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Titlebook: Haloforms and Related Compounds in Drinking Water; Anastasia D. Nikolaou Book 2003 Springer-Verlag Berlin Heidelberg 2003 Disinfection by-

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Book 2003alytical methodologies are being developed. Up-to-date research findings concerning all these aspects have been collected, critically reviewed, summarized, and are presented and discussed in the present book..
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The Pacific Insular Case of American Sāmoa countries..Commonly, at least 30% of mutagenic activity in drinking water is due to MX. The mutagenic activity of MX is comparable with the activity of aflatoxin. Due to its high activity and common presence in tap water, the World Health Organization has placed MX on the list of disinfection by-pr
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https://doi.org/10.1007/978-1-4613-1483-7 DBPs profile has to do with treatment methods. With the identification of these DBPs, the potential toxic effects from exposure to these organics is an interesting scientific area until today insufficient evidence exists regarding toxicity from animal testing for individual compounds and mixtures a
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Formation of Haloforms in Drinking Water,urrent research. Nevertheless, the reactions and products have not yet been clearly identified even with the aid of newly developed analytical tools. In the water treatment practice the three general approaches for the reduction of DBPs are to control their formation by using alternative disinfectan
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Formation of Brominated Organic Compounds in Chlorinated Drinking Water,ased bromine incorporation. Mechanistic and empirical models have been developed either to provide greater insight into the mechanisms of brominated-DBP formation, or allow prediction of their concentrations.
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MX and Other Potentially Hazardous Chlorinated By-Products, countries..Commonly, at least 30% of mutagenic activity in drinking water is due to MX. The mutagenic activity of MX is comparable with the activity of aflatoxin. Due to its high activity and common presence in tap water, the World Health Organization has placed MX on the list of disinfection by-pr
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