References
- J.-Q. Jiang, N.J.D. Graham, Pre-polymerised inorganic
coagulants and phosphorus removal by coagulation –
a review,
Water SA, 24 (1998) 237–244.
- SEPA, The State Standards of Integrated Wastewater Discharge,
GB 8978–1996, 1996.
- G.L. Li, S. Gao, G.S. Zhang, X.W. Zhang, Enhanced adsorption
of phosphate from aqueous solution by nanostructured iron(III)–copper(II) binary oxides, Chem. Eng. J., 235 (2014) 124–131.
- L.J. Sherwood, R.G. Qualls, Stability of phosphorus within
a wetland soil following ferric chloride treatment to control
eutrophication, Environ. Sci. Technol., 35 (2001) 4126–4131.
- T. Clark, T. Stephenson, P.A. Pearce, Phosphorus removal by
chemical precipitation in a biological aerated filter, Water Res.,
31 (1997) 2557–2563.
- A. Oehmen, P.C. Lemos, G. Carvalho, Z.G. Yuan, J. Keller,
L.L. Blackall, M.A.M. Reis, Advances in enhanced biological
phosphorus removal: From micro to macro scale, Water Res.,
41 (2007) 2271–2300.
- H.N. Bhatti, Y. Safa, S.M. Yakout, O.H. Shair, M. Iqbal,
A. Nazir, Efficient removal of dyes using carboxymethyl
cellulose/alginate/polyvinyl alcohol/rice husk composite:
adsorption/desorption, kinetics and recycling studies, Int.
J. Biol. Macromol., 150 (2020) 861–870.
- S. Noreen, H.N. Bhatti, M. Iqbal, F. Hussain, F.M. Sarim,
Chitosan, starch, polyaniline and polypyrrole biocomposite
with sugarcane bagasse for the efficient removal of Acid Black
dye, Int. J. Biol. Macromol.,
147 (2020) 439–452.
- M.A. Tahir, H.N. Bhatti, I. Hussain, I.A. Bhatt, M. Asghar, Sol–
gel synthesis of mesoporous silica-iron composite: kinetics,
equilibrium and thermodynamics studies for the adsorption
of turquoise-blue X-GB dye, Z. Phys. Chem., 234 (2020) 233–253.
- U. Kamran, H.N. Bhatti, M. Iqbal, S. Jamil, M. Zahid, Biogenic
synthesis, characterization and investigation of photocatalytic
and antimicrobial activity of manganese nanoparticles
synthesized from Cinnamomum verum bark extract, J. Mol.
Struct., 1179 (2019) 532–539.
- Z.H. Shao, R. Stanforth, Competitive adsorption of phosphate
and arsenate on goethite, Environ. Sci. Technol., 35 (2001)
4753–4757.
- S. Tanada, M. Kabayama, N. Kawasaki, T. Sakiyama,
T. Nakamura, M. Araki, T. Tamura, Removal of phosphate by
aluminum oxide hydroxide, J. Colloid Interface Sci., 257 (2003)
135–140.
- K. Okada, Y. Ono, Y. Kameshima, A. Nakajima, K.J.D. Mackenzie,
Simultaneous uptake of ammonium and phosphate ions
by composites of γ-alumina/potassium aluminosilicate gel,
Mater. Res. Bull., 38 (2003) 749–756.
- D.C. Southam, T.W. Lewis, A.J. Macfaelane, J.H. Johnston,
Amorphous calcium silicate as a chemisorbent for phosphate,
Curr. Appl. Phys., 4 (2004) 355–358.
- A.K. Golder, A.N. Samanta, S. Ray, Removal of phosphate from
aqueous solutions using calcined metal hydroxides sludge
waste generated from electrocoagulation, Sep. Purif. Technol.,
52 (2006) 102–109.
- J. Chen, H.N. Kong, D.Y. Wu, Z.B. Hu, Z.S. Wang, Y.H. Wang,
Removal of phosphate from aqueous solution by zeolite
synthesized from fly ash, J. Colloid Interface Sci., 300 (2006)
491–497.
- B.K. Biswas, K. Inoue, K.N. Ghimire, S. Ohta, H. Harada,
K. Ohto, H. Kawakita, The adsorption of phosphate from
an aquatic environment using metal-loaded orange waste,
J. Colloid Interface Sci., 312 (2007) 214–223.
- H.N. Bhatti, J. Hayat, M. Iqbal, S. Noreena, S. Nawaz,
Biocomposite application for the phosphate ions removal in
aqueous medium, J. Mater. Res. Technol., 7 (2018) 300–307.
- K.H. Goh, T.T. Lim, Z.L. Dong, Application of layered double
hydroxides for removal of oxyanions: a review, Water Res.,
42 (2008) 1343–1368.
- D.G. Evans, R.C.T. Slade, Structural Aspects of Layered Double
Hydroxides, X. Duan, D.G. Evans, Eds., Layered Double
Hydroxides, Springer Berlin Heidelberg, Berlin, Heidelberg,
2006, pp. 1–87.
- K. Abdellaoui, I. Pavlovic, M. Bouhent, A. Benhamou,
C. Barriga, A comparative study of the amaranth azo dye
adsorption/desorption from aqueous solutions by layered
double hydroxides, Appl. Clay Sci., 143 (2017) 142–150.
- T.A. Khan, S.A. Chaudhry, I. Ali, Thermodynamic and kinetic
studies of As(V) removal from water by zirconium oxidecoated
marine sand, Environ. Sci. Pollut. Res., 20 (2013)
5425–5440.
- F.R. Costa, A. Leuteritz, U. Wagenknecht, D. Jehnichen,
L. Häußler, G. Heinrich, Intercalation of Mg-Al layered
double hydroxide by anionic surfactants: preparation and
characterization, Appl. Clay Sci., 38 (2008) 153–164.
- R.M.M. dos Santos, R.G.L. Gonçalves, V.R.L. Constantino,
C.V. Santilli, P.D. Borges, J. Tronto, F.G. Pinto, Adsorption of
Acid Yellow 42 dye on calcined layered double hydroxide:
effect of time, concentration, pH and temperature, Appl. Clay
Sci., 140 (2017) 132–139.
- State Environmental Protection Administration of China,
Monitoring and Analysis Methods of Water and Wastewater,
4th ed., China Environmental Science Press, Beijing, 2002,
p. 246.
- T. Bujdosó, Á. Patzkó, Z. Galbács, I. Dékány, Structural
characterization of arsenate ion exchanged
MgAl-layered
double hydroxide, Appl. Clay Sci., 44 (2009) 75–82.
- F.R. Costa, A. Leuteritz, U. Wagenknecht, D. Jehnichen,
L. Häußler, G. Heinrich, Intercalation of Mg–Al layered
double hydroxide by anionic surfactants: preparation and
characterization, Appl. Clay Sci., 38 (2008) 153–164.
- Z.M. Bai, Z.Y. Wang, T.G. Zhang, F. Fu, N. Yang, Synthesis
and characterization of Co–Al–CO3 layered
double-metal
hydroxides and assessment of their friction performances,
Appl. Clay Sci., 59–60 (2012) 36–41.
- C. Zhang, S.G. Yang, H.Z. Chen, H. He, C. Sun, Adsorption
behavior and mechanism of reactive brilliant red X-3B in
aqueous solution over three kinds of hydrotalcite-like LDHs,
Appl. Surf. Sci., 301 (2014) 329–337.
- F.R. Costa, A. Leuteritz, U. Wagenknecht, D. Jehnichen,
L. Häußler, G. Heinrich, Intercalation of Mg-Al layered
double hydroxide by anionic surfactants: preparation and
characterization, Appl. Clay Sci., 38 (2008) 153–164.
- Y.S. Ho, G. McKay, Pseudo-second-order model for sorption
process, Process Biochem., 34 (1999) 51–65.
- M. Kithome, J.W. Paul, L.M. Lavkulich, A.A. Bomke, Kinetics
of ammonium adsorption and desorption by the natural zeolite
clinoptilolite, Soil Sci. Soc. Am. J., 62 (1988) 622–629.
- O. Duman, S. Tunc, B.K. Bozoglan, T.G. Polat, Removal
of triphenylmethane and reactive azo dyes from aqueous
solution by magnetic carbon nanotube-k-carrageenan-Fe3O4
nanocomposite, J. Alloys Compd.,
687 (2016) 370–383.
- O. Duman, T.G. Polat, C.O. Diker, S. Tunc, Agar/kappa-carrageenan
composite hydrogel adsorbent for the removal of
Methylene Blue from water, Int. J. Biol. Macromol., 160 (2020)
823–835.
- E. Ayranci, O. Duman, Removal of anionic surfactants from
aqueous solutions by adsorption onto high area activated
carbon cloth studied by in situ UV spectroscopy, J. Hazard.
Mater., 148 (2007) 75–82.
- S. Lagergren, Zur theorie der sogenannten adsorption gelöster
stoffe, Kungliga Svenska Vetenskapsakademiens, Handlinga,
24 (1898) 1–39.
- H.M.F. Freundlich, Uber die adsorption in lasungen, J. Phys.
Chem., 57 (1906) 385–470.
- X.C. Fu, W.X. Shen, T.Y. Yao, Physical Chemistry, 4th ed.,
Higher Education Press, Beijing, China, 1994,
pp. 303–321.
- O. Redlich, D.L. Peterson, A useful adsorption isotherm, J. Phys.
Chem., 63 (1959) 1024–1026.
- R.P. Han, J.J. Zhang, P. Han, Y.F. Wang, Z.H. Zhao, M.S. Tang,
Study of equilibrium, kinetic and thermodynamic parameters
about methylene blue adsorption onto natural zeolite, Chem.
Eng. J., 145 (2009) 496–504.
- O. Duman, S. Tunc, T.G. Polat, Adsorptive removal of
triarylmethane dye (Basic Red 9) from aqueous solution by
sepiolite as effective and low-cost adsorbent, Microporous
Mesoporous Mater., 210 (2015) 176–184.
- O. Duman, S. Tunc, T.G. Polat, Determination of adsorptive
properties of expanded vermiculite for the removal of C.I.
Basic Red 9 from aqueous solution: kinetic, isotherm and
thermodynamic studies, Appl. Clay Sci., 109–110 (2015) 22–32.