Determination of aluminum at the parts per billion level by solvent extraction and flame atomic emission spectrometry
暂无分享,去创建一个
[1] M. Guardia,et al. Multi-component determination of lanthanum, cerium, praseodymium and neodymium by flame atomic emission spectrometry , 1988 .
[2] J. Dominguez,et al. Spectroscopic study of the aluminium/lumogallion system in the presence of non-ionic surfactants , 1987 .
[3] A. Watt,et al. Determination of dissolved aluminium by the micelle-enhanced fluorescence of its lumogallion complex , 1986 .
[4] J. Savory,et al. ALUMINIUM POISONING: DIALYSIS ENCEPHALOPATHY, OSTEOMALACIA, AND ANAEMIA , 1983, The Lancet.
[5] A. Sanz-Medel,et al. A critical comparative study of atomic-spectrometric methods (atomic absorption, atomic emission and inductively coupled plasma emission) for determining strontium in biological materials. , 1983, The Analyst.
[6] W. Slavin,et al. Investigation of aluminum interferences using the stabilized temperature platform furnace , 1982 .
[7] W. Slavin,et al. Effect of graphite furnace substrate materials on analyses by furnace atomic absorption spectrometry , 1981 .
[8] T. Yoshino,et al. A method for removal of chloride interference in determination of aluminium by atomic-absorption spectrometry with a graphite furnace. , 1979, Talanta.
[9] C. Cronan,et al. Aluminum Leaching Response to Acid Precipitation: Effects on High-Elevation Watersheds in the Northeast , 1979, Science.
[10] A. Smith. Earth processes. , 1978, Science.
[11] I. L. Barnes,et al. Determination of several trace metals in simulated fresh water by graphite furnace atomic emission spectrometry , 1978 .
[12] A. Cedergren,et al. Investigations of reactions involved in flameless atomic absorption procedures : Part IV. A theoretical study of factors influencing the determination of aluminium , 1977 .
[13] J. Flendrig,et al. ALUMINIUM AND DIALYSIS DEMENTIA , 1976, The Lancet.
[14] W. D. Kaehny,et al. The dialysis encephalopathy syndrome. Possible aluminum intoxication. , 1976, The New England journal of medicine.
[15] H. Furuta,et al. Effect of Ligand on Atomic Absorption lntensity of Aluminum and lts Application to the Determination of Aluminum in Aiuminum Alloy , 1973 .
[16] S. R. Koirtyohann,et al. The nitrous oxide-acetylene flame in emission analysis—III: Aluminum, gallium, indium, thallium, germanium, and tin , 1969 .
[17] S. R. Koirtyohann,et al. The nitrous oxide-acetylene flame in emission analysis—I. General characteristics , 1968 .
[18] C. E. White,et al. New fluorometric reagent for aluminum, N-salicylidene-2-amino-3-hydroxyfluorene , 1967 .
[19] J. Willis. Nitrous Oxide – Acetylene Flame in Atomic Absorption Spectroscopy , 1965, Nature.
[20] R. Argauer,et al. Effect of Substituent Groups on Fluorescence of Metal Chelates. , 1964 .
[21] F. Will. Fluorometric Determination of Aluminum in the Partper-Billion Range , 1961 .
[22] B. Vallee,et al. Cyanogen-Oxygen Flame , 1956 .
[23] J. Kashima,et al. Determination of Aluminum by Flame Photometry , 1955 .
[24] C. E. White,et al. Determination of Aluminum by Photometric Fluorescence Measurement , 1940 .
[25] T. Török. Die spektrotitrimetrische Bestimmung der Erdalkalimetalle und der Phosphate , 1940 .