Effects of sample preparation and calibration strategy on accuracy and precision in the multi-elemental analysis of soil by sector-field ICP-MS
暂无分享,去创建一个
Emma Engström | Douglas C. Baxter | Ilia Rodushkin | I. Rodushkin | D. C. Baxter | Anna Stenberg | Dmitry Malinovsky | Irma Mäkinen | Seppo Pönni | E. Engström | D. Malinovsky | A. Stenberg | I. Mäkinen | S. Pönni | D. Baxter
[1] Philippe Quevauviller,et al. Certified reference materials of soils and sewage sludges for the quality control of trace element environmental monitoring , 1996 .
[2] Angels Sahuquillo,et al. Determination of Cd, Cu, Pb and Zn in environmental samples: microwave-assisted total digestion versus aqua regia and nitric acid extraction , 2002 .
[3] B. Öhlander,et al. Performance of high resolution MC-ICP-MS for Fe isotope ratio measurements in sedimentary geological materials , 2003 .
[4] A. J. Walder,et al. Validation of the analytical linearity and mass discrimination correction model exhibited by a multiple collector inductively coupled plasma mass spectrometer by means of a set of synthetic uranium isotope mixtures , 1995 .
[5] G. Stingeder,et al. Lead isotope ratio analysis by inductively coupled plasma sector field mass spectrometry (ICP-SMS) in soil digests of a depth profile , 2000 .
[6] J. D. Fassett,et al. Detection limit of isotope dilution mass spectrometry. , 2002, Analytical chemistry.
[7] S. L. Ramesh,et al. Rare earth and trace element determination in iron-formation reference samples by ICP-MS , 1992 .
[8] C. Vandecasteele,et al. The use of internal standards in ICP-MS. , 1992, Talanta.
[9] M. Rearick,et al. Isotope dilution inductively coupled plasma mass spectrometry (ID ICP-MS) for the certification of lead and cadmium in environmental standard reference materials , 2000, Fresenius' journal of analytical chemistry.
[10] D. Schoeller,et al. High precision pulse counting: limitations and optimal conditions , 1977 .
[11] I. Papadakis,et al. Establishing an SI-traceable Copper Concentration in the CandidateReference Material MURST ISS A1 Antarctic Sediment Using Isotope DilutionApplied as a Primary Method of Measurement , 1997 .
[12] G. Horlick,et al. Background Spectral Features in Inductively Coupled Plasma/Mass Spectrometry , 1986 .
[13] W. Frech,et al. Non-spectral interference effects in inductively coupled plasma mass spectrometry using direct injection high efficiency and microconcentric nebulisation , 2001 .
[14] R. Nadkarni. Applications of microwave oven sample dissolution in analysis , 1984 .
[15] K. Heumann,et al. Multi-element trace determinations in pure alkaline earth fluoride powders by high-resolution ICP-MS using wet-chemical sample preparation and laser ablation , 2003, Analytical and bioanalytical chemistry.
[16] J. D. Fassett,et al. Protocol for isotope dilution using inductively coupled plasma-mass spectrometry (ICP-MS) for the determination of inorganic elements , 1997 .
[17] Ph. Quevauviller,et al. Stated references for ensuring traceability of chemical measurements for long-term environmental monitoring , 2001 .
[18] G. Stingeder,et al. SI-traceable certification of Cu, Cr, Cd and Pb in sediment and fly ash candidate reference materials. , 2000, Journal of environmental monitoring : JEM.
[19] S. Russell,et al. High-precision Cu and Zn isotope analysis by plasma source mass spectrometry: Part 2. Correcting for mass discrimination effects , 2004 .
[20] Ron Walker,et al. Pitfalls in terminology and use of reference materials , 1999 .
[21] N. Jakubowski,et al. Performance characteristics of inductively coupled plasma mass spectrometry with high mass resolution , 1994 .
[22] W. R. Kelly,et al. Propagation of uncertainties in isotope dilution mass spectrometry using pulse counting detection , 1993 .
[23] Michael V. Ruby,et al. Advances in evaluating the oral bioavailability of inorganics in soil for use in human health risk assessment , 1999 .
[24] J. D. Fassett,et al. Isotope dilution mass spectrometry for accurate elemental analysis , 1989 .
[25] Michael H. Ramsey,et al. Sequential extraction of soils for multielement analysis by ICP-AES , 1995 .
[26] L. Moens,et al. Spectral and non-spectral interferences in inductively coupled plasma mass-spectrometry , 1995 .
[27] R. Houk,et al. Chromatographic retention of molybdenum, titanium and uranium complexes for removal of some interference in inductively-coupled plasma mass spectrometry , 1987 .
[28] R. Houk,et al. A Study of Internal Standardization in Inductively Coupled Plasma-Mass Spectrometry , 1987 .
[29] H. Longerich,et al. Applicability of a high pressure digestion technique to the analysis of sediment and soil samples by inductively coupled plasma-mass spectrometry , 2001 .
[30] I. Rodushkin,et al. Multielemental analysis of Mn-Fe nodules by ICP-MS: optimisation of analytical method. , 2002, The Analyst.
[31] B. Öhlander,et al. Separation of Fe from whole blood matrix for precise isotopic ratio measurements by MC-ICP-MS: a comparison of different approaches , 2003 .
[32] G. Horlick,et al. Oxide, Hydroxide, and Doubly Charged Analyte Species in Inductively Coupled Plasma/Mass Spectrometry , 1986 .
[33] M. S. Epstein,et al. Definitive measurement methods , 1991 .
[34] P. De Bièvre,et al. Atomic weights of the elements. Review 2000 (IUPAC Technical Report) , 2009 .
[35] J. G. Alonso. Determination of fission products and actinides by inductively coupled plasma-mass spectrometry using isotope dilution analysis : a study of random and systematic errors , 1995 .
[36] K. R. Eberhardt,et al. Combining data from independent chemical analysis methods , 1991 .
[37] W. V. Borm,et al. A theoretical adaptation of the classical isotope dilution technique for practical routine analytical determinations by means of inductively coupled plasma mass spectrometry , 1996 .
[38] W. R. Kelly,et al. Determination of Cr in certified reference material HISS-1, marine sediment, by cold plasma isotope dilution ICP-MS and INAA: comparison of microwave versus closed (Carius) tube digestion , 2003 .
[39] M. Suchanek,et al. Determination of thallium in environmental samples by inductively coupled plasma mass spectrometry: comparison and validation of isotope dilution and external calibration methods , 2000 .
[40] I. Rodushkin,et al. Multielement analysis of coal by ICP techniques using solution nebulization and laser ablation. , 2000, Talanta.
[41] F. Vanhaecke,et al. Applicability of High-Resolution ICP−Mass Spectrometry for Isotope Ratio Measurements , 1997 .
[42] B. Sharp,et al. Occurrence and reduction of noise in inductively coupled plasma mass spectrometry for enhanced precision in isotope ratio measurement , 1994 .
[43] M. Hoenig. Preparation steps in environmental trace element analysis - facts and traps. , 2001, Talanta.
[44] J. D. Boer. Real-time adjustment of ICP-MS elemental equations , 2000 .
[45] G. Werner,et al. Introduction to Microwave Sample Preparation. Theory and Practice, H.M. Kingston, L.B. Jassie (Eds.). American Chemical Society, Washington, DC (1988), XXII, 263 S., zahlr. Abb. und Tab. , 1991 .
[46] K. Inagaki,et al. Determination of cadmium in sediment by isotope dilution inductively coupled plasma mass spectrometry using a co-precipitation separation technique , 2001 .
[47] Florence Pannier,et al. Production and use of reference materials for environmental analyses: conclusions of a workshop , 2001 .
[48] J Namieśnik,et al. Role of reference materials in analysis of environmental pollutants. , 1999, The Science of the total environment.
[49] C. Harrington,et al. Orthodox uncertainty budgeting for high accuracy measurements by isotope dilution inductively coupled plasma-mass spectrometry , 2001 .
[50] C. Ingamells,et al. Solution technique for analysis of silicates , 1966 .