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Original Articles

Phosphate Removal and Recovery with Calcined Layered Double Hydroxides as an Adsorbent

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Pages 519-526 | Published online: 20 Jun 2008

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (6)

H. Bendjeffal, H. Mamine, T. Metidji, A. Djebli, R. Diaf & Y. Bouhedja. (2023) A Box-Behnken design-based chemometric approach to optimize the removal of phosphate ions from water using Punica granatum shells. Phosphorus, Sulfur, and Silicon and the Related Elements 198:8, pages 632-644.
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T. Nur, W.G. Shim, M.A.H. Johir, S. Vigneswaran & J. Kandasamy. (2014) Modelling of phosphorus removal by ion-exchange resin (Purolite FerrIX A33E) in fixed-bed column experiments. Desalination and Water Treatment 52:4-6, pages 784-790.
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Tomohito Kameda, Aki Kodama, Yuki Fubasami, Shogo Kumagai & Toshiaki Yoshioka. (2013) Treatment of NO and NO2 with a Mg−Al oxide slurry. Journal of Environmental Science and Health, Part A 48:1, pages 86-91.
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BrookeK. Mayer, Daniel Gerrity, BruceE. Rittmann, Daniel Reisinger & Sherry Brandt-Williams. (2013) Innovative Strategies to Achieve Low Total Phosphorus Concentrations in High Water Flows. Critical Reviews in Environmental Science and Technology 43:4, pages 409-441.
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T. Nur, M.A.H. Johir, P. Loganathan, S. Vigneswaran & J. Kandasamy. (2012) Effectiveness of purolite A500PS and A520E ion exchange resins on the removal of nitrate and phosphate from synthetic water. Desalination and Water Treatment 47:1-3, pages 50-58.
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Tomohito Kameda, Yuki Fubasami & Toshiaki Yoshioka. (2012) Treatment of waste H2SO4 with Mg−Al oxide obtained by calcination of NO3 −−intercalated Mg−Al layered double hydroxide: Kinetics and equilibrium. Journal of Environmental Science and Health, Part A 47:5, pages 711-717.
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Articles from other publishers (14)

Nathália Isidoro Ribeiro, Otávio Barreto Pessanha, Maria Luiza Gomes Soares Pessanha & Damaris Guimarães. (2023) Efficient phosphate adsorption by a composite composed of Mg6Al2(CO3)(OH)16·4H2O LDH and Chitosan: kinetic, thermodynamic, desorption, and characterization studies. Separation and Purification Technology 307, pages 122717.
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Galyna Mykolaivna Pshinko & Liubov Mykolaivna Puzyrna. 2023. Polyfunctional highly selective sorption materials for water purification from radionuclides and other inorganic ecotoxicatnts. Polyfunctional highly selective sorption materials for water purification from radionuclides and other inorganic ecotoxicatnts.
Kaikai Zheng, Li Xiang, Chou Huang, Yan Wang, Haichuan Zhang & Ji Li. (2022) Efficient phosphate removal and recovery from wastewater with Zn(OH)2@DETA-aminated polyacrylonitrile fibre. Colloids and Surfaces A: Physicochemical and Engineering Aspects 652, pages 129719.
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Xiaoqian Jiang, Dan Zhou, Binggang Yan, Wenyan Li & Yuntao Guan. (2021) Experimental and numerical investigations of phosphorus release under carbonate and variable flow in soil with Mg-Al layered double hydroxides. Chemical Engineering Journal 406, pages 126735.
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Maarten Everaert, Kris Slenders, Kris Dox, Simon Smolders, Dirk De Vos & Erik Smolders. (2018) The isotopic exchangeability of phosphate in Mg-Al layered double hydroxides. Journal of Colloid and Interface Science 520, pages 25-32.
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Miloud Aissat, Sara Hamouda, Naceur Benhadria, Rachid Chellali & Noureddine Bettahar. Alizarin red S dye removal from contaminated water on calcined [Mg/Al, Zn/Al and MgZn/Al]-LDH. Alizarin red S dye removal from contaminated water on calcined [Mg/Al, Zn/Al and MgZn/Al]-LDH.
Maarten Everaert, Ruben Warrinnier, Stijn Baken, Jon-Petter Gustafsson, Dirk De Vos & Erik Smolders. (2016) Phosphate-Exchanged Mg–Al Layered Double Hydroxides: A New Slow Release Phosphate Fertilizer. ACS Sustainable Chemistry & Engineering 4:8, pages 4280-4287.
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C. Novillo, D. Guaya, A. Allen-Perkins Avendaño, C. Armijos, J.L. Cortina & I. Cota. (2014) Evaluation of phosphate removal capacity of Mg/Al layered double hydroxides from aqueous solutions. Fuel 138, pages 72-79.
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T. P. F. Teixeira, S. F. Aquino, S. I. Pereira & A. Dias. (2014) Use of calcined layered double hydroxides for the removal of color and organic matter from textile effluents: kinetic, equilibrium and recycling studies. Brazilian Journal of Chemical Engineering 31:1, pages 19-26.
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A. Halajnia, S. Oustan, N. Najafi, A.R. Khataee & A. Lakzian. (2013) Adsorption–desorption characteristics of nitrate, phosphate and sulfate on Mg–Al layered double hydroxide. Applied Clay Science 80-81, pages 305-312.
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AKIHIRO SHIMAMURA, MARK I. JONES & JAMES B. METSON. (2012) INTERCALATION OF HYDROGEN PHOSPHATE INTO Mg / Al -LAYERED DOUBLE HYDROXIDES WITH DBS . Modern Physics Letters B 26:19, pages 1250119.
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Thaisa P.F. TeixeiraSimone I. PereiraSergio F. AquinoAnderson Dias. (2012) Calcined Layered Double Hydroxides for Decolorization of Azo Dye Solutions: Equilibrium, Kinetics, and Recycling Studies. Environmental Engineering Science 29:7, pages 685-692.
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Akihiro Shimamura, Mark I. Jones, Eiji Kanezaki & James B. Metson. (2011) Complete desorption of interlayer hydrogen phosphate in Mg/Al-layered double hydroxides by means of anion exchange with 1-octanesulfonate. Journal of Materials Science 47:3, pages 1142-1147.
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Tomohito Kameda, Naoya Uchiyama & Toshiaki Yoshioka. (2011) Removal of HCl, SO2, and NO by treatment of acid gas with Mg–Al oxide slurry. Chemosphere 82:4, pages 587-591.
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