References
- UNWWAP, The United Nations World Water Development
Report 2015: Water for a Sustainable World, UNESCO, Paris,
2015.
- B.K. Mayer, D. Gerrity, B.E. Rittmann, D. Reisinger, S. Brandt-
Williams, Innovative strategies to achieve low total phosphorus
concentrations in high water flows, Crit. Rev. Env. Sci. Technol.,
43 (2013) 409–441.
- POST note 477, Phosphate Resources, The Parliamentary Office
of Science and Technology, 7 Millbank, London, UK, 2014.
- S.K. Zheng, J.J. Chen, X.M. Jiang, X.F. Li, A comprehensive
assessment on commercially available standard anion resins for
tertiary treatment of municipal wastewater, Chem. Eng. J., 169
(2011) 194–199.
- L. Rafati, R. Nabizadeh, A.H. Mahvi, M.H. Dehghani, Removal
of phosphate from aqueous solutions by iron nano-particle
resin Lewatit (FO36), Korean J. Chem. Eng., 29 (2012) 473–477.
- J.-Q. Jiang, O. Mwabonje, Phosphorus recovery by liquid-liquid
extraction, Sep. Sci. Technol., 44 (2009) 3258–3266.
- Z. Wen, Y. Zhang, C. Dai, Removal of phosphate from aqueous
solution using nanoscale zerovalent iron (nZVI), Colloids Surf.,
A, 457 (2014) 433–440.
- H. Gharibi, A.H. Mahvi, M. Chehrazi, R. Sheikhi, S.S. Hosseini,
Phosphorous removal from wastewater effluent using electrocoagulation
by aluminum and iron plates, Anal. Bioanal. Electrochem.,
2 (2010) 165–177.
- X. Song, Y. Pan, Q. Wu, Z. Cheng, W. Ma, Phosphate removal
from aqueous solutions by adsorption using ferric sludge,
Desalination, 280 (2011) 384–390.
- European Commission, Guidance Document on Eutrophication
Assessment, Common Implementation Strategy for the Water
Framework Directive (2000/60/EC), Guidance Document No 23,
Technical Report, 2009.
- C. Pratt, S.A. Parsons, A. Soares, B.D. Martin, Biologically and
chemically mediated adsorption and precipitation of phosphorus
from wastewater, Curr. Opin. Biotechnol., 23 (2012) 890–896.
- S.A. Parsons, J.A. Smith, Phosphorus removal and recovery
from municipal wastewaters, Elements, 4 (2008) 109–112.
- A.H. Mahvi, S.J.A. Ebrahimia, A. Mesdaghinia, H. Gharibia,
M.H. Sowlata, 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.
- J.-Q. Jiang, S.M. Ashekuzzaman, Development of novel inorganic
adsorbent for water treatment, Curr. Opin. Chem. Eng., 1 (2012)
191–199.
- 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.
- X. Cheng, X. Huang, X. Wang, D. Sun, Influence of calcination
on the adsorptive removal of phosphate by Zn–Al layered
double hydroxides from excess sludge liquor, J. Hazard. Mater.,
177 (2010) 516–523.
- F.L. Theiss, S.J. Couperthwaite, G.A. Ayoko, R.L. Frost, A
review of the removal of anions and oxyanions of the halogen
elements from aqueous solution by layered double hydroxides,
J. Colloid Interface Sci., 417 (2014) 356–368.
- Y. Guo, Z. Zhu, Y. Qiu, J. Zhao, Adsorption of arsenate on Cu/
Mg/Fe/La layered double hydroxide from aqueous solutions, J.
Hazard. Mater., 239–240 (2012) 279–288.
- J. Zhou, Y. Su, J. Zhang, X. Xu, J. Zhao, G. Qian, Y. Xu,
Distribution of OH bond to metal-oxide in Mg3–xCaxFe-layered
double hydroxide (x = 0–1.5): its role in adsorption of selenate
and chromate, Chem. Eng. J., 262 (2015) 383–389.
- X. Sun, T. Imai, M. Sekine, T. Higuchi, K. Yamamoto, A. Kanno,
S. Nakazono, Adsorption of phosphate using calcined Mg3-Fe
layered double hydroxides in a fixed-bed column study, J. Ind.
Eng. Chem., 20 (2014) 3623–3630.
- K.H. Goh, T.T. Lim, Z.L. Dong, Removal of arsenate from
aqueous solution by nanocrystalline Mg/Al layered double
hydroxide: sorption characteristics, prospects and challenges,
Water Sci. Technol., 61 (2010) 1411‒1417.
- J.-Q. Jiang, Y. Xu, K. Quill, J. Simon, K. Shettle, Laboratory study
of boron removal by Mg/Al double-layered hydroxides, Ind.
Eng. Chem. Res., 46 (2007) 4577‒4583.
- APHA, Standard Methods for the Examination of Water and
Wastewater, 21st ed., American Public Health Association,
Washington DC, 2005.
- P. Cai, H. Zheng, C. Wang, H. Ma, J. Hu, Y. Pu, P. Liang,
Competitive adsorption characteristics of fluoride and
phosphate on calcined Mg-Al-CO3 layered double hydroxides,
J. Hazard. Mater., 213–214 (2012) 100–108.
- N. Boujelben, J. Bouzid, Z. Elouear, M. Feki, F. Jamoussi,
A. Montiel, Phosphorus removal from aqueous solution using
iron coated natural and engineered sorbents, J. Hazard. Mater.,
151 (2008) 103–110.
- J. Wang, Y. Zhang, C. Feng, J. Li, G. Li, Adsorption capacity for
phosphorus comparison among activated alumina, silica sand
and anthracite coal, J. Water Res. Prot., 4 (2009) 260–264.
- P. Pengthamkeerati, T. Satapanajaru, P. Chularuengoaksorn,
Chemical modification of coal fly ash for the removal of
phosphate from aqueous solution, Fuel, 87 (2008) 2469–2476.
- E. Oguz, Removal of phosphate from aqueous solution with
blast furnace slag, J. Hazard. Mater., B114 (2004) 131–137.
- J.Z. Zhou, Z.P. Xu, S. Qiao, J. Liu, Q. Liu, Y. Xu, J. Zhang,
G. Qian, Triphosphate removal processes over ternary
CaMgAl-layered double hydroxides, Appl. Clay Sci., 54 (2011)
196–201.
- E. Desmidt, K. Ghyselbrecht, Y. Zhang, L. Pinoy, B.V. der
Bruggen, W. Verstraete, K. Rabaey, B. Meesschaert, Global
phosphorus scarcity and full-scale P-recovery techniques: a
review, Crit. Rev. Env. Sci. Technol., 45 (2015) 336–384.
- A. Tolkou, A. Zouboulis, C. Raptopoulou, Phosphorus
Recovery in Wastewater Treatment: Moving from Lab to Pilot
Scale, Proceedings of the World Congress on New Technologies
(NewTech), Barcelona, Spain, July 15–17, 2015, Paper no. 157.