References
- J. Goscianska, M. Ptaszkowska-Koniarz, M. Frankowski,
M. Franus, R. Panek, W. Franus, Removal of phosphate from
water by lanthanum-modified zeolites obtained from fly ash,
J. Colloid Interface Sci., 513 (2018) 72–81.
- A.A. Mohammadi, A. Zarei, H. Alidadi, M. Afsharnia,
M. Shams, Two-dimensional zeolitic imidazolate framework-8
for efficient removal of phosphate from water, process
modeling, optimization, kinetic, and isotherm studies,
Desal. Wat. Treat., 129 (2018) 244–254.
- S. Mazloomi, M. Yousefi, H. Nourmoradi, M. Shams, Evaluation
of phosphate removal from aqueous solution using metal
organic framework; isotherm, kinetic and thermodynamic
study, J. Environ. Health Sci. Eng., (2019) doi.org/10.1007/s40201-019-00341-6.
- K. Vikrant, K.-H. Kim, Y.S. Ok, D.C.W. Tsang, Y.F. Tsang,
B.S. Giri, R.S. Singh, Engineered/designer biochar for the
removal of phosphate in water and wastewater, Sci. Total
Environ., 616 (2018) 1242–1260.
- E. Zong, G. Huang, X. Liu, W. Lei, S. Jiang, Z. Ma, J. Wang,
P. Song, A lignin-based nano-adsorbent for superfast and highly
selective removal of phosphate, J. Mater. Chem. A, 6 (2018)
9971–9983.
- A.H. Mahvi, S.J. Al-din Ebrahimi, A. Mesdaghinia, H. Gharibi,
M.H. Sowlat, Performance evaluation of a continuous bipolar
electrocoagulation/electrooxidation–electroflotation (ECEO–EF)
reactor designed for simultaneous removal of ammonia
and phosphate from wastewater effluent, J. Hazard. Mater.,
192 (2011) 1267–1274.
- A.M.E. Khalil, O. Eljamal, T.W.M. Amen, Y. Sugihara,
N. Matsunaga, Optimized nano-scale zero-valent iron
supported on treated activated carbon for enhanced nitrate
and phosphate removal from water, Chem. Eng. J., 309 (2017)
349–365.
- S. Agarwal, I. Tyagi, V.K. Gupta, M.H. Dehghani, R. Ghanbari,
Investigating the residual aluminum elimination from
conventional
and enhanced coagulation by phosphate
compounds in wastewater treatment process, J. Mol. Liq.,
221 (2016) 673–684.
- T.J. Ghehi, S. Mortezaeifar, M. Gholami, R.R. Kalantary,
A.H. Mahvi, Performance evaluation of enhanced SBR in
simultaneous removal of nitrogen and phosphorous, J. Environ.
Health Sci. Eng., 12 (2014) 134.
- D. Jiang, B. Chu, Y. Amano, M. Machida, Removal and recovery
of phosphate from water by Mg-laden biochar: Batch and
column studies, Colloids Surf., A, 558 (2018) 429–437.
- K.S. Hashim, R. Al Khaddar, N. Jasim, A. Shaw, D. Phipps,
P. Kot, M.O. Pedrola, A.W. Alattabi, M. Abdulredha, R. Alawsh,
Electrocoagulation as a green technology for phosphate removal
from river water, Sep. Purif. Technol., 210 (2019) 135–144.
- H.W. Paerl, R.S. Fulton, P.H. Moisander, J. Dyble, Harmful
freshwater algal blooms, with an emphasis on cyanobacteria,
Sci. World J., 1 (2001) 76–113.
- A. Naghizadeh, H. Shahabi, F. Ghasemi, A. Zarei, Synthesis of
walnut shell modified with titanium dioxide and zinc oxide
nanoparticles for efficient removal of humic acid from aqueous
solutions, J. Water Health, 14 (2016) 989–997.
- N. Yousefi, A. Fatehizedeh, K. Ghadiri, N. Mirzaei, S.D. Ashrafi,
A.H. Mahvi, Application of nanofilter in removal of phosphate,
fluoride and nitrite from groundwater, Desal. Wat. Treat.,
57 (2016) 11782–11788.
- G.H. Safari, M. Zarrabi, M. Hoseini, H. Kamani, J. Jaafari,
A.H. Mahvi, Trends of natural and acid-engineered pumice
onto phosphorus ions in aquatic environment: adsorbent
preparation, characterization, and kinetic and equilibrium
modeling, Desal. Wat. Treat., 54 (2015) 3031–3043.
- M. Masoudinejad, M. Ghaderpoori, A. Zarei, J. Nasehifar,
A. Malekzadeh, J. Nasiri, A. Ghaderpoury, Data on phosphorous
concentration of rivers feeding into Taham dam in Zanjan, Iran,
Data Brief, 17 (2018) 564–569.
- D. Naghipour, K. Taghavi, J. Jaafari, Y. Mahdavi, M. Ghanbari
Ghozikali, R. Ameri, A. Jamshidi, A.H. Mahvi, Statistical
modeling and optimization of the phosphorus biosorption by
modified Lemna minor from aqueous solution using response
surface methodology (RSM), Desal. Wat. Treat., 57 (2016)
19431–19442.
- M. Shams, M.H. Dehghani, R. Nabizadeh, A. Mesdaghinia,
M. Alimohammadi, A.A. Najafpoor, Adsorption of phosphorus
from aqueous solution by cubic zeolitic imidazolate
framework-8: modeling, mechanical agitation versus sonication,
J. Mol. Liq., 224 (2016) 151–157.
- M. Lamine, L. Bousselmi, A. Ghrabi, Biological treatment
of grey water using sequencing batch reactor, Desalination,
215 (2007) 127–132.
- Y.-K. Geng, Y. Wang, X.-R. Pan, G.-P. Sheng, Electricity
generation and in situ phosphate recovery from enhanced
biological phosphorus removal sludge by electrodialysis
membrane bioreactor, Bioresour. Technol., 247 (2018) 471–476.
- M. Shams, I. Nabipour, S. Dobaradaran, B. Ramavandi,
M. Qasemi,
M. Afsharnia, An environmental friendly and
cheap adsorbent (municipal solid waste compost ash) with
high efficiency in removal of phosphorus from aqueous
solution, Fresenius Environ. Bull., 22 (2013) 723–727.
- J. Roosen, S. Mullens, K. Binnemans, Chemical immobilization
of 8-hydroxyquinoline and 8-hydroxyquinaldine on chitosansilica
adsorbent materials for the selective recovery of gallium
from Bayer liquor, Hydrometallurgy, 171 (2017) 275–284.
- F. Quattrini, J. Galceran, C. David, J. Puy, G. Alberti, C. Rey-Castro, Dynamics of trace metal sorption by an ion-exchange
chelating resin described by a mixed intraparticle/film diffusion
transport model. The Cd/Chelex case, Chem. Eng. J., 317 (2017)
810–820.
- E. Rice, R. Baird, A. Eaton, S. Lenore, Standard Methods: For the
Examination Water and Wastewater, 22nd ed., American Public
Health Association, American Water Works Association, Water
Environmental Federation ISSN, 2012.
- M. Shams, R. Nabizadeh Nodehi, M. Hadi Dehghani,
M. Younesian, A. Hossein Mahvia, Efficiency of granular ferric
hydroxide (GFH) for removal of fluoride from water, Fluoride,
43 (2010) 61.
- M. Shams, M. Qasemi, M. Afsharnia, A.H. Mahvi, Sulphate
removal from aqueous solutions by granular ferric hydroxide,
Desal. Wat. Treat., 57 (2016) 23800–23807.
- Q. Yang, X. Wang, W. Luo, J. Sun, Q. Xu, F. Chen, J. Zhao, S. Wang,
F. Yao, D. Wang, X. Li, G. Zeng, Effectiveness and mechanisms
of phosphate adsorption on iron-modified biochars derived
from waste activated sludge, Bioresour. Technol., 247 (2018)
537–544.
- E. Kumar, A. Bhatnagar, J.-A. Choi, U. Kumar, B. Min, Y. Kim,
H. Song, K.J. Paeng, Y.M. Jung, R.A.I. Abou-Shanab, B.-H. Jeon,
Perchlorate removal from aqueous solutions by granular ferric
hydroxide (GFH), Chem. Eng. J., 159 (2010) 84–90.
- A. Bhatnagar, Y.H. Choi, Y. Yoon, Y. Shin, B.-H. Jeon, J.-W. Kang,
Bromate removal from water by granular ferric hydroxide
(GFH), J. Hazard. Mater., 170 (2009) 134–140.
- B. Zhao, Y. Zhang, X. Dou, H. Yuan, M. Yang, Granular ferric
hydroxide adsorbent for phosphate removal: demonstration
preparation and field study, Water Sci. Technol., 72 (2015)
2179–2186.
- E.N. Peleka, E.A. Deliyanni, Adsorptive removal of phosphates
from aqueous solutions, Desalination, 245 (2009) 357–371.
- J. Xie, Z. Wang, S. Lu, D. Wu, Z. Zhang, H. Kong, Removal and
recovery of phosphate from water by lanthanum hydroxide
materials, Chem. Eng. J., 254 (2014) 163–170.
- L. Zeng, X. Li, J. Liu, Adsorptive removal of phosphate
from aqueous solutions using iron oxide tailings, Water Res.,
38 (2004) 1318–1326.
- F. Long, J.-L. Gong, G.-M. Zeng, L. Chen, X.-Y. Wang, J.-H. Deng,
Q.-Y. Niu, H.-Y. Zhang, X.-R. Zhang, Removal of phosphate
from aqueous solution by magnetic Fe–Zr binary oxide, Chem.
Eng. J., 171 (2011) 448–455.
- G. Pan, L. Li, D. Zhao, H. Chen, Immobilization of non-point
phosphorus using stabilized magnetite nanoparticles with
enhanced transportability and reactivity in soils, Environ.
Pollut., 158 (2010) 35–40.
- S.-Y. Yoon, C.-G. Lee, J.-A. Park, J.-H. Kim, S.-B. Kim, S.-H. Lee,
J.-W. Choi, Kinetic, equilibrium and thermodynamic studies for
phosphate adsorption to magnetic iron oxide nanoparticles,
Chem. Eng. J., 236 (2014) 341–347.
- J. Liu, L. Wan, L. Zhang, Q. Zhou, Effect of pH, ionic strength,
and temperature on the phosphate adsorption onto lanthanumdoped
activated carbon fiber, J. Colloid Interface Sci., 364 (2011)
490–496.
- W. Huang, S. Wang, Z. Zhu, L. Li, X. Yao, V. Rudolph,
F. Haghseresht, Phosphate removal from wastewater using red
mud, J. Hazard. Mater., 158 (2008) 35–42.
- X. Yang, D. Wang, Z. Sun, H. Tang, Adsorption of phosphate at
the aluminum (hydr)oxides–water interface: role of the surface
acid–base properties, Colloids Surf., A, 297 (2007) 84–90.