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Original Articles

Decomposition Procedures in Inorganic Analysis

Pages 255-323 | Published online: 18 Feb 2008

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Read on this site (4)

A.V. Hirner. (1992) Trace Element Speciation in Soils and Sediments Using Sequential Chemical Extraction Methods. International Journal of Environmental Analytical Chemistry 46:1-3, pages 77-85.
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CarolaH. Kirchner, G.A. Eagle & H.F. K. O. Hennig. (1988) Investigation of a Method for Routine use of General-Purpose Teflon Bombs for the Digestion of Samples for Trace Metal Analysis. International Journal of Environmental Analytical Chemistry 32:1, pages 9-21.
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D. J. Swaine & W. F. J. Pickering. (1985) Modern Methods in Bituminous Coal Analysis: Trace Elements. C R C Critical Reviews in Analytical Chemistry 15:4, pages 315-346.
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L.P. Faitondjiev. (1981) On the determination of total heavy metal content in saline soils and soils rich in organic matter. Communications in Soil Science and Plant Analysis 12:9, pages 949-957.
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Articles from other publishers (40)

Eva Prechova, Ondrej Sebek, Martin Novak, Alexandre V. Andronikov, Ladislav Strnad, Vladislav Chrastny, Jerzy Cabala, Marketa Stepanova, Jan Pasava, Eva Martinkova, Petra Pacherova, Vladimir Blaha, Jan Curik, Frantisek Veselovsky & Hyacinta Vitkova. (2023) Spatial and temporal trends in δ66Zn and 206Pb/207Pb isotope ratios along a rural transect downwind from the Upper Silesian industrial area: Role of legacy vs. present-day pollution. Environmental Pollution 328, pages 121609.
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Ivan Vlastelic & Jean‐Luc Piro. (2022) Volatilisation of Trace Elements During Evaporation to Dryness of HF‐Dissolved Silicates ( BHVO ‐2, AGV ‐1, BIR ‐1, UB‐N ): Open‐ Versus Closed‐System Conditions . Geostandards and Geoanalytical Research 46:3, pages 519-534.
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Patric Lindahl, Grzegorz Olszewski & Mats Eriksson. (2022) Total dissolution of environmental samples for the determination of uranium and thorium by ICP-MS and alpha-particle spectrometry. Applied Radiation and Isotopes 181, pages 110103.
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Grzegorz Olszewski, Patric Lindahl, Peter Frisk, Mats Eriksson & Håkan B.L. Pettersson. (2021) Development of 148Gd analysis method using stable Gd. Talanta 229, pages 122295.
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Horckmans, Möckel, Nielsen, Kukurugya, Vanhoof, Morillon & Algermissen. (2019) Multi-Analytical Characterization of Slags to Determine the Chromium Concentration for a Possible Re-Extraction. Minerals 9:10, pages 646.
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Xiaohua Li, Arne Van den Bossche, Tom Vander Hoogerstraete & Koen Binnemans. (2018) Ionic liquids with trichloride anions for oxidative dissolution of metals and alloys. Chemical Communications 54:5, pages 475-478.
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Matthew J. O'Hara, Cyndi M. Kellogg, Cyrena M. Parker, Samuel S. Morrison, Jordan F. Corbey & Jay W. Grate. (2017) Decomposition of diverse solid inorganic matrices with molten ammonium bifluoride salt for constituent elemental analysis. Chemical Geology 466, pages 341-351.
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Henryk Matusiewicz. (2017) Sample Preparation for Inorganic Trace Element Analysis. Physical Sciences Reviews 2:5.
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Henryk Matusiewicz. 2016. Handbook of Trace Analysis. Handbook of Trace Analysis 75 122 .
Érico M.M. Flores, Juliano S. Barin, Márcia F. Mesko & Günter Knapp. (2007) Sample preparation techniques based on combustion reactions in closed vessels — A brief overview and recent applications. Spectrochimica Acta Part B: Atomic Spectroscopy 62:9, pages 1051-1064.
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M Dassenakis, H Andrianos, G Depiazi, A Konstantas, M Karabela, A Sakellari & M Scoullos. (2003) The use of various methods for the study of metal pollution in marine sediments, the case of Euvoikos Gulf, Greece. Applied Geochemistry 18:6, pages 781-794.
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Milan Ihnat. 2003. Sample Preparation for Trace Element Analysis. Sample Preparation for Trace Element Analysis 765 856 .
Henryk Matusiewicz. 2003. Sample Preparation for Trace Element Analysis. Sample Preparation for Trace Element Analysis 193 233 .
Gilberto B Souza, Elma Neide V.M Carrilho, Camila V Oliveira, Ana Rita A Nogueira & Joaquim A Nóbrega. (2002) Oxygen bomb combustion of biological samples for inductively coupled plasma optical emission spectrometry. Spectrochimica Acta Part B: Atomic Spectroscopy 57:12, pages 2195-2201.
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Petr Musil, Vı́tĕzslav Otruba, Viktor Kanický & Jean-Michel Mermet. (2000) Determination of elements in agricultural soils using IR laser ablation inductively coupled plasma atomic emission spectrometry. Spectrochimica Acta Part B: Atomic Spectroscopy 55:11, pages 1747-1758.
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Ewald Jackwerth & Michael Würfels. 1997. Sampling and Sample Preparation. Sampling and Sample Preparation 142 154 .
Ivo Novozamsky, Hans J. van der Lee & Victor J. G. Houba. (1995) Sample digestion procedures for trace element determination. Microchimica Acta 119:3-4, pages 183-189.
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Dalway J. Swaine. 1990. Trace Elements in Coal. Trace Elements in Coal 218 278 .
G.E.M. Hall & G.F. Bonham-Carter. (1988) Review of methods to determine gold, platinum and palladium in production-oriented geochemical laboratories, with application of a statistical procedure to test for bias. Journal of Geochemical Exploration 30:1-3, pages 255-286.
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E. Macalalad, R. Bayoran, B. Ebarvia & I. Rubeška. (1988) A concise analytical scheme for 16 trace elements in geochemical exploration samples using exclusively AAS. Journal of Geochemical Exploration 30:1-3, pages 167-177.
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I. Shazali, L. Van’t Dack & R. Gijbels. 1988. Geo-Platinum 87. Geo-Platinum 87 29 42 .
S. M. Ramasamy & R. J. Hurtubise. (2002) Effects of temperature on the solid-surface luminescence properties of p-aminobenzoic acid adsorbed on sodium acetate. Analytical Chemistry 59:3, pages 432-436.
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R. J. Haskell & J. C. Wright. (2002) Determination of heavy siderophile elements in geological samples via selective excitation of probe ion luminescence. Analytical Chemistry 59:3, pages 427-432.
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S.J. Buchanan & L.S. Dale. (1986) Inductively coupled plasma-atomic emission spectrometric determination of rare earth elements in geological materials. Spectrochimica Acta Part B: Atomic Spectroscopy 41:3, pages 237-242.
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John C. Mills. (1986) An acid dissolution procedure for the determination of boron in coal ash and silicates by inductively-coupled plasma emission spectrometry with conventional glass nebulizers. Analytica Chimica Acta 183, pages 231-238.
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Xu Li-qiang & Rao Zhu. (1986) Determination of boron in soils by sequential scanning ICP-AES using side line indexing methodBorbestimmung in B�den durch Sequential Scanning ICP-AES mit Hilfe der Nebenlinien-Auswertung. Fresenius' Zeitschrift f�r Analytische Chemie 325:6, pages 534-538.
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N.G. Van Der Veen, H.J. Keukens & G. Vos. (1985) Comparison of ten digestion procedures for the determination of arsenic in soils by hydride-generation atomic absorption spectrometry. Analytica Chimica Acta 171, pages 285-291.
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GH Bokelman & WS Ryan. (1985) Analyses of Bright and Burley Tobacco Laminae and Stems. Beiträge zur Tabakforschung International/Contributions to Tobacco Research 13:1, pages 29-36.
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I. B. Brenner & S. Erlich. (2016) The Spectrochemical (ICP-AES) Determination of Tungsten in Tungsten Ores, Concentrates, and Alloys: An Evaluation as an Alternative to the Classical Gravimetric Procedure. Applied Spectroscopy 38:6, pages 887-890.
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I.B. Brenner, E.A. Jones, A.E. Watson & T.W. Steele. (1984) The application of a N2-Ar medium-power ICP and cation-exchange chromatography for the spectrometric determination of the rare-earth elements in geological materials. Chemical Geology 45:1-2, pages 135-148.
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Henry A. Foner. (2002) High-pressure acid dissolution of refractory alumina for trace element determination. Analytical Chemistry 56:4, pages 856-859.
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P. Ketelsen & A. Knöchel. (1984) Multielementanalyse von Aerosolen mit Hilfe der Röntgenfluorescenzanalyse mit totalreflektierendem Probenträger (TRFA)Multielement analysis of aerosol samples by X-ray fluorescence analysis with totally reflecting sample holders. Fresenius' Zeitschrift für analytische Chemie 317:3-4, pages 333-342.
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P. Ketelsen & A. Knöchel. 1984. Environmental Research and Protection. Environmental Research and Protection 333 342 .
S. E. Raptis, G. Kaiser & G. Tölg. (1983) A Survey of selenium in the environment and a critical review of its determination at trace levelsÜbersicht über die Bedeutung von Selen in der Umwelt und kritische Bewertung seiner Bestimmungsmöglichkeiten im Spurenbereich. Fresenius' Zeitschrift für Analytische Chemie 316:2, pages 105-123.
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P.J.H. Seeverens, E.J.M. Klaassen & F.J.M.J. Maessen. (1983) A critical evaluation of the performance of triphenylphosphine and N, N'-diphenylthiourea in solvent extraction concentration of precious metals for ICAP-AES analysis. Spectrochimica Acta Part B: Atomic Spectroscopy 38:5-6, pages 727-737.
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I.B. Brenner, A.E. Watson, T.W. Steele, E.A. Jones & M. Goncalves. (1981) Application of an argon-nitrogen inductively-coupled radiofrequency plasma (ICP) to the analysis of geological and related materials for their rare earth contents. Spectrochimica Acta Part B: Atomic Spectroscopy 36:8, pages 785-797.
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Kunnath S. Subramanian. (1981) Rapid electrothermal atomic absorption method for arsenic and selenium in geological materials via hydride evolutionSchnelles elektrothermisches AAS-Verfahren zur Bestimmung von Arsen und Selen in geologischem Material über die Hydridbildung. Fresenius' Zeitschrift für analytische Chemie 305:5, pages 382-386.
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Jaroslav Kotek & Jan Doležal. (1980) Determination of calcium in silicate rocks by potentiometric titration with ethyleneglycol-bis-(2-Aminoethylether)tetraacetic acid and a calcium-selective electrode. Analytica Chimica Acta 120, pages 93-99.
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I.B. Brenner, A.E. Watson, G.M. Russell & M. Goncalves. (1980) A new approach to the determination of the major and minor constituents in silicate and phosphate rocks. Chemical Geology 28, pages 321-330.
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Joseph I. Dinnin. (2002) Inorganic and geological materials. Analytical Chemistry 51:5, pages 144-154.
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