dc.creatorCAMANI, PAULO H.
dc.creatorMIDHUN DOMINIC, C.D.
dc.creatorPARRA, DUCLERC F.
dc.creatorMALTEZ, HELOISA F.
dc.creatorROSA, DERVAL S.
dc.date2023
dc.date2023-04-18T19:41:22Z
dc.date2023-04-18T19:41:22Z
dc.date.accessioned2023-09-28T14:25:45Z
dc.date.available2023-09-28T14:25:45Z
dc.identifier0141-8130
dc.identifierhttp://repositorio.ipen.br/handle/123456789/33982
dc.identifier226
dc.identifier10.1016/j.ijbiomac.2022.11.308
dc.identifier0000-0002-6481-0155
dc.identifier91.2
dc.identifier92.67
dc.identifier.urihttps://repositorioslatinoamericanos.uchile.cl/handle/2250/9004191
dc.descriptionThis paper evaluates corn starch aerogels, studying different crosslinking agent (trisodium citrate) concentrations (1:1, 1:1.5, and 1:2) and sorption conditions (contact time, adsorbent weight, and initial concentration) regarding the potentially toxic elements (PTEs) [Cd(II) or Zn(II)] adsorption of the aqueous systems. Besides, other properties of aerogels, such as structural properties, specific surface area, and mechanical performance, were evaluated. For adsorption results, better values were observed in adsorption capacity and efficiency for the initial concentration of 100 ppm. In addition, an adsorption time of 12 h and an adsorbent weight of 3.0 g obtained better results due to the possible balance in this time and the high specific surface area available for Cd(II) adsorption. As for the type of adsorbent, the Aero 1:1.5 sample (intermediate crosslinking agent concentration) obtained better results, possibly due to the high porosity, smaller pore sizes, high pore density, and high specific surface area (198 m2??g???1). In addition, hydroxyl groups in the starch aerogel removed Cd(II) ions with 30 % adsorption efficiency. Lastly, Aero 1:1.5 obtained a high mechanical strength at compression and a satisfactory compressive modulus. In contrast, starch aerogels did not absorb the Zn(II) ion.
dc.descriptionFunda????o de Amparo ?? Pesquisa do Estado de S??o Paulo (FAPESP)
dc.descriptionFAPESP: 19/16301-6; 20/13703-3
dc.format628-645
dc.relationInternational Journal of Biological Macromolecules
dc.rightsopenAccess
dc.subjectmaize
dc.subjectstarch
dc.subjectgels
dc.subjectadsorption
dc.subjectelements
dc.subjecttoxic materials
dc.titleDivalent metal ion removal from simulated water using sustainable starch aerogels
dc.typeArtigo de peri??dico
dc.coverageI


Este ítem pertenece a la siguiente institución