1993
DOI: 10.1021/es00040a015
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Mass-spectrometric evidence for the formation of bromochloramine and N-bromo-N-chloromethylamine in aqueous solution

Abstract: 22) Haario, H.; Taavitaainen, V. M. Data-Analysis Toolbox for Use with Matlab, Users Guide, Control CAD, Espoo, Finland, 1991. (23) Gergov, M.; Priha, M.; Talka, E.; Kilttila, 0.; Kangas, A.; Kukkonen, K. Tappi J. 1988, 71 (12), 175-184. (24) Saunamaki, R.; Jokinen, K.; Jarvinen, R.; Savolainen, M. (45) Joshi, B. K.; Hillaby, B. J. Environmental fate and effects of bleached pulp mill effluents; Sijdergren, A., Ed.; SwedishMembrane introduction mass spectrometry (MIMS) is used to confirm the existence of bromoc… Show more

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Cited by 46 publications
(31 citation statements)
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“…Quantitative data are provided rapidly and structural information about unknown reaction products can be deduced. Among the experiments reported are studies of aqueous phase reactions used to convert chlorine to chloramines , for example, N-bromo-N-chloromethylamine (Gazda et al, 1993). Note that this chemistry occurs in water, the ideal medium for sampling by MIMS.…”
Section: B Chemical Reactorsmentioning
confidence: 99%
“…Quantitative data are provided rapidly and structural information about unknown reaction products can be deduced. Among the experiments reported are studies of aqueous phase reactions used to convert chlorine to chloramines , for example, N-bromo-N-chloromethylamine (Gazda et al, 1993). Note that this chemistry occurs in water, the ideal medium for sampling by MIMS.…”
Section: B Chemical Reactorsmentioning
confidence: 99%
“…Although these results apply to only one condition, they are suggestive of the possible importance of bromochloramine in DBP formation in water sources containing Br − . Several reactions between chlorinated and brominated species produce bromochloramine; by far, the most rapid reaction is that between NH 2 Cl and HOBr 24 …”
Section: Introductionmentioning
confidence: 99%
“…Membranes were first used in mass spectrometry for monitoring photosynthetic processes 26 and later the method was adapted to solution analysis, by examination of compounds that permeate through hollow fiber capillary membranes. 27 Since then, this area has grown [28][29][30] and MIMS has also been applied to such important areas such as biological waste water treatment, 31 chemical reaction monitoring, 32,33 bioreactor monitoring [34][35][36][37][38] and especially to the analysis of volatile and semi-volatile organic compounds. 29,[39][40][41] Key to recent developments in MIMS has been the use of flow injection methods of sample handling 42,43 in which the solution is transported over the surface of the membrane, often located in a direct insertion membrane probe in the ion source.…”
Section: Membrane Introduction Mass Spectrometrymentioning
confidence: 99%