| Literature DB >> 35209138 |
Branka Vojnović1, Mario Cetina1, Petra Franjković1, Ana Sutlović2.
Abstract
The aim of this work was to investigate the influence of initial pH value (pH0) on the isothermal adsorption of Reactive Black 5 (RB5) dye on commercial powdered activated carbon. Four initial pH values were chosen for this experiment: pH0 = 2.00, 4.00, 8.00, and 10.00. In order to investigate the mechanism of adsorption kinetic, studies have been performed using pseudo-first-order and pseudo-second-order kinetic models as well as an intraparticle diffusion model. In addition, thermodynamic parameters of adsorption were determined for pH0 = 4.00. Results of this research showed that the initial pH value significantly influences the adsorption of RB5 dye onto activated carbon. The highest adsorption capacities (qe) and efficiencies of decolouration were observed for initial pH values of pH0 = 2.00 (qe = 246.0 mg g-1) and 10.00 (qe = 239.1 mg g-1) due to strong electrostatic interactions and attractive π···π interactions, respectively. It was also shown that the adsorption of RB5 dye on activated carbon at all initial pH values is kinetically controlled, assuming a pseudo-second-order model, and that intraparticle diffusion is not the only process that influences on the adsorption rate.Entities:
Keywords: Reactive Black 5; activated carbon; adsorption; kinetics; thermodynamics
Year: 2022 PMID: 35209138 PMCID: PMC8875830 DOI: 10.3390/molecules27041349
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Amount of adsorbed Reactive Black 5 (RB5) dye (q) at time t for different initial pH values.
| pH0 = 2.00 | pH0 = 4.00 | pH0 = 8.00 | pH0 = 10.00 | |
|---|---|---|---|---|
| 15 | 117.1 | 65.5 | 70.5 | 111.0 |
| 30 | 132.0 | 86.0 | 84.7 | 116.4 |
| 60 | 155.9 | 98.5 | 99.0 | 126.7 |
| 120 | 177.9 | 115.8 | 128.5 | 161.7 |
| 960 | 246.0 | 193.0 | 194.9 | 239.1 |
Figure 1Effect of initial pH values on the RB5 dye concentration in the liquid phase (c) after appropriate time of adsorption (t) (◇ pH0 = 2.00; ☐ pH0 = 4.00; O pH0 = 8.00; △ pH0 = 10.00).
Efficiency of decolouration (E) after appropriate time of adsorption (t) for different initial pH0 values.
| pH0 = 2.00 | pH0 = 4.00 | pH0 = 8.00 | pH0 = 10.00 | pH0 = 4.83 [ | |
|---|---|---|---|---|---|
| 15 | 46.8 | 26.2 | 28.2 | 44.4 | -- a |
| 30 | 52.8 | 34.4 | 33.9 | 46.5 | 33.4 |
| 60 | 62.3 | 39.4 | 39.6 | 50.7 | 40.3 |
| 120 | 71.1 | 46.3 | 51.4 | 64.7 | 52.8 |
| 960 | 98.4 | 77.2 | 78.0 | 95.6 | 76.3 |
a adsorption experiment was not performed.
Scheme 1Schematic representation of some interactions between activated carbon (AC) and RB5 anion: (a) electrostatic interaction between positively charged protonated hydroxyl group of AC and negatively charged sulfonic RB5 group, (b) O–H⋅⋅⋅O hydrogen bonding between carboxyl group of AC and sulfonyl group of RB5, (c) N–H⋅⋅⋅O hydrogen bonding between amino group of RB5 and carbonyl group of AC, (d) π⋅⋅⋅π interaction between naphthalene ring of RB5 and graphene layers of AC.
Figure 2pH profiles of RB5 dye after adsorption for four initial pH values after appropriate time of adsorption (t) (◇ pH0 = 2.00; ☐ pH0 = 4.00; O pH0 = 8.00; △ pH0 = 10.00.
Figure 3Chemical structure of Reactive Black 5 dye.
Kinetic parameters for RB5 dye adsorption on activated carbon for different initial pH values.
| pH0 | Pseudo-First-Order Model | Pseudo-Second-Order | ||||||
|---|---|---|---|---|---|---|---|---|
|
|
| |||||||
| 2.00 | 246.0 | 136.6 | 0.9798 | 0.0060 | 256.4 | 0.9990 |
| 7.69 |
| 4.00 | 193.0 | 127.9 | 0.9388 | 0.0044 | 204.1 | 0.9968 |
| 3.64 |
| 8.00 | 194.9 | 134.3 | 0.9962 | 0.0058 | 204.1 | 0.9982 |
| 4.02 |
| 10.00 | 239.1 | 142.2 | 0.9696 | 0.0049 | 250.0 | 0.9979 |
| 5.76 |
Figure 4Root time plot for the adsorption of RB5 on activated carbon for four initial pH values (◇ pH0 = 2.00; ☐ pH0 = 4.00; O pH0 = 8.00; △ pH0 = 10.00).
Figure 5J. H. van’t Hoff plot for adsorption of RB5 dye on activated carbon at pH0 = 4.00.
Thermodynamic parameters for the adsorption of RB5 dye on activated carbon for pH0 = 4.00.
|
| ∆ | ∆ | ∆ | ||||
|---|---|---|---|---|---|---|---|
| 302 | 229.3 | 270.7 | 1.1805 | −0.42 | 41.63 | 139.12 | 42.01 |
| 308 | 204.4 | 295.6 | 1.4462 | −0.95 | 42.85 | ||
| 318 | 114.1 | 385.9 | 3.3821 | −3.22 | 44.24 | ||
| 328 | 102.1 | 397.9 | 3.8972 | −3.71 | 45.64 |