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dc.contributor.authorKimosop, Selly Jemutai-
dc.contributor.authorOkello, Veronica A.
dc.contributor.authorOrata, Francis
dc.contributor.authorGetenga, Zachary M.
dc.contributor.authorShikuku, Victor O.
dc.date.accessioned2023-10-06T09:45:03Z
dc.date.available2023-10-06T09:45:03Z
dc.date.issued2017-03-15
dc.identifier.urihttps://doi.org/10.9734/CSJI/2017/32444
dc.identifier.urihttps://journalcsij.com/index.php/CSIJ/article/view/108
dc.identifier.urihttp://ir-library.mmust.ac.ke:8080/xmlui/handle/123456789/2348
dc.description.abstractBaggasse derived biochar magnetically modified with iron (α-Fe2O3-CBG) was fabricated, characterized and applied as a low-cost adsorbent for the removal of carbamazepine (CBZ), a pharmaceutically active compound which has been reported as an emergent water contaminant. Characterization of the synthesized (α-Fe2O3-CBG) composite showed that iron was effectively impregnated onto the carbonized bagasse network. The composite was able to achieve 60.9 % CBZ removal within a period of 4 hours. The time-dependency adsorption data followed the pseudo-second order kinetic law while the intraparticle diffusion model indicated that pore diffusion is not the sole operative rate-determining mechanism with significant boundary layer effects. Freundlich model best explained the equilibrium sorption data. The adsorption extent was also strongly pH-dependent though adsorption mechanism is significantly driven by electrostatic interactions at lower pH. Furthermore, magnetic separation of the contaminant-laden adsorbent was successfully accomplished.en_US
dc.language.isoenen_US
dc.publisherChemical Science International Journalen_US
dc.subjectGreen, Remediation, Carbamazepine, Water, Novel, Magnetic, Iron, Modified, Carbonized, Baggasse, Kinetics, Equilibrium, Mechanistic, Studiesen_US
dc.titleGreen Remediation of Carbamazepine from Water Using Novel Magnetic Iron Modified Carbonized Baggasse: Kinetics, Equilibrium and Mechanistic Studiesen_US
dc.typeArticleen_US


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