References

  1. M.Pirsaheb, M. Mohamadi, A.M. Mansouri, A.A. Zinatizadeh, S. Sumathi, K. Sharafi, Process modeling and optimization of biological removal of carbon, nitrogen and phosphorus from hospital wastewater in a continuous feeding and intermittent discharge (CFID) bioreactor, Korean J. Chem. Eng., 32 (2015) 1340–1353.
  2. M. Pirsaheb, Z. Rezai, A.M. Mansouri, A. Rastegar, A. Alahabadi, A.R. Sani, K. Sharafi, Preparation of the activated carbon from India shrub wood and their application for methylene blue removal: modeling and optimization, Desal. Water Treat., 57 (2016) 5888–5902.
  3. M. Moradi, M .Soltanian, M. Pirsaheb, K. Sharafi, S. Soltanian, A. Mozafari. The efficiency study of pumice powder to lead removal from the aquatic environment: isotherms and kinetics of the reaction, J. Mazandaran Univ. Med. Sci., 23 (2014) 65–75.
  4. K. Sharafi, A.M. Mansouri, A.A. Zinatizadeh, M. Pirsaheb, Adsorptive removal of methylene blue from aqueous solutions by pumice powder: process modelling and kinetic evaluation, Environ. Eng. Manage. J., 14 (2015) 1067–1087.
  5. K. Sharafi, M. Pirsaheb, T. Khosravi, A. Dargahi, M. Moradi, M.T. Savadpour, Fluctuation of organic substances, solids, protozoan cysts, and parasite egg at different units of a wastewater integrated stabilization pond (full scale treatment plant): a case study, Iran, Desal. Water Treat., 57 (2016) 4913–4919.
  6. T. Meizhen, C. Junfeng, S. Yannan, T. Yanru, L. Yuling, The absorpstion and scavenging ability of a bacillus in heavy metal contaminated soils (Pb, Zn and Cr), Afr. J. Environ. Sci. Technol., 8 (2014) 476–481.
  7. R. Dixit, D. Malaviya, K. Pandiyan, U.B. Singh, A. Sahu, R. Shukla, B.P. Singh, J.P. Rai, P.K. Sharma, H. Lade, D. Paul, Bioremediation of heavy metals from soil and aquatic environment: an overview of principles and criteria of fundamental processes, Sustainability, 7 (2015) 2189–2212.
  8. A. Malik, Metal bioremediation through growing cells, Environ. Int., 30 (2004) 261–278.
  9. L. Macomber, C. Rensing, J.A. Imlay, Intracellular copper does not catalyze the formation of oxidative DNA damage in Escherichia coli, J. Bacteriol., 189 (2007) 1616–1626.
  10. C.E. Santo, P.V. Morais, G. Grass, Isolation and characterization of bacteria resistant to metallic copper surfaces, Appl. Environ. Microbiol., 76 (2010) 1341–1348.
  11. J. Sochor, O. Zitka, D. Hynek, E. Jilkova, L. Krejcova, L. Trnkova, V. Adam, J. Hubalek, J. Kynicky, R. Vrba, R. Kizek, Bio-sensing of cadmium (II) ions using Staphylococcus aureus, Sensors, 8 (2011) 10638–10663.
  12. N. Prakash, P.N. Sudha, N.G. Renganathan, Copper and cadmium removal from synthetic industrial wastewater using chitosan and nylon 6, Environ. Sci. Pollut. Res., 19 (2012) 2930–2941.
  13. N. Prakash, S. Latha, P.N. Sudha, N.G. Renganathan, Influence of clay on the adsorption of heavy metals like copper and cadmium on chitosan, Environ. Sci. Pollut. Res., 20 (2013) 925–938.
  14. N. Prakash, S. Latha, P.N. Sudha, N.G. Renganathan, Kinetics of removal of chromium from wastewater using chitosan-based binary polymer blends, Synth. React. Inorg. Met.-Org. Nano- Met. Chem., 46 (2016) 1310–1317.
  15. N. Prakash, S.A. Vendan, Biodegradable polymer based ternary blends for removal of trace metals from simulated industrial wastewater, Int. J. Biol. Macromol., 83 (2016) 198–208.
  16. S. Rengaraj, S.H. Moon, R. Sivabalan, B. Arabindoo, V. Murugesan, Removal of phenol from aqueous solution and resin manufacturing industry wastewater using an agricultural waste: rubber seed coat, J. Hazard. Mater., 89 (2002) 185–196.
  17. Y. Zhang, W. Liu, M. Xu, F. Zheng, M. Zhao, Study of the mechanisms of Cu2+ biosorption by ethanol/caustic-pretreated baker’s yeast biomass, J. Hazard. Mater., 178 (2010) 1085–1093.
  18. R.A. Abou-Shanab, P. Van Berkum, J.S. Angle, Heavy metal resistance and genotypic analysis of metal resistance genes in gram-positive and gram-negative bacteria present in Ni-rich serpentine soil and in the rhizosphere of Alyssum murale, Chemosphere, 68 (2007) 360–367.
  19. F. Vegliò, A. Esposito, A.P. Reverberi, Standardisation of heavy metal biosorption tests: equilibrium and modelling study, Process Biochem, 38 (2003) 953–961.
  20. A. Aleem, J. Isar, A. Malik, Impact of long-term application of industrial wastewater on the emergence of resistance traits in Azotobacterchroococcum isolated from rhizospheric soil, Bioresour. Technol., 86 (2003) 7–13.
  21. A.R. Shakoori, B. Muneer, Copper-resistant bacteria from industrial effluents and their role in remediation of heavy metals in wastwater, Folia Microbiol., 47 (2002) 43–50.
  22. M.I. Ansari, A. Malik, Biosorption of nickel and cadmium by metal resistant bacterial isolates from agricultural soil irrigated with industrial wastewater, Bioresour. Technol., 98 (2007) 3149–3153.
  23. M.H. Salmani, M. Davoodi, M.H. Ehrampoush, M.T. Ghaneian, M.H. Fallahzadah, Removal of cadmium (II) from simulated wastewater by ion flotation technique, Iranian J. Environ. Health Sci. Eng., 10 (2013) 16.
  24. Z. Khan, M.A. Nisar, S.Z. Hussain, M.N. Arshad, Cadmium resistance mechanism in Escherichia coli P4 and its potential use to bioremediate environmental cadmium, Appl. Microbiol. Biotechnol., 99 (2015) 10745–10757.
  25. A. Balows, Bergey’s Manual of Determinative Bacteriology. 8th ed. Am. J. Public Health., 65 (1975) 315–325.
  26. S.U. Kim, Y.H. Cheong, D.C. Seo, J.S. Hur, J.S. Heo, J.S. Cho. Characterisation of heavy metal tolerance and biosorption capacity of bacterium strain CPB4 (Bacillus spp.), Water Sci. Technol., 55 (2007) 105–111.
  27. D.H. Nies, Efflux-mediated heavy metal resistance in prokaryotes, FEMS Microbiol. Rev., 27 (2003) 313–339.
  28. R.H. Vieira, B. Volesky, Biosorption: a solution to pollution?, Int. Microbiol., 3 ( 2000) 17–24.
  29. Z. Chen, W. Ma, M. Han, Biosorption of nickel and copper onto treated alga (Undariapinnatifida): Application of isotherm and kinetic models, J. Hazard. Mater., 155 (2008) 327–333.
  30. I. Kamika, M.N.B Momba, Assessing the resistance and bioremediation ability of selected bacterial and protozoan species to heavy metals in metal-rich industrial wastewater, BMC Microbiol., 13 (2013) 28–28.
  31. A.O. Olaniran, A. Balgobind, B. Pillay, Bioavailability of heavy metals in soil: impact on microbial biodegradation of organic compounds and possible improvement strategies, Int. J. Mol. Sci., 14 (2013) 10197–10228.
  32. R., Andreazza, S. Pieniz, B.C. Okeke, F.A.O Camargo, Evaluation of copper resistant bacteria from vineyard soils and mining waste for copper biosorption, Braz. J. Microbiol., 42 (2011) 66–74.
  33. S. Sinha, S.K. Mukherjee, Pseudomonas aeruginosa KUCD1, a possible candidate for cadmium bioremediation, Braz. J. Microbiol., 40 (2009) 655–662.