Organic Contaminants in Refinery Wastewater: Characterization and Novel Approaches for Biotreatment
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Publisher
InTech
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http://www.intechopen.com/download/pdf/58096
Reference57 articles.
1. Praveen P, Loh K-C. Simultaneous extraction and biodegradation of phenol in a hollow fiber supported liquid membrane bioreactor. Journal of Membrane Science. 2013;430:242-251
2. Diya’uddeen BH, Daud WMAW, Abdul Aziz AR. Treatment technologies for petroleum refinery effluents: A review. Process Safety and Environmental Protection. 2011;89(2):95-105
3. Yavuz Y, Koparal AS. Electrochemical oxidation of phenol in a parallel plate reactor using ruthenium mixed metal oxide electrode. Journal of Hazardous Materials. 2006;136(2):296-302
4. Yavuz Y, Koparal AS, Öğütveren ÜB. Treatment of petroleum refinery wastewater by electrochemical methods. Desalination. 2010;258(1-3):201-205
5. Yan L, Wang Y, Li J, Ma H, Liu H, Li T, et al. Comparative study of different electrochemical methods for petroleum refinery wastewater treatment. Desalination. 2014;341:87-93
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