Photochemistry of Environmental Aquatic Systems

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Harvey RG Polycyclic hydrocarbons and carcinogenesis. ACS symposium series Gould IR Conventional light sources.

chapter and author info

Leifer A The kinetics of environmental aquatic photochemistry. Theory and practice.

Draper WM Chemosphere Draper WM Measurement of quantum yields in polychromatic light: Dinitroaniline herbicides. In: Stumm W ed Aquatic surface chemistry: Chemical processes at the particle-water interface. Kearns DR Chem Rev Proceedings of the Symposium on Singlet Molecular Oxygen, p Mill T Photooxidation in the Environment.


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Springer, Berlin Heidelberg New York, p Polynuclear aromatic hydorcarbons: Third international symposium on chemistry and biology-carcinogenesis and mutagenesis. Third international symposium on chemistry and biology-carcinogenesis and mutagenesis. Polynuclear aromatic hydrocarbons: Formation, metabolism and measurement. Battelle Press, Columbus, OH, p Thomas JK The chemistry of excitation at interfaces.

Kalyanasundaram K Photochemistry in microheterogeneous systems.

Chemical and Photochemical Transformation of Selected Pesticides in Aquatic Systems

Elsevier, New York NY. Thomas JK Chem Rev Physical and biological chemistry. Battelle, Richland, WA, p Lewis, Ann Arbor, MI, p Battelle Press, Richland, WA, p Wehry EL, Mamantov G Sorption and photochemical transformations of poly-cyclic aromatic compounds on coal stack ash particles. Aquatic and surface photochemistry. Chemistry, characterization and carcinogenesis.

Photochemical processes and the environmental impact of petroleum spills

Lewis, Ann Arbor, MI, p — Air pollution control association. Proceedings APCA 79th annual meeting, paper 86— Ueda H J Catalysis Mass Audubon Soc, Lincoln, Mass.

Monitoring for Chemicals of Emerging Concern (CECs) in California's Aquatic Ecosystems

The measurement of the quantum yield of direct photolysis and of the rate constants of reaction with photogenerated transient species or, sometimes, the use of reasonable values for the latter allowed the prediction of the EHMC half-life time in surface waters, by means of a validated photochemical model. The predicted EHMC lifetime is of the order of hours to a few days in fair-weather summertime, and the main factors controlling the EHMC phototransformation in sunlit surface waters would be the water depth and the dissolved organic carbon DOC content.

Photochemistry of environmental aquatic systems / William J. Cooper, editor, Rod G. Zika, editor

The detected TPs comprised 4-methoxybenzaldehyde, a hydroxylated derivative and dimeric species. Through the use of heterogeneous photocatalysis with TiO2, seven additional TPs were identified, most of them resulting from the further degradation of primary TPs formed through direct photolysis and that might be detected in aquatic systems as well. The increased toxicity is partially accounted for by the formation of 4-methoxybenzaldehyde.