New and Emerging Analytical Techniques for the Detection of Organic Contaminants in Water . Environmental Science and Technology 3. Crescenzi, C., A. Detection of poly(ethylene glycols) and related acidic forms in environmental waters by liquid chromatography/electrospray/mass spectrometry. Environmental Science and Technology 3. Di Corcia, A., R. Monitoring aromatic surfactants and their aromatic surfactants and their biodegradation intermediates in raw and treated sewage by solid phase extraction and liquid chromatography. Environmental Science and Technology 2. Suggested Citation: '7 New and Emerging Analytical Techniques for the Detection of Organic Contaminants in Water.' National Research Council. Scandium-Substituted Na 3 Zr 2 (SiO 4) 2 (PO 4) Prepared by a Solution-Assisted Solid-State Reaction Method as Sodium-Ion Conductors. M&U International LLC: Steady supply & demand: Meeting customers increasing demands at home as well as abroad. M&U dedicates itself to the development and production. The relatively new technique of solid phase microextraction (SPME) is an important tool to prepare samples both in the lab and on-site. SPME is a 'green' technology. Category: flavor and fragrance agents: Recommendation for 2-ethyl-1-hexanol usage levels up to: 4.0000 % in the fragrance concentrate. Maximised Survey-derived Daily. Solid-phase microextraction (SPME) is a sample preparation method developed to solve some of the analytical challenges of sample preparation as well as sample. Drozd, J. Chemical Derivatization in Gas Chromatography. Amsterdam: Elsevier. Fujita, Y., W. Identification of wastewater DOC characteristics in reclaimed wastewater and recharged groundwater. Water Environment Research 6. Glaze, W. A unified approach to the analysis of polar organic by- products of oxidation in aqueous matrices. Water Research 3. Gonzalez- Maze, E., M. Monitoring long- chain intermediate products from the degradation of linear alkylbenzene sulfonates in the marine environment by solid- phase extraction followed by liquid chromatography/ionspray mass spectrometry 3. Hartman, A., A. Identification of fluoroquinoline antibiotics as the main source of umu. C genotoxicity in native hospital wastewater. Environmental Toxicology and Chemistry 1. Hayes, M. Humic Substances II: In Search of Structure. New York: John Wiley & Sons. Heberer, T., and H. Determination of clofibric acid and N- (phenylsufonyl)- sarcosine in sewage, river and drinking water. International Journal of Environmental Analytical Chemistry. Handbook of Analytical Derivatization Reactions. New York: John Wiley & Sons. Krasner, S. The occurrence of disinfection by- products in U. S. Journal of the American Water Works Association 8. Lingeman, H., and W. Detection- Oriented Derivatization Techniques in Liquid Chromatography. New York: Marcel Dekker, Inc. Mangiapan, S., E. Metabolites of arachlor in water. Identification by mass spectrometry and chemical synthesis. Environmental Science and Technology 3. Marcomini, A., and G. Surfactant metabolites in environmental aqueous samples: A liquid chromatographic approach to the routine analysis of alcohol polyethoxylate biointermediates. Analusis Magazine 2. Minero, C., M. Determination of trace amounts of highly hydrophilic compounds in water by direct derivatization and gas- chromatography: Mass- spectrometry . Fresenius' Journal of Analytical Chemistry 3. Nichols, D. Runoff of estrogen 1. Journal of Environmental Quality 2. Pan, L., J. Determinaion of amines and water using derivatization combined with solid- phase microextraction. Journal of Chromatography 7.
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