Biosorption of Phenol and Cyanide from Synthetic/Simulated Wastewater by Sugarcane Bagasse—Equilibrium Isotherm and Kinetic Analyses
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Publisher
Springer Science and Business Media LLC
Link
http://link.springer.com/article/10.1007/s41101-017-0019-1/fulltext.html
Reference44 articles.
1. Aksu Z, Yener JA (2001) Comparative adsorption/biosorption study of mono-chlorinated phenols onto various sorbents. Waste Manag 21:695–702
2. Busca G, Berardinelli S, Resini C, Arrighi L (2008) Technologies for the removal of phenol from fluid streams: a short review of recent developments. J Hazard Mater 160:265–288
3. Calace N, Nardi E, Petronio BM, Pietroletti M (2002) Adsorption of phenols by papermill sludges. Environ Pollut 118:315–319
4. Desai JD, Ramakrishna C (1998) Microbial degradation of cyanides and its commercial application. J Sci Ind Res 57:441–453
5. Dash RR, Balomajumder C, Kumar A (2009) Removal of cyanide from water and wastewater using granular activated carbon. Chem Eng J 146:408–413
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