| Literature DB >> 24570846 |
Carlos A Rey-Mafull1, Juan E Tacoronte2, Raquel Garcia3, Jorge Tobella4, Julio C Llópiz5, Alberto Iglesias6, Dachamir Hotza7.
Abstract
Samples of commercial activated carbons (AC) obtained from different sources: Norit E Supra USP, Norit B Test EUR, and ML (Baracoa, Cuba) were investigated. The adsorption of acetaminophen, Co = 2500 mg/L, occured in simulated gastric fluid (SGF) at pH 1.2 in contact with activated carbon for 4 h at 310 K in water bath with stirring. Residual acetaminophen was monitored by UV visible. The results were converted to scale adsorption isotherms using alternative models: Langmuir TI and TII, Freundlich, Dubinin-Radushkevich (DR) and Temkin. Linearized forms of the characteristic parameters were obtained in each case. The models that best fit the experimental data were Langmuir TI and Temkin with R(2) ≥0.98. The regression best fits followed the sequence: Langmuir TI = Temkin > DR > LangmuirTII > Freundlich. The microporosity determined by adsorption of CO2 at 273 K with a single term DR regression presented R(2) > 0.98. The adsorption of acetaminophen may occur in specific sites and also in the basal region. It was determined that the adsorption process of acetaminophen on AC in SGF is spontaneous (ΔG <0) and exothermic (-ΔHads.). Moreover, the area occupied by the acetaminophen molecule was calculated with a relative error from 7.8 to 50%.Entities:
Keywords: Acetaminophen; Activated carbon; Adsorption; Isotherms; Simulated gastric fluid
Year: 2014 PMID: 24570846 PMCID: PMC3930802 DOI: 10.1186/2193-1801-3-48
Source DB: PubMed Journal: Springerplus ISSN: 2193-1801
Figure 1UV-visible spectrum of acetaminophen in SGF at pH 1.2.
Isotherms and their linearized expressions
| Isotherms | Expressions | Linear expressions | Plots |
|---|---|---|---|
| Langmuir |
|
|
|
| ΔG = − RTln [KL] |
|
| |
| Freundlich |
| lnqe = lnKF + n− 1lnCe | lnqevslnCe |
| Dubinin-Radushkevih (DR |
| lnqe = lnqmax − Dϵ2 | lnqevs |
|
| |||
|
| |||
| Temkin |
| qe = BlnKTK + BlnCe | qevslnCe |
|
|
Textural characterization by adsorption of CO at 273 K
| Adsorbent |
|
|
|
|
| R2 |
|---|---|---|---|---|---|---|
| Norit E Supra USP (NE) | 5.64 | 6.17 | 1.61 | 3.11 | 0.31 | 0.98 |
| Norit B Test EUR (NB) | 14.15 | 8.28 | 1.37 | 2.64 | 0.68 | 0.99 |
| Baracoa, Cuba (ML) | 5.65 | 7.87 | 1.44 | 2.78 | 0.39 | 0.99 |
Figure 2FTIR spectra for activated carbons.
Figure 3Experimental data of adsorption isotherms profile of acetaminophen in SGF, NB (■) NE (♦) ML (▲).
Characteristic parameters of models
| Activated carbon | Langmuir | Freundlich | Dubinin-Radushkevich | Temkin | ||||||
|---|---|---|---|---|---|---|---|---|---|---|
| TI | TII | |||||||||
| Parameters | R2 | Parameters | R2 | Parameters | R2 | Parameters | R2 | Parameters | R2 | |
| qm = 840 | 0.99 | qm = 1315.8 | 0.99 | KF = 685 | 0.96 | qmax = 685 | 0.99 | b = 17.5 | 0.99 | |
| NB | KLI = 3.6 | KLII = 2 | n = 1.6 | D = 0.018 | KTK = 82 | |||||
| qm = 555 | 0.99 | qm = 356 | 0.89 | KF = 503 | 0.98 | qmax = 458 | 0.98 | b = 29.6 | 0.98 | |
| NE | KLI = 6 | KLII = 19 | n = 1.9 | D = 0.016 | KTK = 202 | |||||
| qm = 769 | 0.99 | qm = 1462 | 0.95 | KF = 605 | 0.88 | qmax = 632 | 0.96 | b = 7.2 | 0.99 | |
| ML | KLI = 3.3 | KLII = 1 | n = 1.7 | D = 0.04 | KTK = 27 | |||||
Free energy change Gibbs calculated by the Langmuir and Temkin equations and characteristic energy calculated by the Dubinin Radushkevich’s equation
| Parameters | Models | NE | NB | ML |
|---|---|---|---|---|
| ΔG (kJ/mol) | Langmuir (TI) | − 4.6 | − 3.3 | − 3.25 |
| ΔG (kJ/mol) | Temkin | −13.7 | −11.4 | −8.5 |
| E (kJ/mol) | Dubinin-Radushkevich | 5 | 5 | 4.8 |
Figure 4Adsorption isotherms adjusted in Langmuir’s TI coordinate NB (■) NE (♦) ML (▲).
Figure 5Adsorption isotherms adjusted in Langmuir’s TII coordinate NB (■) NE (♦) ML (▲).
Figure 6Adsorption isotherms adjusted in Freundlich’s coordinate NB (■) NE (♦) ML (▲).
Figure 7Adsorption isotherms adjusted in Dubinin-Radushkevich`s coordinate NB (■) NE (♦) ML (▲).
Figure 8Adsorption isotherms adjusted in Temkin’s coordinate NB (■) NE (♦) ML (▲).
Figure 9Characteristic curves for the adsorption of acetaminophen dissolved in SGF (pH 1.2, T = 310 K) NB (■) NE (♦) ML (▲).
Estimated calculation of the value of specific surface area for acetaminophen molecule taking as reference the value 60.2 Å proposed by Terzyk et al. (2012)
| Langmuir | Dubinin-Radushkevich | Freundlich | ||||
|---|---|---|---|---|---|---|
| Adsorbent | m.c.s.a (Å2) | Relative error (%) | m.c.s.a (Å2) | Relative error (%) | m.c.s.a (Å2) | Relative error (%) |
| NB | 42.7 | 20 | 55.5 | 7.8 | 52 | 14 |
| NE | 39.3 | 35 | 47.6 | 21 | 43.4 | 28 |
| ML | 23.5 | 62 | 28.3 | 50 | 29.8 | 50 |