| Literature DB >> 28347004 |
Ahmed A Galhoum1,2, Mohammad G Mafhouz3, Sayed T Abdel-Rehem4, Nabawia A Gomaa5, Asem A Atia6, Thierry Vincent7, Eric Guibal8.
Abstract
Cysteine-functionalizedEntities:
Keywords: cysteine-grafting; magnetic chitosan nanocomposites; rare earth metals; sorption isotherms; thermodynamics; uptake kinetics
Year: 2015 PMID: 28347004 PMCID: PMC5312863 DOI: 10.3390/nano5010154
Source DB: PubMed Journal: Nanomaterials (Basel) ISSN: 2079-4991 Impact factor: 5.076
Figure 1Scheme for the synthesis of cysteine-functionalized chitosan magnetic nano-based particles.
Figure 2FTIR spectra of (a) chitosan-magnetite nanoparticles; (b) after cross-linking; (c) cross-linked chitosan magnetite with the spacer arm; and (d) cysteine-adsorbent.
Figure 3Powder X-ray diffraction (XRD) pattern of cysteine-sorbent nanoparticles.
Figure 4TEM micrographs (the scale bars are (a) 100 and (b) 50 nm, respectively).
Figure 5Magnetization curve of cysteine-functionalized chitosan magnetic nano-based particles.
Figure 6Effect of pH on the sorption of La(III), Nd(III) and Yb(III) ions using cysteine-functionalized chitosan magnetic nano-based particles (C = 100 mg·L−1; T = 300 K; t = 4 h; m = 0.05 g; V = 100 mL).
Figure 7Effect of contact time on the adsorption of La(III), Nd(III) and Yb(III) ions (C = 100 mg·L−1; T = 300 K; pH = 5; m = 0.05 g; V = 100 mL).
Kinetics parameters of the pseudo-first order rate equation (PFORE) and the pseudo-second order rate equation (PSORE) for the sorption of La(III), Nd(III) and Yb(III) metal ions using cysteine-based magnetic-chitosan nanoparticles (T: 27 °C; pH: 5).
| Metal ion | PFORE | PSORE | |||||
|---|---|---|---|---|---|---|---|
| La(III) | 13.3 | 1.04 | 6.37 | 0.960 | 4.2 | 13.68 | 0.995 |
| Nd(III) | 14.8 | 1.15 | 7.75 | 0.984 | 3.7 | 15.27 | 0.996 |
| Yb(III) | 16.8 | 1.13 | 8.64 | 0.990 | 3.1 | 17.33 | 0.996 |
Kinetics parameters of the Elovich and intraparticle diffusion models for the sorption of La(III), Nd(III) and Yb(III) metal ions using cysteine-based magnetic-chitosan nanoparticles (T: 27 °C; pH: 5).
| Metal ion | Intraparticle diffusion | Elovich equation | ||||
|---|---|---|---|---|---|---|
| La(III) | 4.26 | 0.56 | 0.832 | 1.75 | 2.90 | 0.979 |
| Nd(III) | 4.49 | 0.64 | 0.850 | 2.07 | 2.64 | 0.988 |
| Yb(III) | 5.02 | 0.86 | 0.855 | 2.36 | 2.86 | 0.991 |
Figure 8Adsorption isotherms for La(III), Nd(III) and Yb(III) ions at different temperatures. (t = 4 h; T = 300 K; pH = 5; m = 0.05 g; V = 20 mL).
Parameters of the Langmuir and Freundlich equations for the sorption of La(III), Nd(III) and Yb(III) metal ions using cysteine-based magnetic-chitosan nanoparticles at different temperatures.
| Metal ion | Langmuir model | Freundlich model | ||||||
|---|---|---|---|---|---|---|---|---|
| La(III) | 300 | 15.0 | 16.0 | 0.071 | 0.997 | 0.20 | 5.27 | 0.921 |
| 310 | 16.2 | 17.1 | 0.079 | 0.998 | 0.20 | 5.84 | 0.953 | |
| 320 | 17.0 | 17.9 | 0.086 | 0.998 | 0.19 | 6.46 | 0.971 | |
| Nd(III) | 300 | 15.3 | 16.0 | 0.106 | 0.999 | 0.19 | 5.92 | 0.934 |
| 310 | 16.3 | 16.8 | 0.131 | 0.999 | 0.180 | 6.64 | 0.918 | |
| 320 | 17.1 | 17.6 | 0.144 | 0.999 | 0.17 | 7.17 | 0.920 | |
| Yb(III) | 300 | 17.8 | 18.7 | 0.086 | 0.998 | 0.21 | 6.00 | 0.890 |
| 310 | 18.1 | 18.9 | 0.120 | 0.998 | 0.18 | 7.40 | 0.871 | |
| 320 | 18.4 | 19.3 | 0.154 | 0.999 | 0.16 | 8.20 | 0.913 | |
Parameters of the Dubinin–Radushkevich (D–R) and Temkin equations for the sorption of La(III), Nd(III) and Yb(III) metal ions using cysteine-based magnetic-chitosan nanoparticles at different temperatures.
| Metal ion | D–R Isotherm model | Temkin model | ||||||
|---|---|---|---|---|---|---|---|---|
| La(III) | 300 | 15.0 | 0.8 | 0.079 | 0.994 | 3.94 | 2.25 | 0.914 |
| 310 | 16.2 | 0.6 | 0.091 | 0.939 | 5.00 | 2.35 | 0.945 | |
| 320 | 17.0 | 0.5 | 0.100 | 0.944 | 7.18 | 2.34 | 0.962 | |
| Nd(III) | 300 | 15.3 | 1.0 | 0.071 | 0.968 | 6.67 | 2.19 | 0.948 |
| 310 | 16.3 | 0.7 | 0.085 | 0.973 | 10.45 | 2.20 | 0.950 | |
| 320 | 17.1 | 0.5 | 0.100 | 0.981 | 13.62 | 2.23 | 0.955 | |
| Yb(III) | 300 | 17.8 | 0.6 | 0.091 | 0.997 | 3.36 | 2.79 | 0.902 |
| 310 | 18.1 | 0.4 | 0.112 | 0.997 | 10.41 | 2.44 | 0.876 | |
| 320 | 18.4 | 0.2 | 0.158 | 0.994 | 20.52 | 2.28 | 0.918 | |
Thermodynamic parameters for the sorption of La(III), Nd(III) and Yb(III) metal ions using cysteine-based magnetic-chitosan nano-based particles at different temperatures.
| Metal ion | ∆H° (kJ·mol−1) | ∆S° (kJ·mol−1) | ∆G° (kJ·mol−1) | |||
|---|---|---|---|---|---|---|
| La(III) | 300 | 7.85 | 0.103 | −22.94 | 30.8 | 0.998 |
| 310 | −23.97 | 31.8 | ||||
| 320 | −24.99 | 32.8 | ||||
| Nd(III) | 300 | 12.04 | 0.120 | −24.01 | 36.1 | 0.957 |
| 310 | −25.29 | 37.3 | ||||
| 320 | −26.49 | 38.5 | ||||
| Yb(III) | 300 | 23.43 | 0.158 | −23.99 | 47.4 | 0.995 |
| 310 | −25.57 | 49.0 | ||||
| 320 | −27.15 | 50.6 |
Figure 9Van’t Hoff plots of ln K against 1/T, for sorption of metal (III) ions.
Comparison of the La(III), Nd(III) and Yb(III) sorption properties of different sorbents with cysteine-functionalized chitosan magnetic nano-based particles (CFCMNBP).
| Sorbent | Metal | pH range | Reference | |
|---|---|---|---|---|
| Tangerine peel | La(III) | 5 | 155 | [ |
| La(III) | 5 | 74–100 | [ | |
| Magnetic alginate beads | La(III) | 2.8 | 97 | [ |
| La(III) | 4 | 29 | [ | |
| Lewatit resins | La(III) | 1.5–5 | 100–120 | [ |
| Chelating ion-exchange resin | La(III) | HCl/HNO3 | 188–240 | [ |
| Functionalized Amberlite XAD-4 resin | La(III) | 6.1 | 49 | [ |
| CFCMNBP | La(III) | 6 | 17 | This work |
| EDTA:DTPA functionalized chitosan | Nd(III) | 3–6 | 55 | [ |
| Phosphonic acid functionalized silica microspheres | Nd(III) | 2.8 | 45 | [ |
| Ion imprinted polymer particles | Nd(III) | 7.5 | 33 | [ |
| Phosphorus functionalized adsorbent | Nd(III) | 6 | 160 | [ |
| Yeast cells | Nd(III) | 1.5 | 10–12 | [ |
| Mordenite containing tuff | Nd(III) | 5.5–6.5 | 13 | [ |
| CFCMNBP | Nd(III) | 6 | 17 | This work |
| Yb(III) | 5 | 160 | [ | |
| Yb(III) | 4.9 | 34 | [ | |
| Yb(III) | 6–7 | 56 | [ | |
| Imino-diacetic acid resin | Yb(III) | 5.1 | 187 | [ |
| Gel-type weak acid resin | Yb(III) | 5.5 | 266 | [ |
| CFCMNBP | Yb(III) | 6 | 18 | This work |
Recycling of cysteine-based magnetic-chitosan nano-based particles for the sorption of La(III), Nd(III) and Yb(III) metal ions over four cycles.
| Cycle | La(III) | Nd(III) | Yb(III) | |||
|---|---|---|---|---|---|---|
| Ads. (%) | Ads. (%) | Ads. (%) | ||||
| Cycle I | 12.9 | 100.0 | 14.4 | 100.0 | 16.2 | 100.0 |
| Cycle II | 12.7 | 98.2 | 14.2 | 98.1 | 15.4 | 95.2 |
| Cycle III | 12.6 | 97.5 | 14.1 | 97.5 | 15.3 | 94.3 |
| Cycle IV | 12.6 | 97.1 | 14.0 | 96.9 | 15.2 | 93.8 |