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Phosphate removal from aqueous solution using a hybrid impregnated polymeric sorbent containing hydrated ferric oxide (HFO)

Autor
You, X.; Guaya, D.; Farran, A.; Valderrama, C.; Cortina, J.
Tipus d'activitat
Article en revista
Revista
Journal of chemical technology & biotechnology
Data de publicació
2016-03-01
Volum
91
Número
3
Pàgina inicial
693
Pàgina final
704
DOI
https://doi.org/10.1002/jctb.4629 Obrir en finestra nova
Repositori
http://hdl.handle.net/2117/87099 Obrir en finestra nova
URL
http://onlinelibrary.wiley.com/doi/10.1002/jctb.4629/abstract;jsessionid=DCEE2D3416BA4FB91014A1094B2E3178.f02t02 Obrir en finestra nova
Resum
BACKGROUND: This study evaluated a polymeric ion exchanger impregnated with nanoparticles of hydrated ferric oxide as a selective sorbent for anionic P(V) species. The hybrid impregnated anion exchanger (HAIX) employed as sorbent combines the durability and mechanical strength of a polymeric weak base anion exchange resin with the high sorption affinity of hydrated ferric oxide towards P(V) species.; RESULTS: The P(V) loading capacity of the sorbent at a pH simulating the expected conditions in ...
Citació
You, X., Guaya, D., Farran, A., Valderrama, C., Cortina, J. Phosphate removal from aqueous solution using a hybrid impregnated polymeric sorbent containing hydrated ferric oxide (HFO). "Journal of chemical technology & biotechnology", 01 Març 2016, vol. 91, núm. 3, p. 693-704.
Paraules clau
HAIX, Lewatit FO36, P(V) removal, activated carbon-fiber, anion, arsenic removal, competitive adsorption, drinking-water, hydrated ferric hydroxide (HFO), hydrogen and di-hydrogen phosphate, ion-exchangers, iron, phosphorus removal, polymeric weak base ion exchanger, selective removal, waste-water
Grup de recerca
CERpIE - Centre Específic de Recerca per a la Millora i Innovació de les Empreses
CRnE - Centre de Recerca en Ciència i Enginyeria Multiescala de Barcelona
R2EM - Resource Recovery and Environmental Management

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