The adsorption of copper in a packed-bed of chitosan beads: Modeling, multiple adsorption and regeneration
In this study, exoskeletons of Cape rock lobsters were used as raw material in the preparation of chitin that was successively deacetylated to chitosan flakes. The chitosan flakes were modified into chitosan beads and the beads were cross-linked with glutaraldehyde in order to study copper adsorptio...
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Published in | Journal of hazardous materials Vol. 167; no. 1; pp. 1242 - 1245 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
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Kidlington
Elsevier B.V
15.08.2009
Elsevier |
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Abstract | In this study, exoskeletons of Cape rock lobsters were used as raw material in the preparation of chitin that was successively deacetylated to chitosan flakes. The chitosan flakes were modified into chitosan beads and the beads were cross-linked with glutaraldehyde in order to study copper adsorption and regeneration in a packed-bed column. Five consecutive adsorption and desorption cycles were carried out and a chitosan mass loss of 25% was observed, after the last cycle. Despite the loss of chitosan material, an improved efficiency in the second and third cycles was observed with the adsorbent utilizing 97 and 74% of its adsorbent capacity in the second and third cycles, respectively. The fourth and fifth cycles, however, showed a decreased efficiency, and breakage of the beads was observed after the fifth cycle. In the desorption experiments, 91–99% of the adsorbed copper was regenerated in the first three cycles. It was also observed that the copper can be regenerated at a concentration of about a thousand fold the initial concentration. The first cycle of adsorption could be accurately described with a shrinking core particle model combined with a plug flow column model. The input parameters for this model were determined by batch characterization methods, with as only fitting parameter, the effective diffusion coefficient of copper in the bead. |
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AbstractList | In this study, exoskeletons of Cape rock lobsters were used as raw material in the preparation of chitin that was successively deacetylated to chitosan flakes. The chitosan flakes were modified into chitosan beads and the beads were cross-linked with glutaraldehyde in order to study copper adsorption and regeneration in a packed-bed column. Five consecutive adsorption and desorption cycles were carried out and a chitosan mass loss of 25% was observed, after the last cycle. Despite the loss of chitosan material, an improved efficiency in the second and third cycles was observed with the adsorbent utilizing 97 and 74% of its adsorbent capacity in the second and third cycles, respectively. The fourth and fifth cycles, however, showed a decreased efficiency, and breakage of the beads was observed after the fifth cycle. In the desorption experiments, 91-99% of the adsorbed copper was regenerated in the first three cycles. It was also observed that the copper can be regenerated at a concentration of about a thousand fold the initial concentration. The first cycle of adsorption could be accurately described with a shrinking core particle model combined with a plug flow column model. The input parameters for this model were determined by batch characterization methods, with as only fitting parameter, the effective diffusion coefficient of copper in the bead. |
Author | Osifo, Peter O. vd Gun, Marius A. Neomagus, Hein W.J.P. Everson, Raymond C. Webster, Athena |
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Keywords | Column regeneration Copper adsorption Adsorption column Cross-linked chitosan beads Packed bed Desorption Raw materials Modeling Plug flow Adsorption Batchwise Preparation Rocks Diffusion coefficient |
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References | Osifo, Webster, Van Der Merwer, Neomagus, Van Der Gun, Grant (bib9) 2008; 99 No, Meyer (bib17) 1997 Crini (bib2) 2005; 30 Ngah, Fatinathan (bib5) 2006; 277 Swan, McElrath, Baricos, Cohen, Chambers (bib19) 1975 Jeon, Park (bib15) 2005; 39 Ko, Porter, McKay (bib21) 2001; 35 Shafaei, Ashtiani, Kaghazchi (bib16) 2007; 133 Bird, Stewart, Lightfoot (bib22) 1960 Jha, Iyengar, Prabhakara-Rao (bib4) 1987; 114 Vieera, Beppu (bib6) 2006; 40 Babel, Kurniawan (bib1) 2003; 97 Kapoor, Viraraghavan (bib13) 1998; 32 Atia (bib14) 2005; 80 Guibal (bib7) 2004; 38 Gerente, du Mesnil, Andres, Thibault, Le Cloirec (bib23) 2000; 46 Kurniawan, Chan, Lo, Babel (bib3) 2006; 118 Kawamura, Yoshida, Asai, Tanibe (bib20) 1997; 35 Da Silva, Cossich, Tavares, Filho, Guirardello (bib11) 2002; 38 Ngah, Endud, Mayanar (bib8) 2002; 20 Kratochvil, Volesky (bib10) 1998; 16 Sun, Wang, Wang (bib18) 2006; 136 Chen, Yoon, Yiacoumi (bib12) 2003; 41 |
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SubjectTerms | Adsorption Adsorption column Applied sciences Chemical engineering Chitosan - chemistry Column regeneration Conservation of Natural Resources - methods Copper - isolation & purification Copper adsorption Cross-linked chitosan beads Diffusion Exact sciences and technology Glutaral Jasus edwardsii Microspheres Pollution |
Title | The adsorption of copper in a packed-bed of chitosan beads: Modeling, multiple adsorption and regeneration |
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