2010
DOI: 10.1080/01919512.2010.508017
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Comparison of Low Pressure and Medium Pressure UV Lamps for UV/H2O2Treatment of Natural Waters Containing Micro Pollutants

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Cited by 44 publications
(17 citation statements)
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“…These findings confirm the results from IJpelaar et al [27]. The authors reported higher energy efficiencies for LP UV lamps in comparison to MP lamps.…”
Section: Evaluation Of Uv Scenarios Based On the Kinetic Degradation supporting
confidence: 94%
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“…These findings confirm the results from IJpelaar et al [27]. The authors reported higher energy efficiencies for LP UV lamps in comparison to MP lamps.…”
Section: Evaluation Of Uv Scenarios Based On the Kinetic Degradation supporting
confidence: 94%
“…The LP lamp is operating much more efficiently since around 90% of its UVC irradiation is emitted at 254 nm where the MP lamps has just for 5-10% of the total emission [27]. The good removal results with the LP UV treatment in AOP operation lead to the assumption that the pharmaceutical degradation process is more affected by chemical oxidation processes, i.e.…”
Section: Evaluation Of Uv Scenarios Based On the Kinetic Degradation mentioning
confidence: 98%
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“…The most common artificial illumination practised is the use of low and medium pressure UV lamps. They have been widely used in AOPs for the removal of pollutants [10][11][12][13]. However, a short bulb life, low energy efficiency (which increases electrical costs) and used or damaged lamps being a possible source of mercury contamination in the environment are drawbacks of this kind of lamp [14].…”
Section: Introductionmentioning
confidence: 99%
“…Among the photochemical processes, H2O2/UV has been found to be very effective in degrading organic micro-pollutants in many different matrices (IJPELAAR et al, 2010;MAJCEN-LE MARECHAL et al, 1997;DE LAAT et al, 1999;RUPPERT et al, 1994. The advantages of such system are the high reaction rates and the possibility to employ small, modular reactors.…”
Section: Irradiated Non Irradiated Uv/o3mentioning
confidence: 99%