Phenomenological study and application of the combined influence of iron concentration and irradiance on the photo-Fenton process to remove micropollutants
Author:
Publisher
Elsevier BV
Subject
Pollution,Waste Management and Disposal,Environmental Chemistry,Environmental Engineering
Reference35 articles.
1. The use of CPC collectors for detoxification of contaminated water: design, construction and preliminary results;Ajona;Sol Energy,2000
2. Solar photo-Fenton at mild conditions to treat a mixture of six emerging pollutants;Bernabeu;Chem Eng J,2012
3. Blanco Gálvez J, Malato S. Solar Detoxification. ISBN 92-3-103916-4 ed. France: UNESCO Publishing; 2003.
4. Compound parabolic concentrator technology development to commercial solar detoxification applications;Blanco;Sol Energy,1999
5. Occurrence and persistence of organic emerging contaminants and priority pollutants in five sewage treatment plants of Spain: two years pilot survey monitoring;Bueno;Environ Pollut,2012
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