References
- M. Watanabe, New development in the study of condensed
phosphates, Phos. Res. Bull., 20 (2006) 11–17.
- Y. Seida, Y. Nakano, Removal of phosphate by layered double
hydroxides containing iron, Water Res., 36 (2002) 1306–1312
- G. Xiao-hong, C. Guang-hao, S. Chii, Adsorption behavior of
condensed phosphate on aluminum hydroxide, J. Environ. Sci.,
19 (2007) 312–318
- S. Yeoman, T. Stephenson, J.N. Lester, R. Perry, The removal of
phosphorus during wastewater treatment: A review, Environ.
Pollut., 49 (1988) 183–233.
- H.S. Altundoğan, F. Tümen, Removal of phosphates from
aqueous solutions by using bauxite. I: Effect of pH on the
adsorption of various phosphates, J. Chem.Technol. Biot., 77
(2002) 77–85.
- J. Zhou, Z.P. Xu, S. Qiao, Q. Liu, Y. Xu, G. Qian, Enhanced
removal of triphosphate by MgCaFe-Cl-LDH: Synergism of
precipitation with intercalation and surface uptake, J. Hazard.
Mater., 189 (2011) 586–594.
- A.I. Omoike, G.W. Vanloon, Removal of phosphorus and
organic matter removal by alum during wastewater treatment,
Water Res., 33 (1999) 3617–3627.
- K. Urano, H. Tachikawa, Process development for removal and
recovery of phosphorus from wastewater by a new adsorbent.
2. Adsorption rates and breakthrough curves, Ind. Eng. Chem.
Res., 30 (1991) 1897–1899.
- K. Xing, H. Wang, L. Guo, W. Song, Z. Zhao, Adsorption of
tripolyphosphate from aqueous solution by Mg–Al–CO3-layered
double hydroxides, Colloids Surf. A Physicochem. Eng.
Asp., 328 (2008) 15–20.
- B. Koumanova, M. Drame, M. Popangelova, Phosphate removal
from aqueous solutions using red mud wasted in bauxite Bayer’s
process, Resour. Conserv. Recy., 19 (1997) 11–20.
- Y. Wu, Y. Yu, J.Z. Zhou, J. Liu, Y. Chi, Z.P. Xu, G. Qian, Effective
removal of pyrophosphate by Ca–Fe–LDH and its mechanism,
Chem. Eng. J., 179 (2012) 72–79.
- J. Fettig, P. Seydel, C. Steinert, In: H.H. Hahn, E. Hoffmann, H.
Ødegaard (Eds.), Chemical Water and Wastewater Treatment
VI, Springer, Berlin Heidelberg 2000, pp. 279–288.
- C.p. Leo, M.Z. Yahya, S.N.M. Kamal, A.L Ahmad, A.W.
Mohammad, Potential of nanofiltration and low pressure
reverse osmosis in the removal of phosphorus for aquaculture,
Water Sci. Technol., 67 (2013) 831–837.
- A.E. HarveyJr., J.M. Komarmy, G.M. Wyatt, Colorimetric
Determination of magnesium with Eriochrome Black T, Anal.
Chem., 25 (1953) 498–500.
- X. Liu, B. Wang, Z. Su, Enhanced adsorptive removal of methylene
blue from aqueous solution by soft rush (Juncus effusus),
Desal. Water Treat., 57 (2016) 1671–1683.
- W. Rieman, H.F. Walton, Ion exchange in analytical chemistry,
Pergamon Press,Oxford, 1970.
- C.E. Housecroft, A.G. Sharpe, Inorganic Chemistry,Pearson,
Harlow, 2012.
- T. Möller, P. Sylvester, Effect of silica and pH on arsenic uptake
by resin/iron oxide hybrid media, Water Res., 42 (2008) 1760–
1766.
- X. You, D. Guaya, A. Farran, C. Valderrama, J.L. Cortina, Phosphate
removal from aqueous solution using a hybrid impregnated
polymeric sorbent containing hydrated ferric oxide
(HFO), J. Chem. Technol. Biotechnol., 91 (2016) 693–704.
- L. Cumbaland, A.K . Sengupta, Arsenic removal using polymer-
supported hydrated iron(III) oxide nanoparticles: Role
of Donnan membrane effect, Environ. Sci. Technol., 39 (2005)
6508–6515.
- Y.S Ho, Review of second-order models for adsorption systems,
J. Hazard. Mater., 136 (2006) 681–689.
- Y.S. Ho, G. McKay, Pseudo-second order model for sorption
processes, Process Biochem., 34 (1999) 451–465.
- Y.S. Ho, G. McKay, Sorption of dye from aqueous solution by
peat, Chem. Eng. J., 70 (1998) 115–124.
- Ö. Arar, Removal of lead (II) from water by di (2-ethylhexyl)
phosphate containing ion exchange resin, Desal. Water
Treat., 52 (2014) 3197–3205.
- J.L. Cortina, R.A. Yellin , N. Miralles, A.M. Sastre, A. Warshawsky,
Kinetics studies on heavy metal ions extraction by
Amberlite XAD2 impregnated resins containing a bifunctional
organophosphorous extractant, React. Funct. Polym., 38
(1998) 269–278.
- B. Alyüz, S. Veli, Kinetics and equilibrium studies for the
removal of nickel and zinc from aqueous solutions by ion
exchange resins, J. Hazard. Mater., 167 (2009) 482–488.
- H.N. Bhatti, Y. Safa, Removal of anionic dyes by rice milling
waste from synthetic effluents: equilibrium and thermodynamic
studies, Desal. Water Treat., 48 (2012) 267–277.
- F. Krika, O.E.F. Benlahbib, Removal of methyl orange from
aqueous solution via adsorption on cork as a natural and lowcoast
adsorbent: equilibrium, kinetic and thermodynamic
study of removal process, Desal. Water Treat., 53 (2015) 3711–
3723.
- Ö. Arar, Shallow shell resin versus traditional resin: A case
study for Cu(II) removal, Anadolu Univ. J. Sci. Technology – A
– Appl. Sci. and Eng., 17 (2016) 530–542.
- T.L. Brown, H.E. LeMay, B.E. Bursten, C.J. Murphy, P. M. Woodward,
M.W. Stoltzfus, Chemistry: The Central Science, Pearson,
Upper Saddle River, 2015.