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- W2073006098 abstract "Abstract The capability of two synthetic zeolites, NaA and NaX, to remove ammonia nitrogen from water was examined. NaA and NaX were porous zeolites with an average particle diameter of 316 and 460 nm, average pore diameter of 0.4 and 0.8 nm, and BET of 177 and 271 m2/g, respectively. The influence of various experimental conditions on ammonium removal by NaA and NaX zeolites was investigated. The optimum pH for ammonium removal using NaA and NaX was found to be 7, at which 70.2% and, approximately, 80% of 50 mg N/L ammonium was removed, respectively, at an optimum zeolite concentration of 4 g/L of Na. The ammonium removal data for both zeolites were best fitted with a pseudo-second-order adsorption reaction model. The adsorption of ammonium on the zeolite particles could be better described by the Freundlich model. The maximum adsorption capacity of NaA and NaX was 94.2 and 161.3 mg N/g, respectively, under optimum water pH. These findings reveal that the NaX synthetic zeolite can be an efficient material for adsorbing ammonium from polluted waters." @default.
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- W2073006098 date "2013-08-01" @default.
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- W2073006098 title "Removal of ammonium from water by adsorption onto synthetic zeolites NaA and NaX: a comparative parametric, kinetic, and equilibrium study" @default.
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- W2073006098 doi "https://doi.org/10.1080/19443994.2012.760111" @default.
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