References
- C. Liu, M.Y. Zhang, G. Pan, L. Lundehøj, U.G. Nielsen, Y. Shi,
H.C.B. Hansen, Phosphate capture by ultrathin MgAl layered
double hydroxide nanoparticles, Appl. Clay Sci., 177 (2019)
82–90.
- H.K. Hudnell, C. Jones, B. Labisi, V. Lucero, D.R. Hill, J. Eilers,
Freshwater harmful algal bloom (FHAB) suppression with
solar powered circulation (SPC), Harmful Algae, 9 (2010)
208–217.
- Y. Yao, B. Gao, J.J. Chen, L.Y. Yang, Engineered biochar
reclaiming phosphate from aqueous solutions: mechanisms
and potential application as a slow-release fertilizer,
Environ. Sci. Technol., 47 (2013) 8700–8708.
- M.A. Zahed, S. Salehi, Y. Tabari, H. Farraji, S. Ataei-Kachooei,
A.A. Zinatizadeh, N. Kamali, M. Mahjouri, Phosphorus removal
and recovery: state of the science and challenges. Environ. Sci.
Pollut. Res., 29 (2022) 58561–58589.
- P. Mullen, K. Venkiteshwaran, D.H. Zitomer, B.K. Mayer,
Ion exchange nutrient recovery from anaerobic membrane
bioreactor permeate, Water Environ. Res., 91 (2019) 606–615.
- D. Dolar, K. Košutić, B. Vučić, RO/NF treatment of wastewater
from fertilizer factory – removal of fluoride and phosphate,
Desalination, 265 (2011) 237–241.
- T. Liu, S.R. Zheng, L.Y. Yang, Magnetic zirconium-based metal–
organic frameworks for selective phosphate adsorption from
water, J. Colloid Interface Sci., 552 (2019) 134–141.
- I.W. Almanassra, V. Kochkodan, G. Mckay, M.A. Atieh,
T. Al-Ansari, Review of phosphate removal from water by
carbonaceous sorbents, J. Environ. Manage., 287 (2021) 112245,
doi: 10.1016/j.jenvman.2021.112245.
- R.T. Liu, L.N. Chi, X.Z. Wang, Y.M. Sui, Y. Wang, H. Arandiyan,
Review of metal (hydr)oxide and other adsorptive materials
for phosphate removal from water, J. Environ. Chem. Eng.,
6 (2018) 5269–5286.
- F. Zhu, H.J. Lu, Y.H. Lu, Effective solid phase extraction for
the enrichment of p-nitrophenol in water using microwaveassisted
synthesized fly ash@p-nitrophenol surface molecular
imprinted polymer, J. Mater. Sci., 58 (2023) 4399–4415.
- N. Parasana, M.N. Shah, A. Unnarkat, Recent advances in
developing innovative sorbents for phosphorus removalperspective
and opportunities, Environ. Sci. Pollut. Res.,
29 (2022) 38985–39016.
- M.X. Li, J.Y. Liu, Y.F. Xu, G.R. Qian, Phosphate adsorption on
metal oxides and metal hydroxides: a comparative review,
Environ. Rev., 24 (2016) 319–332.
- J.W. Lin, B.H. Jiang, Y.H. Zhan, Effect of pre-treatment of
bentonite with sodium and calcium ions on phosphate
adsorption onto zirconium-modified bentonite, J. Environ.
Manage., 217 (2018) 183–195.
- N. Mehrabi, M. Soleimani, H. Sharififard, M.M. Yeganeh,
Optimization of phosphate removal from drinking water with
activated carbon using response surface methodology (RSM),
Desal. Water Treat., 57 (2016) 15613–15618.
- L. Tao, S.R. Zheng, L.Y. Yang, Magnetic zirconium-based metal–
organic frameworks for selective phosphate adsorption from
water, J. Colloid Interface Sci., 553 (2019) 134–141.
- Q.Q. He, H.J. Zhao, Z.D. Teng, Y. Wang, M. Li, M.R. Hoffmann,
Phosphate removal and recovery by lanthanum-based
adsorbents: a review for current advances. Chemosphere,
303 (2022) 134987, doi: 10.1016/j.chemosphere.2022.134987.
- F. Haghseresht, S. Wang, D.D. Do, A novel lanthanum-modified
bentonite, Phoslock, for phosphate removal from wastewaters,
Appl. Clay Sci., 46 (2009) 369–375.
- J. Xie, Z. Wang, S.Y. Lu, D.Y. Wu, Z.J. Zhang, H.N. Kong,
Removal and recovery of phosphate from water by lanthanum
hydroxide materials, Chem. Eng. J., 254 (2014) 163–170.
- L. Chen, F. Liu, Y. Wu, L.M. Zhao, Y.Z. Li, X. Zhang,
J.S. Qian, In-situ formation of La(OH)3-poly(vinylidene fluoride)
composite filtration membrane with superior phosphate
removal properties, Chem. Eng. J., 347 (2018) 695–702.
- S.L. Zhang, T. Lin, W. Li, M.L. Li, K. Su, J.M. Chen, H.W. Yang
Lanthanum-loaded peanut shell biochar prepared via one-step
pyrolysis method for phosphorus removal and immobilization,
Environ. Technol., 44 (2023) 1169–1178.
- S.Y. Li, X.F. Huang, J. Liu, L.J. Lu, K.M. Peng, R. Bhattarai,
PVA/PEI crosslinked electrospun nanofibers with embedded
La(OH)3 nanorod for selective adsorption of high flux low
concentration phosphorus, J. Hazard. Mater., 384 (2020) 121457,
doi: 10.1016/j.jhazmat.2019.121457.
- B.L. Wu, L.P. Fang, J.D. Fortner, X.H. Guan, I.M.C. Lo, Highly
efficient and selective phosphate removal from wastewater
by magnetically recoverable La(OH)3/Fe3O4 nanocomposites,
Water Res., 126 (2017) 179–188.
- S.J. Zhou, L.J. Xia, K. Zhang, Z. Fu, Y.L. Wang, Q. Zhang,
L.S. Zhai, Y.S. Mao, W.L. Xu, Titanium dioxide decorated
natural cellulosic Juncus effusus fiber for highly efficient
photodegradation towards dyes, Carbohydr. Polym., 232 (2020)
115830, doi: 10.1016/j.carbpol.2020.115830.
- S.L. Zhang, W. Li, M.L. Li, T. Lin, K. Su, H.W. Yang, J.M. Chen,
Efficient removal and detoxification of Cr(VI) by PEI-modified
Juncus effusus with a natural 3D network structure, Sep. Purif.
Technol., 297 (2022) 121543, doi: 10.1016/j.seppur.2022.121543.
- L. Zhang, Q. Zhou, J.Y. Liu, N. Chang, L.H. Wan, J.H. Chen,
Phosphate adsorption on lanthanum hydroxide-doped
activated carbon fiber, Chem. Eng. J., 185 (2012) 160–167.
- M. Mousavi-Kamazani, S. Alizadeh, F. Ansari, M. Salavati-
Niasari, A controllable hydrothermal method to prepare
La(OH)3 nanorods using new precursors, J. Rare Earths,
33 (2015) 425–431.
- J.D. Zhang, Z.M. Shen, W.P. Shan, Z.J. Mei, W.H. Wang,
Adsorption behavior of phosphate on lanthanum(III)-
coordinated diamino-functionalized 3D hybrid mesoporous
silicates material, J. Hazard. Mater., 186 (2011) 76–83.
- Q. Tang, C.H. Shi, W.M. Shi, X.L. Huang, Y.Y. Ye, W. Jiang,
J.X. Kang, D.Q. Liu, Y.Z. Ren, D.S. Li, Preferable phosphate
removal by nano-La(III) hydroxides modified mesoporous
rice husk biochars: role of the host pore structure and point of
zero charge, Sci. Total Environ., 662 (2019) 511–520.
- L. Chen, Y.Z. Li, Y.B. Sun, Y. Chen, J.S. Qian, La(OH)3 loaded
magnetic mesoporous nanospheres with highly efficient
phosphate removal properties and superior pH stability,
Chem. Eng. J., 360 (2019) 342–348.
- W.Y. Huang, Y. Zhu, J.P. Tang, X. Yu, X.L. Wang, D. Li,
Y.M. Zhang, Lanthanum-doped ordered mesoporous hollow
silica spheres as novel adsorbents for efficient phosphate
removal, J. Mater. Chem. A, 2 (2014) 8839–8848.
- N. Chen, C.P. Feng, Z.Y. Zhang, R.P. Liu, Y. Gao, M. Li,
N. Sugiura, Preparation and characterization of lanthanum(III)
loaded granular ceramic for phosphorus adsorption from
aqueous solution, J. Taiwan Inst. Chem. Eng., 43 (2012) 783–789.
- A.J. Zhou, C. Zhu, W.W. Chen, J. Wan, T. Tao, T.C. Zhang,
P.C. Xie, Phosphorus recovery from water by lanthanum
hydroxide embedded interpenetrating network poly(vinyl
alcohol)/sodium alginate hydrogel beads, Colloids Surf., A,
554 (2018) 237–244.
- Y. Zuo, X.N. Fu, Y. Chen, G.R. Cui, M. Liu, Phosphorus removal
from wastewater using a lanthanum oxide-loaded ceramic
adsorbent, Adsorption, 22 (2016) 1091–1098.
- H.Y. Fu, Y.X. Yang, R.L. Zhu, J. Liu, M. Usman, Q.Z. Chen,
H.P. He, Superior adsorption of phosphate by ferrihydritecoated
and lanthanum-decorated magnetite, J. Colloid Interface
Sci., 530 (2018) 704–713.
- P. Koilraj, K. Sasaki, Selective removal of phosphate using
La-porous carbon composites from aqueous solutions: batch
and column studies, Chem. Eng. J., 317 (2017) 1059–1068.
- Y.M. Huang, X.Q. Lee, M. Grattieri, M.W. Yuan, R. Cai,
F.C. Macazo, S.D. Minteer, Modified biochar for phosphate
adsorption in environmentally relevant conditions, Chem. Eng.
J., 380 (2020) 122375, doi: 10.1016/j.cej.2019.122375.
- Y. Yao, B. Gao, J.J. Chen, L.Y. Yang, Engineered biochar
reclaiming phosphate from aqueous solutions: mechanisms
and potential application as a slow-release fertilizer,
Environ. Sci. Technol., 47 (2013) 8700–8708.
- L. Li, W.G. Jiang, H.H. Pan, R. Xu, Y.X. Tang, J.Z. Ming, Z.D. Xu,
R.K. Tang, Improved luminescence of lanthanide(III)-doped
nanophosphors by linear aggregation, J. Phys. Chem. C,
111 (2008) 4111–4115.