References
- 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.
- 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.
- 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.
- 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.
- 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.
- 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.
- 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.
- A. Malik, Metal bioremediation through growing cells, Environ.
Int., 30 (2004) 261–278.
- 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.
- 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.
- 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.
- 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.
- 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.
- 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.
- 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.
- 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.
- 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.
- 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.
- F. Vegliò, A. Esposito, A.P. Reverberi, Standardisation of heavy
metal biosorption tests: equilibrium and modelling study, Process
Biochem, 38 (2003) 953–961.
- 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.
- 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.
- 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.
- 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.
- 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.
- A. Balows, Bergey’s Manual of Determinative Bacteriology. 8th
ed. Am. J. Public Health., 65 (1975) 315–325.
- 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.
- D.H. Nies, Efflux-mediated heavy metal resistance in prokaryotes,
FEMS Microbiol. Rev., 27 (2003) 313–339.
- R.H. Vieira, B. Volesky, Biosorption: a solution to pollution?,
Int. Microbiol., 3 ( 2000) 17–24.
- 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.
- 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.
- 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.
- 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.
- S. Sinha, S.K. Mukherjee, Pseudomonas aeruginosa KUCD1,
a possible candidate for cadmium bioremediation, Braz. J.
Microbiol., 40 (2009) 655–662.