVC material. After Marshall et al [69]. From J. Marshall et al., Journal of Analytical and Atomic Spectrometry 6, 145-150 (1991). Reproduced by permission of The Royal Society of Chemistry.
Figure 1.4 Special issues on metallomics of Journal of Analytical and Atomic Spectrometry (JAAS). Figure 1.4 Special issues on metallomics of Journal of Analytical and Atomic Spectrometry (JAAS).
Aguilera de Benzo Z, Fraile R, Carrion N, et al. 1989. Determination of lead in whole blood by electrothermal atomization atomic absorption spectrometry using tube and platform atomizers and dilution with Triton X-100. Journal of Analytical and Atmospheric Spectrometry 4 397-400. [Pg.484]

Atomic Spectroscopy and Journal of Analytical Atomic Spectromety, regular and occasional topical bibHographies. [Pg.326]

Minganti V, Capelli R, Depellegrini R (1995) Evaluation of different derivatization methods for the multielement detection of Hg, Pb and Sn compounds by gas chromatography-microwave induced plasma-atomic emission spectrometry in environmental samples. Fresenius Journal of Analytical Chemistry, 351 (4-5) 471 77. [Pg.48]

Bysouth, S. R., and Tyson, J. R, A Comparison of Curve Fitting Algorithms for Hame Atomic Absorption Spectrometry, Journal of Analytical Atomic Spectrometry, 1, February 1986, 85-87. [Pg.411]

Unfortunately, these rather basic errors are distressingly common, yet cause much unnecessary dissatisfaction. No printer is perfect, and relying on catalog data can result in the publication of incorrect data in a paper. This occurred, e.g. in 1994 when data was taken from an out-of-date NIST catalog, rather than the appropriate certificate. Published in the Journal of Analytical Atomic Spectroscopy, the paper by Soares et al. (1994) cited a certified value for Cr in NIST SRM 1548, when consultation of the Certificate would have shown that for several technical reasons the element value reported could not be certified. [Pg.238]

Xu Y, Liang Y. 1997. Combined nickel and phosphate modifier for lead determination in water by electrothermal atomic absorption spectrometry. Journal of Analytical Atomic Spectrometry 12(4) 471-474. [Pg.588]

R. Van Ham, L. Van Vaeck, A. Adriaens, F. Adams, B. Hodges and G. Groenewold, Inorganic speciation in static SIMS a comparative study between monatomic and polyatomic primary ions, Journal of Analytical Atomic Spectrometry, 17, 753 758 (2002). [Pg.457]

Walder, A.J. and Freedman, P.A. (1992). Isotopic ratio measurement using a double focusing magnetic sector mass analyser with an inductively coupled plasma as an ion source. Journal of Analytical Atomic Spectrometry 1 571-575. [Pg.74]

Clayton, R., Andersson, P., Gale, N.H., Gillis, C. and Whitehouse, MJ. (2002). Precise determination of the isotopic composition of Sn using MC-ICP-MS. Journal of Analytical Atomic Spectrometry 17 1248-1256. [Pg.341]

Evans, R. D. and Outridge, P. M. (1994). Applications of laser ablation inductively coupled plasma mass spectrometry to the determination of environmental contaminants in calcified biological structures. Journal of Analytical Atomic Spectroscopy 9 985-989. [Pg.362]

Mirti, P., Aruga, R., Zelano, V., Appolonia, L., and Aceto, M. (1990). Investigation of Roman terra-sigillata by atomic-absorption and emission-spectroscopy and multivariate-analysis of data. Fresenius Journal of Analytical Chemistry 336 215-221. [Pg.375]

Perezarantegui, J., Querre, G., and Castillo, J. R. (1994). Particle-induced X-ray-emission -thick-target analysis of inorganic materials in the determination of light-elements. Journal of Analytical Atomic Spectrometry 9 311-314. [Pg.378]

Raith, A., Hutton, R. C., Abell, I. D., and Crighton, J. (1995). Non-destructive sampling method of metals and alloys for laser ablation-inductively coupled plasma mass spectrometry. Journal of Analytical Atomic Spectroscopy 10 591-594. [Pg.380]

Roberts, N.B, Walsh, H.P.J., Klenerman, L., Kelly, S.A., and Helliwell, T. R. (1996). Determination of elements in human femoral bone using inductively coupled plasma atomic emission spectrometry and inductively coupled plasma mass spectrometry. Journal of Analytical Atomic Spectroscopy 11 133-138. [Pg.381]

Segal, I., Kloner, A., and Brenner, I. B. (1994). Multielement analysis of archaeological bronze objects using inductively coupled plasma-atomic emission spectrometry -aspects of sample preparation and spectral-line selection. Journal of Analytical Atomic Spectrometry 9 737-744. [Pg.383]

Watling, R. J., Lynch, B. F., and Herring, D. (1997). Use of laser ablation inductively coupled plasma mass spectrometry for fingerprinting scene of crime evidence. Journal of Analytical Atomic Spectroscopy 12 195-203. [Pg.388]

Fabre, C., Boiron, M.-C., Dubessy, J., Moissette, a. 1999. Determination of ions in individual fluid inclusions by laser ablation optical emission spectroscopy development and applications to natural fluid inclusions. Journal of Analytical Atomic Spectrometry, 14(6), 913-922. [Pg.459]

Branch, S., Ebdon, L., and OneUl, P., Determination of arsenic species in fish by directly coupled high-performance liquid chromatography-inductively coupled plasma-mass spectrometry. Journal of Analytical Atomic Spectrometry 9(1), 33-37, 1994. [Pg.95]

Ogra, Y. and Suzuki, K. T., Speciation of selenocompounds by capillary HPLC coupled with ICP-MS using multi-mode gel filtration columns. Journal of Analytical Atomic Spectrometry 20(1), 35-39, 2005. [Pg.96]

Ballihaut, G., Tastet, L., Pecheyran, C., Bouyssiere, B., Donard, O., Grimaud, R., and Lobinski, R., Biosynthesis, purification and analysis of selenomethionyl calmodulin by gel electrophoresis-laser ablation-ICP-MS and capillary HPLC-ICP-MS peptide mapping following in-gel tryptic digestion. Journal of Analytical Atomic Spectrometry 20(6), 493 99, 2005. [Pg.96]

Giusti, P., Schaumloffel, D., Encinar, J. R., and Szpunar, J., Interfacing reversed-phase nanoHPLC with ICP-MS and on-line isotope dilution analysis for the accurate quantification of selenium-containing peptides in protein tryptic digests. Journal of Analytical Atomic Spectrometry 20(10), 1101-1107, 2005. [Pg.96]

Guo, X., Sturgeon, R.E., Mester, Z. and Gardner, G.J. (2005) Photochemical alkylation of inorganic arsenic Part 1. Identification of volatile arsenic species. Journal of Analytical Atomic Spectrometry, 20(8), 702-8. [Pg.62]

Montes-Bayon, M., Meija, J., LcDuc, D.L. et al. (2004) HPLC-ICP-MS and ESI-Q-TOF analysis of biomolecules induced in Brassica juncea during arsenic accumulation. Journal of Analytical Atomic Spectrometry, 19(1), 153-58. [Pg.425]


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