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Advanced Oxidation Processes for Treating Groundwater Contaminated With TCE and PCE: Pilot‐Scale Evaluations
This article presents the results of a pilot‐scale evaluation of an advanced oxidation process that utilizes hydrogen peroxide and ozone. Treatment efficiency was determined as a function of the hydrogen peroxide‐to‐ozone dosage ratio, ozone dosage, and contact time. The ozone mass transfer characteristics of the process were also investigated. Comparison with other treatment technologies indicates that advanced oxidation can be a cost‐effective treatment process for controlling the common chlorinated organics found in groundwater.
Advanced Oxidation Processes for Treating Groundwater Contaminated With TCE and PCE: Pilot‐Scale Evaluations
This article presents the results of a pilot‐scale evaluation of an advanced oxidation process that utilizes hydrogen peroxide and ozone. Treatment efficiency was determined as a function of the hydrogen peroxide‐to‐ozone dosage ratio, ozone dosage, and contact time. The ozone mass transfer characteristics of the process were also investigated. Comparison with other treatment technologies indicates that advanced oxidation can be a cost‐effective treatment process for controlling the common chlorinated organics found in groundwater.
Advanced Oxidation Processes for Treating Groundwater Contaminated With TCE and PCE: Pilot‐Scale Evaluations
Aieta, E. Marco (Autor:in) / Reagan, Kevin M. (Autor:in) / Lang, John S. (Autor:in) / McReynolds, Laurent (Autor:in) / Kang, Joon‐Wun (Autor:in) / Glaze, William H. (Autor:in)
Journal ‐ American Water Works Association ; 80 ; 64-72
01.05.1988
9 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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