dc.creatorUniversidad San Sebastián
dc.creatorUniversidad San Sebastián
dc.creatorUniversidad San Sebastián
dc.creatorUniversidad San Sebastián
dc.creatorUniversidad San Sebastián
dc.creatorUniversidad San Sebastián
dc.creatorUniversidad San Sebastián
dc.creatorUniversidad San Sebastián
dc.creatorVaraprasad, Kokkarachedu
dc.creatorNunez, Dariela
dc.creatorYallapu, Murali Mohan
dc.creatorJayaramudu, Tippabattini
dc.creatorElgueta, Elizabeth
dc.creatorOyarzun, Patricio
dc.date.accessioned2023-05-24T05:04:19Z
dc.date.available2023-05-24T05:04:19Z
dc.date.created2023-05-24T05:04:19Z
dc.date.issued2018
dc.identifier2046-2069
dc.identifierhttps://repositorio.uss.cl/handle/uss/7491
dc.identifier10.1039/c8ra01887a
dc.description.abstractHerein, two kinds of nano-hydroxyapatite were synthesized from Clam and Magellan shell by wet chemical precipitation method. Mainly, carboxymethyl cellulose/acrylamide/nano-hydroxyapatite composite hydrogels were developed via a free-radical polymerization process and investigated as a sorbent for Acid Blue 113 (AB) from aqueous AB solution. The swelled and kinetic behaviours of hydrogels were investigated using a gravimetric method. The swelling properties of the CMC-AM-hydrogels were influenced by the calcium electrolytes (Ca2+) content in nano-hydroxyapatites. The diffusion coefficient value increased with the increase of nano-hydroxyapatite content in the CMC-AM/nHA-CS (0.22353-0.27681 cm2 s-1) and CMC-AM/nHA-MS (0.22377-0.29737 cm2 s-1) hydrogels. The mechanism of water diffusion was found to be anomalous transport. The CMC-AM/nHA-MS hydrogels showed high AB absorption efficiency and adsorption capacities. These results explained that the nano-hydroxyapatites of Magellan shells based hydrogels are attractive nanocomposite hydrogels for the adsorption of dye in the water purification applications.
dc.languageeng
dc.relationRSC Advances
dc.titleNano-hydroxyapatite polymeric hydrogels for dye removal
dc.typeArtículo


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