It is well documented that the photolysis of H2O2 generates OH radicals which play an important role in explaining the degradation of environmental chemicals in aqueous medium. In the following work relative reaction rate constants of some representative substances were determined with wavelengths above 290 nm in the presence of H2O2. The results show, that the used system is suitable to check the OH radical reactivity of organic compounds under natural conditions
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Civil and Environmental Engineering...
Reactive oxygen species (ROS) including singlet oxygen (1O2) and hydroxylradicals (radical dotOH) ph...
The UV–H2O2 process, a standard advanced oxidation process (AOP) for water treatment, has been appli...
A method is presented for determining production and consumption rates of .OH radicals produced phot...
Organic chemicals are concentrated in natural waters, where they undergo complex reactions under the...
A great number of organic chemicals produced today are released and disperse in the environment. The...
The photochemical formation rates of hydroxyl radicals (OH radicals) in river water and seawater wer...
A variety of short-lived, reactive chemical species (i.e. free radicals and excited state species) a...
In the course of the project numerous kinetic, spectroscopic and photochemical parameters for format...
International audienceIn the present study, we investigated the correlation between the hydroxyl rad...
Nitrophenols (4-methyl-2-nitrophenol, 2,4-dinitrophenol, 2,6-dinitro-p-cresol) and nitrobenzoic acid...
Due to contamination of the environment by pesticides and their mishandling, there is the need for t...
SIGLETIB: RN 5906 (279) / FIZ - Fachinformationszzentrum Karlsruhe / TIB - Technische Informationsbi...
In recent years the increased use of pharmaceuticals, pesticides, and other chemicals has become a c...
Reactive oxygen species, such as the hydroxyl radical, have gained more attention over the last seve...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Civil and Environmental Engineering...
Reactive oxygen species (ROS) including singlet oxygen (1O2) and hydroxylradicals (radical dotOH) ph...
The UV–H2O2 process, a standard advanced oxidation process (AOP) for water treatment, has been appli...
A method is presented for determining production and consumption rates of .OH radicals produced phot...
Organic chemicals are concentrated in natural waters, where they undergo complex reactions under the...
A great number of organic chemicals produced today are released and disperse in the environment. The...
The photochemical formation rates of hydroxyl radicals (OH radicals) in river water and seawater wer...
A variety of short-lived, reactive chemical species (i.e. free radicals and excited state species) a...
In the course of the project numerous kinetic, spectroscopic and photochemical parameters for format...
International audienceIn the present study, we investigated the correlation between the hydroxyl rad...
Nitrophenols (4-methyl-2-nitrophenol, 2,4-dinitrophenol, 2,6-dinitro-p-cresol) and nitrobenzoic acid...
Due to contamination of the environment by pesticides and their mishandling, there is the need for t...
SIGLETIB: RN 5906 (279) / FIZ - Fachinformationszzentrum Karlsruhe / TIB - Technische Informationsbi...
In recent years the increased use of pharmaceuticals, pesticides, and other chemicals has become a c...
Reactive oxygen species, such as the hydroxyl radical, have gained more attention over the last seve...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Civil and Environmental Engineering...
Reactive oxygen species (ROS) including singlet oxygen (1O2) and hydroxylradicals (radical dotOH) ph...
The UV–H2O2 process, a standard advanced oxidation process (AOP) for water treatment, has been appli...