References

  1. D. Trebouet, J.P. Schlumpf, P. Jaouen, F. Quemeneur, Stabilized landfill leachate treatment by combined physicochemical – nanofiltration processes, Water Res., 35 (2001) 2935–2942.
  2. Z. Shujun, W. ShuYing, M. XinWei, Highly effective biological nitrogen removal from high ammonia landfill leachate, China Environ. Sci., 28 (2008) 225–228.
  3. R. Cossu, K. Haarstad, M.C. Lavagnolo, P. Littarru, Removal of municipal solid waste COD and NH4–N by phyto-reduction: a laboratory–scale comparison of terrestrial and aquatic species at different organic loads, Ecol. Eng., 16 (2001) 459–470.
  4. M. Topal, B. Karagözoğlu, E. Öbek, Natural treatment of leachate, AKU. J. Sci. Eng., 11 (2011) 1–16.
  5. E. Taskan, Treatment of Leachates in Anaerobic Membrane Bioreactor, Firat University Graduate School of Natural and Applied Sciences, Department of Environmental Engineering, Master Thesis, Elazig, Turkey, 2009, p. 85.
  6. H.J. Gijzen, Anaerobic digestion for sustainable development: a natural approach, Water Sci. Technol., 45 (2002) 321–328.
  7. S. Kahraman, O. Yeşilada, Industrial and agricultural wastes as substrates for laccase production by white-rot fungi, Folia Microbiol. (Praha), 46 (2001) 133–136.
  8. I.M. Banat, P. Nigam, D. Singh, R. Marchant, Microbial decolorization of textile-dye containing effluents:
    a review, Bioresour. Technol., 58 (1996) 217–227.
  9. S.S. Dhawale, A.C. Lane, S.W. Dhawale, Effects of mercury on the white rot fungus Phanerochaete chrysosporium, Bull. Environ. Contam. Toxicol., 56 (1996) 825–832.
  10. J. Gabriel, O. Kofronová, P. Rychlovský, M. Krenzelok, Accumulation and effect of cadmium in the wood-rotting basidiomycete Daedalea quercina, Bull. Environ. Contam. Toxicol., 57 (1996) 383–390.
  11. T.A. Adelani-Akande, O.B. Akpor, B.I. Aderiye, Investigation of the role of selected fungal strains in the removal of phosphate and nitrate in synthetic wastewater, Annu. Res. Rev. Biol., 4 (2014) 1045–1058.
  12. M.S. Price, J.J. Classen, G.A. Payne, Aspergillus niger absorbs copper and zinc from swine wastewater, Bioresour. Technol., 77 (2001) 41–49.
  13. M.N.B. Momba, T.E. Cloete, Biomass relationship to growth and phosphate uptake of Pseudomonas fluorescens, Escherichia coli and Acinetobacter radioresistens in mixed liquor medium, J. Ind. Microbiol., 16 (1996) 364–369.
  14. B. Volesky, Removal and Recovery of Heavy Metals by Biosorption, B. Volesky, Ed., Biosorption of Heavy Metals, CRC Press, Boca Raton, FL, 1990.
  15. J.M. Tobin, D.G. Cooper, R.J. Neufeld, Investigation of the mechanism of metal uptake by denatured Rhizopus arrhizus biomass, Enzyme Microb. Technol., 12 (1990) 591–595.
  16. J.L. Zhou, Zn biosorption by Rhizopus arrhizus and other fungi, Appl. Microbiol. Biotechnol., 51 (1999) 686–693.
  17. A. Kapoor, T. Viraraghavan, Heavy metal biosorption sites in Aspergillus niger, Bioresour. Technol., 61 (1997) 221–227.
  18. V.K. Gupta, A. Rastogi, V.K. Saini, N. Jain, Biosorption of copper(II) from aqueous solutions by Spirogyra species, J. Colloid Interface Sci., 296 (2005) 59–63.
  19. W. Jianlong, Biosorption of copper(II) by chemically modified biomass of Saccharomyces cerevisiae, Process Biochem., 37 (2002) 847–850.
  20. N. Yildirim, M. Tanyol, T. Dere, A. Cumurcu, A. Yildiz, The Investigation on Physico-Chemical Parameters of the Textile Effluents After Treatment by White Rot Fungus Pleurotus djamor, New Biotechnology Volume 29, Supplement, Pages S184, Abstracts of the 15th European Congress on Biotechnology, 23–26 September 2012, İstanbul, 2012.
  21. V. Yonten, H. Alp, N. Yildirim, N.C. Yildirim, A. Ogedey, Investigation of optimum conditions for efficient COD reduction in synthetic sulfamethazine solutions by Pleurotus eryngii var. ferulae using response surface methodology, J. Taiwan Inst. Chem. Eng., 80 (2017) 340–355.
  22. N. Yildirim, G.O. Erguven, E. Adar, The chemical and biochemical oxygen demand reduction by Armillaria tabescens in malathion supplemented culture medium, Global Nest J., 20 (2018) 91–95.
  23. G. Kalčíková, E.T. Pirc, A.Ž. Gotvajn, Aerobic and anaerobic biodegradation potential of leachate from old active landfill, Desal. Water Treat., 57 (2016) 8619–8625.
  24. A. Noorlidah, W.A.R. Wan Razarinah, Z.M. Noor, M.T. Rosna, Treatment of landfill leachate using Ganoderma australe mycelia bilized on ecomat, Int. J. Environ. Sci. Dev., 4 (2013) 483–487.