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Design, construction and testing of a solar photocatalytic treatment facility for BTEX contaminated groundwater
A solar photocatalytic treatment facility was designed, constructed and tested for treating contaminated groundwater at a commercial site in Gainesville, Florida. This facility uses flat plate solar reactors made from extruded acrylic double skinned sheets with rectangular channels. It uses TiO2 as the catalyst in a slurry mode. The facility was tested for treating groundwater contaminated with Benzene, Toluene, Ethylbenzene and Xylenes (BTEX). The solar system worked successfully in the field tests. An estimate of the energy savings for the solar technology over the conventional carbon adsorption technology shows a savings of approximately 430 MWh per year.
Design, construction and testing of a solar photocatalytic treatment facility for BTEX contaminated groundwater
A solar photocatalytic treatment facility was designed, constructed and tested for treating contaminated groundwater at a commercial site in Gainesville, Florida. This facility uses flat plate solar reactors made from extruded acrylic double skinned sheets with rectangular channels. It uses TiO2 as the catalyst in a slurry mode. The facility was tested for treating groundwater contaminated with Benzene, Toluene, Ethylbenzene and Xylenes (BTEX). The solar system worked successfully in the field tests. An estimate of the energy savings for the solar technology over the conventional carbon adsorption technology shows a savings of approximately 430 MWh per year.
Design, construction and testing of a solar photocatalytic treatment facility for BTEX contaminated groundwater
Madabushi, S. (author) / Goswami, D.Y. (author) / Klausner, J.F. (author) / Jotshi, C.K. (author)
1998
6 Seiten, 11 Quellen
Conference paper
English
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