| Literature DB >> 31756932 |
Zujin Yang1,2, Yuxin Chai1,2, Lihua Zeng3, Zitao Gao1, Jianyong Zhang3, Hongbing Ji2,4,5.
Abstract
: Gel adsorption is an efficient method for the removal of metal ion. In the present study, a functionalEntities:
Keywords: Cu2+ ion; adsorption; functional chitosan gel; mechanism; reuse experiment
Mesh:
Substances:
Year: 2019 PMID: 31756932 PMCID: PMC6930644 DOI: 10.3390/molecules24234205
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Scheme 1Adsorption mechanism of FCG with Cu2+ ion.
Figure 1The synthesis procedure of functional chitosan gel (FCG).
Figure 2SEM micrographs of chitosan (a), FCG, (b) and FCG after adsorption (c).
Figure 3TGA curves of chitosan (a) and FCG (b).
Figure 4FTIR spectra of chitosan (a), FCG (b), and FCG after adsorption of Cu2+ ion (c).
Figure 513C CP–MAS spectra of chitosan and FCG.
Figure 6XPS spectra, N1s and O1s of FCG before (a,c) and after (b,d) adsorption of Cu2+. ion.
Figure 7Effect of the solution pH on the adsorption of Cu2+ ion. (Initial Cu2+ ion concentration, 50 and 100 mg/L; temperature, 293 K; pH 7; agitation speed, 150 r/min; and adsorbent dose, 10 mg/25 mL.)
Maximum adsorption capacity (mg/g) of different chitosan-based adsorbents for Cu2+ ion.
| Adsorbent | Adsorption Capacity (mg/g) | Refs. |
|---|---|---|
| Thiourea-modified chitosan microspheres | 66.70 | [ |
| Chitosan/PVA beads | 47.90 | [ |
| Carboxymethyl chitosan-graft- | 70.21 | [ |
| Chitosan acetate crown ether | 23.90 | [ |
| Chitosan/cellulose composite | 53.50 | [ |
| Glutaraldehyde-chitosan | 59.61 | [ |
| Chitosan/SiO2/Fe3O4 | 31.72 | [ |
| FCG | 75.40 | This work |
Figure 8Effects of solution ionic strength on the Cu2+ ion adsorption by FCG. (Initial Cu2+ ion concentration, 50 and 100 mg/L; temperature, 293 K; pH, 5; agitation speed, 150 r/min; and adsorbent dose, 10 mg/25 mL.)
Figure 9Effects of contact time on the adsorption capacity of Cu2+ with two Cu2+ concentration (initial Cu2+ ion concentration, 50 and 100 mg/L; pH 5; temperature, 293 K; agitation speed, 150 r/min; and adsorbent dose, 10 mg/25 mL).
Figure 10Isotherm model curves for the Cu2+ ion removal by the FCG; Langmuir and Freundlich model (a) and D-R model (b). (Initial Cu2+ concentration, 100 mg/L; pH, 5; temperature, 293 K; agitation speed, 150 r/min; and adsorbent dose, 10 mg/25 mL.).
Maximum adsorption capacity (mg/g) of different adsorbents for cadmium.
| Adsorbent | Adsorption Capacity (mg/g) | Refs. |
|---|---|---|
| Bamboo charcoal | 12.08 | [ |
| Red mud | 17.80 | [ |
| Waste sludge | 15.70 | [ |
| Almond shell | 3.18 | [ |
| FCG | 48.02 | This work |