References
- N. Shamsedini, M. Dehghani, S. Nasseri, M.A. Baghapour,
Photocatalytic degradation of atrazine herbicide with Illuminated
Fe3+-TiO2 nanoparticles, J. Environ. Health Sci. Eng., 15 (2017) 7.
- Z. Derakhshan, A.H. Mahvi, M.H. Ehrampoush, S.M. Mazloomi,
M. Faramarzian, M. Dehghani, S. Yousefinejad, M.T. Ghaneian,
S.M. Abtahi, Studies on influence of process parameters on
simultaneous biodegradation of atrazine and nutrients in
aquatic environments by a membrane photobioreactor, Environ.
Res., 161 (2018) 599–608.
- M. Dehghani, S. Nasseri, S. Amin, K. Naddafee, M. Taghavi,
M. Yunesian, N. Maleky, Isolation and identification of atrazinedegrading
bacteria from corn field soil in Fars province of Iran,
Pakistan. J. Biol. Sci., 10 (2007) 84–89.
- D.S. Luciana bo, G. Abate, J.C. Masini, Determination of
atrazine using square wave voltammetry with the hanging
mercury drop electrode (HMDE), Talanta, 62 (2004) 667–674.
- M. Dehghani, S. Nasseri, S.A. Amin, Z. Zamanian, Assessment
of atrazine distribution in Shiraz soils, south of Iran, Pakistan. J.
Biol. Sci., 13 (2010) 66–72.
- M.B. Murphy, M. Hecker, K.K. Coady, A.R. Tompsett, P.D. Jones,
L.H. Du Preez, G.J. Everson, K.R. Solomon, J.A. Carr, E.E. Smith,
Atrazine concentrations, gonadal gross morphology and
histology in ranid frogs collected in Michigan agricultural
areas, Aquat. Toxicol., 76 (2006) 230–245.
- R.T. Mandelbaum, D.L. Allan, L.P. Wackett, Isolation and
characterization of a Pseudomonas sp. that mineralizes the
s-triazine herbicide atrazine, Appl. Environ. Microbiol., 61
(1995) 1451–1457.
- C.Y. Chan, S. Tao, R. Dawson, P.K. Wong, Treatment of atrazine
by integrating photocatalytic and biological processes, Environ.
Pollut., 131 (2004) 45–54.
- L. Sene, A. Converti, G.A.R. Secchi, R.C.G. Simão, New aspects
on atrazine biodegradation, Braz. Arch. Biol. Technol., 53 (2010)
487–496.
- Z. Naji, N. Mahdvishahri, F. Ghassemzadeh, D. Shahsavani,
M. Behnamrassouli, Effects of herbicide atrazin on oogenesis in
zebrafish (Danio rerio), Cell. Tissue. Res., 2 (2011) 147–155.
- M. Vidali, Bioremediation. An overview, Pure Appl. Chem., 73
(2001) 1163–1172.
- P.C. Kearney, T. Roberts, Pesticide Remediation in Soils and
Water, John Wiley & Sons Ltd, Chichester, UK, 1998.
- M. Dehghani, S. Nasseri, M. Karamimanesh, Removal of
2,4-dichlorophenolyxacetic acid (2,4-D) herbicide in the
aqueous phase using modified granular activated carbon, J.
Environ. Health. Sci. Eng., 12 (2014) 1–10.
- E. Ranjbar, G.H. Haghniya, A. Lakzian, A. Fotovat, Effect of
organic materials and inorganic nitrogen on biological and
chemical degradation of atrazine herbicide in soil, Sci. Technol.
Agric. Nat. Res., 13 (2009) 149–161.
- M. Dehghani, S. Nasseri, Z. Zamanian, Biodegradation of
alachlor in liquid and soil cultures under variable carbon and
nitrogen sources by bacterial consortium isolated from corn
field soil, J. Environ. Health. Sci. Eng., 10 (2013) 1–9.
- A.M.M. Reyad, T.E.E. Radwan, W.M. Ibrahim, A.M.M. Essa,
Biodegradation of atrazine by Ochrobactrum oryzae isolated
from the agricultural wastewater, Wulfenia, 21 (2014) 286–310.
- N.U. Kolić, D. Hršak, A.B. Kolar, I. Petrić, S. Stipičevic, G. Soulas,
F. Martin-Laurent, Combined metabolic activity within an
atrazine-mineralizing community enriched from agrochemical
factory soil, Int. Biodeterior. Biodegrad., 60 (2007) 299–307.
- L.C. Strong, H. McTavish, M.J. Sadowsky, L.P. Wackett, Field‐scale
remediation of atrazine‐contaminated soil using recombinant
Escherichia coli expressing atrazine chlorohydrolase, Environ.
Microbiol., 2 (2000) 91–98.
- K.H. Chung, K.S. Ro, D. Roy, Fate and enhancement of atrazine
biotransformation in anaerobic wetland sediment, Water Res.,
30 (1996) 341–346.
- E.B. Ostrofsky, J.B. Robinson, S.J. Traina, O.H. Tuovinen, Effect
of cyanuric acid amendment on atrazine mineralization in
surface soils and detection of the s-triazine ring-cleavage gene
trzD, Soil Biol. Biochem., 33 (2001) 1539–1545.
- H.P.L. Willems, K.J. Lewis, J.S. Dyson, F.J. Lewis, Mineralization
of 2,4-D and atrazine in the unsaturated zone of a sandy loam
soil, Soil Biol. Biochem., 28 (1996) 989–996.
- G.B. Clausen, L. Larsen, K. Johnsen, J.R. De Lipthay, J. Aamand,
Quantification of the atrazine-degrading Pseudomonas sp.
strain ADP in aquifer sediment by quantitative competitive
polymerase chain reaction, FEMS Microbiol. Ecol., 41 (2002)
221–229.
- V. García-González, F. Govantes, L.J. Shaw, R.G. Burns,
E. Santero, Nitrogen control of atrazine utilization in Pseudomonas sp. strain ADP, Appl. Environ. Microbiol., 69 (2003) 6987–6993.
- M. Forouzangohar, G.H. Haghnia, A.R. Kocheki, Y. Tabatabaie
Yazdi, The effect of organic matter and soil texture on
degradation of atrazine andmetamitron, Sci. Technol. Agric.
Nat. Res., 9 (2005) 131–141.
- F. Bichat, R.L. Mulvaney, G.K. Sims, Microbial utilization of
heterocyclic nitrogen from atrazine, Soil. Sci. Soc. Am. J., 63
(1999) 100–110.
- Q. Bach, S. Kim, S. Choi, Y. Oh, Enhancing the intrinsic bioremediation
of PAH-contaminated anoxic estuarine sediments
with biostimulating agents, J Microbiol., 43 (2005) 319.
- A. Khanamani, E. Dodangeh, F. Soleymani, H. Karimzadeh,
S. Soltani, Changes trend of some chemical characteristics of
groundwater in Segzi plain from 1995 To 2008, Environ. Sci. J.
Integr. Environ. Res., 18 (2014) 59–56.
- M. Delbari, P. Afrasiab, S. Miremadi, Spatio-temporal variability
analysis of groundwater salinity and depth (Case study:
Mazandaran province), J. Irrig. Drain. Eng., 3 (2010) 359–374.
- C.P. Kumar, Climate change and its impact on groundwater
resources, Int. J. Eng. Sci., 1 (2012) 43–60.
- M. Dehghani, M. Ansari Shiri, M.R. Samaei, Isolation of atrazine
degrading bacteria in semi-salinity medium, J. Health. Sci.
Surveill. Syst., 4 (2016) 121–128.
- M. Dehghani, S. Nasseri, S. Amin, K. Naddafi, M. Yunesian,
M. Taghavi, N. Maleki, Atrazine adsorption desorption
behavior in Darehasaluie Kavar corn field soil in Fars Province
of Iran, Iran. J. Environ. Health. Sci. Eng., 2 (2005) 221–228.
- M. Dehghani, S. Nasseri, H. Hashemi, Study of the
bioremediation of atrazine under variable carbon and nitrogen
sources by mixed bacterial consortium isolated from corn field
soil in Fars Province of Iran, J. Environ. Public Health., 2013
(2013) 1–7.
- T. Lin, Y. Wen, L. Jiang, J. Li, S. Yang, Q. Zhou, Study of atrazine
degradation in subsurface flow constructed wetland under
different salinity, Chemosphere, 72 (2008) 122–128.
- Z. Derakhshan, A.H. Mahvi, M.T. Ghaneian, S.M. Mazloomi,
M. Faramarzian, M. Dehghani, H. Fallahzadeh, S. Yousefinejad,
E. Berizi, M.H. Ehrampoush, Simultaneous removal of atrazine
and organic matter from wastewater using anaerobic moving
bed biofilm reactor: a performance analysis, J. Environ.
Manage., 209 (2018) 515–524.
- Z. Derakhshan, M.H. Ehrampoush, A.H. Mahvi, M. Dehghani,
M. Faramarzian, M.T. Ghaneian, M. Mokhtari, A.A. Ebrahimi,
H. Fallahzadeh, Evaluation of a moving bed biofilm reactor
for simultaneous atrazine, carbon and nutrients removal from
aquatic environments: Modeling and optimization, J. Ind. Eng.
Chem., 6 (2018) 219–230.
- L.E. Erickson, K.H. Lee, D.D. Sumner, Degradation of atrazine
and related striazines, Crit. Rev. Environ. Sci. Technol., 19 (1989)
1–14.
- J.A. Entry, Influence of nitrogen on atrazine and 2,4 dichlorophenoxyacetic
acid mineralization in blackwater and redwater
forested wetland soils, Biol. Fertil. Soils, 29 (1999) 348–353.
- J.A. Entry, K.G. Mattson, W.H. Emmingham, The influence
of nitrogen on atrazine and 2,4-dichlorophenoxyacetic acid
mineralization in grassland soils, Biol. Fertil. Soils, 16 (1993)
179–182.
- Z. Derakhshan, M.H. Ehrampoush, A.H. Mahvi, M.T. Ghaneian,
S.M. Mazloomi, M. Faramarzian, M. Dehghani, H. Fallahzadeh,
S. Yousefinejad, E. Berizi, Biodegradation of atrazine from
wastewater using moving bed biofilm reactor under nitratereducing
conditions: A kinetic study, J. Environ. Manage., 212
(2018) 506–513.
- R. Abdelhafid, S. Houot, E. Barriuso, How increasing
availabilities of carbon and nitrogen affect atrazine behaviour
in soils, Biol. Fertil. Soils, 30 (2000) 333–340.
- P.K. Donnelly, J.A. Entry, D.L. Crawford, Degradation of
atrazine and 2,4-dichlorophenoxyacetic acid by mycorrhizal
fungi at three nitrogen concentrations in vitro, Appl. Environ.
Microbiol., 59 (1993) 2642–2647.
- E.W. Liebeg, T.J. Cutright, The investigation of enhanced
bioremediation through the addition of macro and micro
nutrients in a PAH contaminated soil, Int. Biodeterior. Biodegrad.,
44 (1999) 55–64.
- A.E. Ghaly, A. Yusran, D. Dave, Effects of biostimulation and
bioaugmentation on the degradation of pyrene in soil, J. Biorem.
Biodegrad., 2013 (2013) 1–13.
- A.F. Ebrahimpour, J. Fouladi, A. Ferdousi, Study of Effects of
environmental factors on biodegradation of crude oil, by pars
Q2, an extreme halophilic archea bacterium and gravimetric
determination of used crude oil by this bacterium under
optimal conditions, Environ. Sci., 10 (2006) 59–70.
- P.A. Vieira, S. Faria, R.B. Vieira, F.P. De Franca, V.L. Cardoso,
Statistical analysis and optimization of nitrogen, phosphorus,
and inoculum concentrations for the biodegradation of
petroleum hydrocarbons by response surface methodology,
World J. Microbiol. Biotechnol., 25 (2009) 427–438.
- E. El-Bestawy, J. Sabir, A.H. Mansy, N. Zabermawi, Isolation,
identification and acclimatization of atrazine-resistant soil
bacteria, Ann. Agric. Sci., 58 (2013) 119–130.