Wols, B. A. published the artcileDesign aspects of UV/H2O2 reactors, Synthetic Route of 117-96-4, the main research area is design UV hydrogen peroxide reactor.
The design of UV/H2O2 reactors was studied. An anal. approach was followed to provide characteristics (maximum fluence and maximum possible degradation) for an ideal system. An efficiency parameter was introduced that relates the actual performance of a reactor with the best possible performance for a reactor with a certain water flow, lamp power and UV transmittance. From the anal. model, several design parameters were studied. The desired treatment level influences the choice of a design parameter, as the fluence distribution becomes less important at lower desired treatment levels. As the desired degradation levels in UV/H2O2 applications are lower than the desired inactivation levels for UV disinfection, a UV/H2O2 reactor may be designed with a larger water layer depth than UV disinfection reactors. Manipulating the velocity profile towards a profile that mimics the fluence rate profile is beneficial, as well as increasing mixing. Increasing the number of lamps (while the total energy consumption remains the same) is beneficial, as it results in a more uniform fluence rate profile. Enlarging the quartz sleeve has limited effect. Changing the distribution of H2O2 in the reactor also has limited effects. Using the design parameters, new UV/H2O2 reactor types were developed with CFD simulations and tested exptl. An increase in log degradation ≤30% was demonstrated by the improved reactor design.
Chemical Engineering Science published new progress about Computational fluid dynamics. 117-96-4 belongs to class isoquinoline, name is Diatrizoic Acid, and the molecular formula is C11H9I3N2O4, Synthetic Route of 117-96-4.
Referemce:
Isoquinoline – Wikipedia,
Isoquinoline | C9H7N – PubChem