Remediation of phenolic wastewater implementing nano zerovalent iron as a granular third electrode in an electrochemical reactor
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Agricultural and Biological Sciences,Environmental Chemistry,Environmental Engineering
Link
http://link.springer.com/content/pdf/10.1007/s13762-021-03205-5.pdf
Reference47 articles.
1. Abdelwahab O, Amin NK, El-Ashtoukhy E-SZ (2009) Electrochemical removal of phenol from oil refinery wastewater. J Hazard Mater 163:711–716
2. Adhoum N, Monser L (2004) Decolorization and removal of phenolic compounds from olive mill wastewater by electrocoagulation. Chem Eng Process 43:1281–1287
3. Agrios A, Gray K, Weitz E (2003) Photocatalytic transformation of 2,4,5- trichlorophenol on TiO2 under sub-band-gap illumination. Langmuir 19:1402–1409
4. Albayati TM (2019) Application of nanoporous material MCM-41 in a membrane adsorption reactor (MAR) as a hybrid process for removal of methyl orange. Desalin Water Treat 151:138–144
5. Albayati TM, Doyle AM (2014) Purification of aniline and nitrossubistituted aniline contaminants from aqueous solution using beta zeolite. Chem Bulgar J Sci Educ 23(1):105–114
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