| Literature DB >> 32230753 |
Inas A Ahmed1, H S Hussein2, Ahmed H Ragab1, Najlaa S Al-Radadi3.
Abstract
The present investigation is a comparison study of two nanoEntities:
Keywords: adsorption; equilibrium kinetics; nano silica; nano-oxyhydroxide aluminum; nanocomposites; nickel; polyaniline
Mesh:
Substances:
Year: 2020 PMID: 32230753 PMCID: PMC7180808 DOI: 10.3390/molecules25071520
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1FTIR spectra of (a) nano-silica-coated oxyhydroxide aluminum (SCB), (b) Ni-sorbed SCB, (c) nano-silica-coated oxyhydroxide aluminum doped polyaniline (SBDP), (d) Ni-sorbed SBDP nanocomposite.
Figure 2XRD pattern of (a) SCB, (b) SBDP nanocomposite
Figure 3SEM of (A) SCB, (B) Ni-sorbed SCB, (C) SBDP, (D) Ni-sorbed SBDP nanocomposite.
Figure 4EDX of (A) SCB, (B) Ni-sorbed SCB, (C) SBDP, (D) Ni-sorbed SBDP nanocomposite.
Figure 5TEM analysis of the SCB nanocomposite (A) 100 nm view and (B) 200 nm view and the SBDP nanocomposite (C) 100 nm view and (D) 200 nm view.
Figure 6Influences of (A) pH, (B) contact time, and (C) initial Ni concentration, on the adsorption of Ni (II) by 0.3 g/50 mL nanocomposite at a pH of 8 and a contact time of 40 min.
Figure 7The adsorption kinetics: (A) pseudo first-order reaction (PFORE), (B) pseudo second-order reaction (PSORE), (C) Mories–Weber equation for Ni(II) adsorption on SCB and SBDP nanocomposites (sorption time 40 min; sorbent dosage 0.3 g/50 m L, pH = 8).
kinetic modeling with the PFORE, PSORE, and Mories–Weber equations.
| Kinetic Models | Parameter | SCB | SBDP |
|---|---|---|---|
| PFORE | qe, exp(mg g−1) | 160 | 163.8 |
| qe,cal(mg g−1) | 13.5 | 9.2 | |
| Kads(min−1) | 0.0269 | 0.0264 | |
| R2 | 0.9444 | 0.6762 | |
| PSORE | qe, cal(mg g−1) | 163.13 | 165.3 |
| K2(g mg−1 min−1) | 0.0037 | 0.0054 | |
| R2 | 0.9995 | 0.9998 | |
| Mories–Weber | Kd(mg g−1 min0.5) | 0.5299 | 0.7598 |
| R2 | 0.9951 | 0.9885 |
Figure 8Langmuir adsorption for Ni ion removal on (A) SCB nanocomposites and (B) SBDP nanocomposites and Freundlich adsorption for Ni ion removal on (C) SCB nanocomposites and (D) SBDP nanocomposites (sorption time: 40 min; sorbent dosage: 0.3 g/50 mL, pH = 8).
Sorption isotherms.
| Kinetic | Parameter | SCB | SBDP |
|---|---|---|---|
| Langmuir | qe, exp (mg g−1) | 160 | 163.8 |
| qe,cal(mg g−1) | 168.4 | 258.3 | |
| KL(L mg−1) | 0.0232 | 0.0040 | |
| R2 | 0.9981 | 0.9712 | |
| Freundlich | KF(moln− 1 Ln g−1) | 101.5 | 156.8 |
| n | 6.2 | 14.37 | |
| R2 | 0.9884 | 0.5349 | |
| D-R model | E(kJ mol−1) | 0.711 | 0.714 |
| q(D-R) (mg g−1) | 788.3 | 244.6 | |
| R2 | 0.9993 | 0.9992 |
Thermal parameters for the adsorption of 1 g/L of Ni ions by 0.3g/50 mL of nanocomposite at a pH of 8 and a contact time of 40 min.
| Parameter | T (K) | LnKL | ∆Ho (KJ.mol−1) | ∆So (J.mol−1.K−1) | ∆Go (kJ.mol−1) | R2 |
|---|---|---|---|---|---|---|
| Ni+2/SCB | 303 | 7.11 | 8.16 | 85.55 | −17.91 | 0.9998 |
| 313 | 7.3 | −18.99 | ||||
| 323 | 7.4 | −19.87 | ||||
| Ni+2/SBDP | 300 | 8.58 | −83.19 | −202.77 | −21.62 | 0.9968 |
| 313 | 6.77 | −17. 59 | ||||
| 323 | 5.53 | −14.85 |
Cost estimation per kg of the adsorbent (SBDP nanocomposite).
| Raw Material | Amount | Total Price (USD) |
|---|---|---|
| Al-dross powder | 500 g | No cost (waste) |
| Commercial HCl | 3.00 L | 6.20 |
| Sodium silicate | 1.00 L | 0.01 |
| Aniline | 20 g | 0.06 |
| Sodium per sulphate | 10 g | 0.10 |
| Net cost | 6.3 (USD) |
Figure 9Nano-silica-coated oxyhydroxide aluminum (SCB) nanocomposites.
Figure 10Polymerization of aniline hydrochloride to form polyaniline (emeraldine) hydrochloride.
Figure 11Flow chart of the synthesis process.