Biosorption of Pb(II) and Cu(II) from aqueous solutions by pretreated biomass of Neurospora crassa
- İ. Kıran, T. Akar, Sibel Tunali
- Chemistry
- 1 November 2005
Biosorption of Reactive Black 5 dye by Penicillium restrictum: the kinetic study.
- C. F. Iscen, İ. Kıran, S. Ilhan
- Chemistry, MedicineJournal of Hazardous Materials
- 8 May 2007
Determination of the equilibrium, kinetic and thermodynamic parameters of adsorption of copper(II) ions onto seeds of Capsicum annuum.
- A. Ozcan, A. Ozcan, Sibel Tunali, T. Akar, İ. Kıran
- ChemistryJournal of Hazardous Materials
- 30 September 2005
Equilibrium and kinetics of biosorption of lead(II) from aqueous solutions by Cephalosporium aphidicola
- Sibel Tunali, T. Akar, A. Özcan, İ. Kıran, A. Özcan
- Chemistry
- 2006
Chromium(VI) biosorption characteristics of Neurospora crassa fungal biomass
- Sibel Tunali, İ. Kıran, T. Akar
- Engineering
- 1 June 2005
Biosorption kinetics and isotherm studies of Acid Red 57 by dried Cephalosporium aphidicola cells from aqueous solutions
- İ. Kıran, T. Akar, A. Özcan, A. Özcan, Sibel Tunali
- Biology
- 1 October 2006
Botrytis cinerea as a new fungal biosorbent for removal of Pb(II) from aqueous solutions
- T. Akar, Sibel Tunali, İ. Kıran
- Engineering
- 1 October 2005
Isotherm and kinetic studies of Burazol Blue ED dye biosorption by dried anaerobic sludge.
- N. Caner, İ. Kıran, S. Ilhan, C. F. Iscen
- Chemistry, MedicineJournal of Hazardous Materials
- 15 June 2009
Biosorption potential of dried Penicillium restrictum for Reactive Orange 122: isotherm, kinetic and thermodynamic studies
- S. Ilhan, C. F. Iscen, N. Caner, İ. Kıran
- Engineering
- 1 April 2008
BACKGROUND: This paper evaluates the biosorption of Reactive Orange 122 dye (RO 122) by dried Penicillium restrictum cells. The aim was to determine the pH, contact time, temperature and dye…
The antifungal activity and biotransformation of diisophorone by the fungus Aspergillus niger
- İ. Kıran, Hande N. Yildirim, J. Hanson, P. Hitchcock
- Chemistry, Biology
- 1 December 2004
The microbial transformation of racemic diisophorone was investigated using the plant pathogen Aspergillus niger as a biocatalyst to obtain spectroscopic data including two-dimensional NMR analysis, nOe and an X-ray crystallographic study.
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