Please use this identifier to cite or link to this item: http://localhost:80/xmlui/handle/123456789/12810
Title: Equilibrium, kinetics, thermodynamics and docking studies of Cu2+ ion adsorption over ion-exchange resin and kappa carrageenan blends in blood samples
Authors: Salman, Saad
Asghar, Sajid
Ullah Khan, Ikram
Khalid, Syed Haroon
Hassan Shah, Fahad
Usman, Mohammad
Keywords: Adsorption
isotherm
kinetics
thermodynamics
docking
kappa-carrageenan
ion-exchange resin
Issue Date: 20-Mar-2020
Publisher: Karachi:Pakistan Journal of Pharmaceutical Sciences, University of Karachi.
Citation: Salman, S., Asghar, S., Khan, I. U., Khalid, S. H., Shah, F. H., & Usman, M. (2020). Equilibrium, kinetics, thermodynamics and docking studies of Cu 2+ ion adsorption over ion-exchange resin and kappa carrageenan blends in blood samples. Pakistan Journal of Pharmaceutical Sciences.
Abstract: Cupric ions are hazardous to human beings and their removal from the body is very necessary. The blends of IRP69H (AMBERLITE IRP-69 [H+ ] RESIN), DC20H (DOWEX™ 20 [H+ ] Resin), DMSCH (DOWEX™ MARATHON™ MSC [H+ ] Resin) and Kappa Carrageenan (κ-) were utilized for the removal of ions of Cu2+ from the blood. They were subjected to docking studies which showed that there is no significant interaction with the blood albumin. IER dose of 0.5 mg/10mL of IRP69H/κ-, DMSCH/κ-, and DC20H/κ- was essential for the Cu2+ ion removal. At pH 5.4, optimal Cu2+ ions adsorption efficiency was attained. The adsorption capacities of Cu2+ were in the order of IRP69H/κ->DC20H/κ->DMSCH/κ-. While the data fitted well to Freundlich, Langmuir and Dubinin-Radushkevich. Pseudo-second order was followed for Cu2+ adsorption for DMSCH/κ- and DC20H/κ- while the pseudo-first order was demonstrated well for IRP69H/κ-.
URI: http://142.54.178.187:9060/xmlui/handle/123456789/12810
ISSN: 1011-601X
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