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Thomas Oppenländer
Thomas Oppenländer
Hochschule Furtwangen University
Verified email at hfu.eu
Title
Cited by
Cited by
Year
Photochemical purification of water and air: advanced oxidation processes (AOPs)-principles, reaction mechanisms, reactor concepts
T Oppenländer
John Wiley & Sons, 2007
11252007
Applications of capacitive and barrier discharge excilamps in photoscience
EA Sosnin, T Oppenländer, VF Tarasenko
Journal of Photochemistry and Photobiology C: Photochemistry Reviews 7 (4 …, 2006
3262006
Comparison of the Disinfection Effects of Vacuum‐UV (VUV) and UV Light on Bacillus subtilis Spores in Aqueous Suspensions at 172, 222 and 254 nm
D Wang, T Oppenländer, MG El‐Din, JR Bolton
Photochemistry and photobiology 86 (1), 176-181, 2010
1222010
Anatoxin-a degradation by Advanced Oxidation Processes: Vacuum-UV at 172 nm, photolysis using medium pressure UV and UV/H2O2
A Afzal, T Oppenländer, JR Bolton, MG El-Din
Water Research 44 (1), 278-286, 2010
1062010
Efficient chirality transfer between a chiral 4-methyl-1, 4-dihydropyridine and benzoylformic ester. An example of a pure intermolecular self-immolative process
AI Meyers, T Oppenlaender
Journal of the American Chemical Society 108 (8), 1989-1996, 1986
1001986
Mineralization of organic micropollutants (homologous alcohols and phenols) in water by vacuum-UV-oxidation (H2O-VUV) with an incoherent xenon-excimer lamp at 172 nm
T Oppenländer, S Gliese
Chemosphere 40 (1), 15-21, 2000
872000
Mercury-free sources of VUV/UV radiation: application of modern excimer lamps (excilamps) for water and air treatment
T Oppenländer
Journal of Environmental Engineering and Science 6 (3), 253-264, 2007
832007
Photochemistry of the azoalkanes 2, 3-diazabicyclo [2.2. 1] hept-2-ene and spiro [cyclopropane-7, 1'-[2, 3]-diazabicyclo [2.2. 1] hept-2-ene]: on the questions of one-bond vs …
W Adam, T Oppenlaender, G Zang
The Journal of Organic Chemistry 50 (18), 3303-3312, 1985
751985
Improved vacuum-UV (VUV)-initiated photomineralization of organic compounds in water with a xenon excimer flow-through photoreactor (Xe2∗ lamp, 172 nm) containing an axially …
T Oppenländer, C Walddörfer, J Burgbacher, M Kiermeier, K Lachner, ...
Chemosphere 60 (3), 302-309, 2005
562005
Vacuum-UV-oxidation of chloroorganic compounds in an excimer flow through photoreactor
G Baum, T Oppenländer
Chemosphere 30 (9), 1781-1790, 1995
491995
Mercury-free vacuum-(VUV) and UV excilamps: Lamps of the future
T Oppenländer, E Sosnin
IUVA news 7 (4), 14-18, 2005
47*2005
185‐nm Photochemistry of Olefins, Strained Hydrocarbons, and Azoalkanes in Solution
W Adam, T Oppenländer
Angewandte Chemie International Edition in English 25 (8), 661-672, 1986
471986
Standard reporting of Electrical Energy per Order (EEO) for UV/H2O2 reactors (IUPAC Technical Report)
O Keen, J Bolton, M Litter, K Bircher, T Oppenländer
Pure and Applied Chemistry 90 (9), 1487-1499, 2018
442018
The 185-nm photochemistry of cyclobutene and bicyclo [1.1. 0] butane
W Adam, T Oppenlaender, G Zang
Journal of the American Chemical Society 107 (13), 3921-3924, 1985
331985
Vacuum-UV oxidation (H2O-VUV) with a xenon excimer flow-trough lamp at 172 nm: Use of methanol as actinometer for VUV intensity measurement and as reference compound for OH …
T Oppenländer, R Schwarzwalder
Journal of Advanced Oxidation Technologies 5 (2), 155-163, 2002
312002
A comprehensive photochemical and photophysical assay exploring the photoreactivity of drugs
T Oppenländer
Chimia 42 (10), 331-342, 1988
311988
Engineering of a highly efficient Xe2*-excilamp (xenon excimer lamp, λmax= 172 nm, η= 40%) and qualitative comparison to a low-pressure mercury lamp (LP-Hg, λ= 185/254 nm) for …
S Al-Gharabli, P Engeßer, D Gera, S Klein, T Oppenländer
Chemosphere 144, 811-815, 2016
262016
Apparatus for treating fluids with ultraviolet radiation
T Oppenlander, P Mathys, G Schneider
US Patent 5,614,723, 1997
241997
Wasseraufbereitung mit Vakuum-UV/UV-Excimer-Durchflussphotoreaktoren
T Oppenländer, G Baum
Gas-und Wasserfach. Wasser, Abwasser 137 (6), 321-325, 1996
241996
Novel incoherent excimer uv irradiation units for the application in photochemistry, photobiology/-medicine and for waste water treatment
T Oppenländer
EPA Newsletter, 2-8, 1994
221994
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