References

  1. R. Han, H.Y. Li, J. Zhang, H. Xiao, J. Shi, Biosorption of copper and lead ions by waste beer yeast, J. Hazard. Mater., 137 (2006) 1569–1576.
  2. A. Lyer, K. Mody, B.K. Jha, Biosorption of heavy metals by a marine bacterium, Mar. Pollut. Bull., 50 (2005) 175–179.
  3. B. Pawlik-Skowrońska, T. Skowroński, Cyanobacteria and their interactions with heavy metals, Bot. News, 40 (1996) 17–30 (in Polish).
  4. D. Bulgariu, L. Bulgariu, Equilibrium and kinetics studies of heavy metal ions biosorption on green algae waste biomass, Bioresour. Technol., 103 (2012) 489–493.
  5. Regulation of the Minister of Environment of 24 July 2006 on the Criteria That Have to Be Met when Disposing of Sewage to Water or Ground and on the Substances That Are Particularly Detrimental to the Water Environment (in Polish).
  6. Y.N. Mata, M.L. Blázquez, A.M. Ballester, F. Rodríguez González, J.A. Muñoz Characterization of the biosorption of cadmium, lead and copper with the brown alga Fucus vesiculosus, J. Hazard. Mater., 158 (2008) 316–323.
  7. J. Febrianto, A.N. Kosasih, J. Sunarso, Y.H. Ju, N. Indrawati, S. Ismadji, Equilibrium and kinetic studies in adsorption of heavy metals using biosorbent: a summary of recent studies, J. Hazard. Mater., 162 (2009) 616–645.
  8. V.K. Gupta, A.K. Shrivastava, J. Neeraj, Biosorption of chromium (VI) from aąueous solutions by green algae Spirogyra species, Water Res., 35 (2001) 4079–4085.
  9. B. Volesky, Detoxification of metal-bearing effluents: biosorption for the next century, Hydrometallurgy, 59 (2001) 203–216.
  10. M.M. Montazer-Rahmati, P. Rabbani, A. Abdolali, A.R. Keshtkar, Kinetics and equilibrium studies on biosorption of cadmium, lead, and nickel ions from aqueous solutions by intact and chemically modified brown algae, J. Hazard. Mater., 185 (2011) 401–407.
  11. E. Klimiuk, M. Łebkowska, Biotechnology in Environmental Protection, PWN, Warsaw, 2005 (in Polish).
  12. E. Romera, F. González, A. Ballester, M.L. Blázquez, J.A. Muñoz, Comparative study of biosorption of heavy metals using different types of alga, Bioresour. Technol., 98 (2007) 3344–3353.
  13. S. Klimmek, H.J. Stan, A. Wilke, Comparative analysis of the biosorption of cadmium, lead, nikel and zinc by alga, Environ. Sci. Technol., 35 (2001) 4283–4288.
  14. P.A. Terry, W. Stone, Biosorption of cadmium and copper contaminated water by Scenedesmus abundans, Chemosphere, 47 (2002) 249–255.
  15. I.S. Bădescu, D. Bulgariu, L. Bulgariu, Alternative utilization of algal biomass (Ulva sp.) loaded with Zn(II) ions for improving of soil quality, J. Appl. Phycol., 29 (2017) 1069–1079.
  16. D. Filipiuk, L. Fuks, M. Majdan, Biosorption as a method of removal and recovery of heavy metals from industrial wastewater, Chem. Ind., 85 (2006) 417–422 (in Polish).
  17. A. Duda-Chodak, M. Kubica, T. Tarko, Biosorption of heavy metals. Part III – Algae, Laboratory, 12 (2008) 52–55 (in Polish).
  18. M.K. Błaszczyk, Microorganisms in Environmental Protection, PWN Scientific Publishing House, Warsaw, 2007 (in Polish).
  19. A. Jaguś, M. Rzętała, The Poraj Dam Reservoir: Physico-Geographical Characteristics, Faculty of Earth Sciences of University of Silesia, Sosnowiec, 2000 (in Polish).
  20. M. Bogdalski, W. Sułkowski, The Impact of the Dam Reservoir “Poraj” on the Cleannes of the Warta River, Treatment, Recovery and Protection of Waters, Publishing House of Częstochowa University of Technology, Częstochowa, 22 (1998) 169–177 (in Polish).
  21. A. Rosińska, L. Dąbrowska, PCBs and heavy metals in bottom sediments of the dam reservoir Poraj, Eng. Environ. Prot., 11 (2008) 455–469 (in Polish).
  22. K. Kipigroch, M. Janosz-Rajczyk, L. Wykrota, Biosorption of heavy metals with the use of mixed algal population, Arch. Environ. Prot., 38 (2012) 3–10.
  23. M. Arjomandzadegan, P. Rafiee, M.K. Moraveji, M. Tayeboon, Efficacy evaluation and kinetic study of biosorption of nickel and zinc by bacteria isolated from stressed conditions in a bubble column, Asian Pac. J. Trop. Med., 7 (2014) 194–198.
  24. P.X. Sheng, Y.P. Ting, J.P. Chen, L. Hong, Sorption of lead, copper, cadmium, zinc, and nickel by marine algal biomass: characterization of biosorptive capacity and investigation of mechanisms, J. Colloid Interface Sci., 275 (2004) 131–141.
  25. I. Anastopoulosa, G.Z. Kyzas, Progress in batch biosorption of heavy metals onto algae, J. Mol. Liq., 209 (2015) 77–86.
  26. G. Donmez, Z. Aksu, A. Ozturk, T. Kutsal, A comparative study on heavy metal biosorption characteristics of some algae, Process Biochem., 34 (1999) 885–892.
  27. B. Pawlik-Skowrońska, Secrets of immunity of algae and cyanobacteria to toxic heavy metals, Cosmos, 51 (2002) 175–184.
  28. C.M. Monteiro, P.M.L. Castro, F.X. Malcata, Biosorption of zinc ions from aqueous solution by the microalga Scenedesmus obliquus, Environ. Chem. Lett., 9 (2011) 169–176.
  29. G.-J. Zhou, F.-Q. Peng, L.-J. Zhang, G.-G. Ying, Biosorption of zinc and copper from aqueous solutions by two freshwater green microalgae Chlorella pyrenoidosa and Scenedesmus obliquus, Environ. Sci. Pollut. Res. Int., 19 (2012) 2918–2929.
  30. M. Zabochnicka-Świątek, A. Rygała, The effect of biomass (Chlorella vulgaris, Scenedesmus armatus) concentrations on Zn2+, Pb2+ and Cd2+ biosorption from zinc smelting wastewater, Eng. Environ. Prot., 20 (2017) 211–220.
  31. J. Yang, J. Cao, G. Xing, H. Yuan, Lipid production combined with biosorption and bioaccumulation of cadmium, copper, manganese and zinc by oleaginous microalgae Chlorella minutissima UTEX 2341, Bioresour. Technol., 175 (2015) 537–544.
  32. M.M. Fares, F.A. Abu Al-Rub, M. Kandah, H. Allaboun, Environmentally friendly copolymeric beads of Chlorella vulgaris and poly(methacrylamide) grafted aliginic acid di-block copolymers for biosorption of zinc ions, Polym. Int., 62 (2012) 1179–1186.
  33. S. Klimmek, H.-J. Stan, A. Wilke, G. Bunke, R. Buchholz, Comparative analysis of the biosorption of cadmium, lead, nickel, and zinc by algae, Environ. Sci. Technol., 35 (2001) 4283–4288.
  34. W.O. Wan Maznah, A.T. Al-Fawwaz, M. Surif, Biosorption of copper and zinc by immobilised and free algal biomass, and the effects of metal biosorption on the growth and cellular structure of Chlorella sp. and Chlamydomonas sp. isolated from rivers in Penang, Malaysia, J. Environ. Sci., 24 (2012) 1386–1393.