Degradation of emerging pollutants in water under solar irradiation using novel TiO 2 -ZnO/clay nanoarchitectures
Author:
Funder
MINECO
Publisher
Elsevier BV
Subject
Industrial and Manufacturing Engineering,General Chemical Engineering,Environmental Chemistry,General Chemistry
Reference66 articles.
1. Eu-wide survey of polar organic persistent pollutants in European river waters;Loos;Environ. Pollut.,2009
2. Impacts of emerging contaminants on freshwater resources: review of recent occurrences, sources, fate and effects;Amrita;Sci. Total Environ.,2010
3. Pan-European survey on the occurrence of selected polar organic persistent pollutants in ground water;Loos;Water Res.,2010
4. Seasonal variation in the occurrence and removal of pharmaceuticals and personal care products in a wastewater treatment plant in Xiamen, China;Sun;J. Hazard. Mater.,2014
5. Assessment of toxicity and biodegradability on activated sludge of priority and emerging pollutants;Tobajas;Environ. Technol.,2016
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