| Literature DB >> 35744117 |
Haijie He1,2,3, Kuan Chai2,4, Tao Wu5,6, Zhanhong Qiu2, Shifang Wang2,7, Jie Hong2.
Abstract
Organic dye rhodamine B is one of the common organic pollutants in the water and soil environment. This study investigated the feasibility of removing rhodamine B from an aqueous solution through adsorption by kaolin, kaolin-sodium bentonite, and kaolin-organic bentonite. Batch adsorption test results showed that the maximum adsorption quantities of kaolin, kaolin-sodium bentonite, and kaolin-organic bentonite were 7.76 mg/g, 11.26 mg/g, and 12.68 mg/g, respectively, implying that the addition of bentonite to kaolin can effectively improve its adsorption capacity for rhodamine B. Moreover, the Langmuir isotherm model is suitable to describe the adsorption of rhodamine B by kaolin and kaolin-sodium bentonite, while it is preferable to use the Freundlich isotherm model in the case of kaolin-organic bentonite. The adsorption kinetic characteristics of rhodamine B, by these three adsorbents, are suitable to be described with a pseudo-second order kinetic model. Furthermore, the characteristics of the above three adsorbents were characterized by scanning electron microscopy (SEM), X-ray diffraction (XRD), and Fourier transform infrared spectroscopy (FTIR). The above results indicated that kaolin and organic bentonite can be used to design efficient adsorbents for organic pollutants similar to rhodamine B.Entities:
Keywords: adsorption; characterization; dye; isotherm; kinetics
Year: 2022 PMID: 35744117 PMCID: PMC9227572 DOI: 10.3390/ma15124058
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.748
Batch adsorption test scheme.
| Adsorbent | Rhodamine B Solution Concentration (mg/L) | Adsorption Time (min) | Adsorption Temperature (℃) | pH Value | Adsorbent |
|---|---|---|---|---|---|
| kaolin, kaolin-sodium bentonite, kaolin-organic bentonite | 50, 100, 150, 200, 250, 300, 350, 400 | 360 | 25 | 9.1 | 0.25 |
| kaolin, kaolin-sodium bentonite, kaolin-organic bentonite | 50, 100, 150, 200 | 10, 20, 45, 90, 180, 360 | 25 | 9.1 | 0.25 |
| kaolin, kaolin-sodium bentonite, kaolin-organic bentonite | 50 | 360 | 20, 30, 40, 50, 60 | 9.1 | 0.25 |
| kaolin-organic bentonite | 50 | 360 | 25 | 2.0, 2.6, 3.0, 4.7, 7.2, 9.1, 10.2, 11.8 | 0.25 |
| kaolin-organic bentonite | 50 | 360 | 25 | 9.1 | 0.25, 0.5, 1.0, 1.5, 2.0, 2.5, 3.0 |
Figure 1SEM images of different adsorbents: (a) kaolin; (b) kaolin-sodium bentonite; (c) kaolin-organic bentonite.
Figure 2XRD patterns of the three adsorbents.
Figure 3FTIR spectra of the three adsorbents.
Figure 4Variation of adsorption amounts of different adsorbents for the rhodamine B solution, with an initial concentration of 200 mg/L versus adsorption time.
Figure 5Effect of initial concentration of rhodamine B solution on removal of rhodamine B by different adsorbents.
Figure 6Effect of temperature on the removal of rhodamine B by different adsorbents.
Figure 7Variation of the removal rate of kaolin-organic bentonite for 50 mg/L rhodamine B with adsorbent dosage.
Figure 8Variation of the removal rate of kaolin-organic bentonite, for 50 mg/L rhodamine B with adsorbent pH.
Figure 9Adsorption isotherms of rhodamine B by different adsorbents: (a) Langmuir equation, (b) Freundlich equation.
Adsorption isotherm parameters.
| Adsorption Isotherm Equation | Parameter | Kaolin | Kaolin-Sodium Bentonite | Kaolin-Organic Bentonite |
|---|---|---|---|---|
| Langmuir | 8.23477 | 11.96847 | 13.31723 | |
| 0.01522 | 0.03542 | 0.05512 | ||
| R2 | 0.88 | 0.97452 | 0.945 | |
| Freundlich | 0.60793 | 1.30457 | 1.77013 | |
|
| 2.26767 | 2.32162 | 2.35557 | |
| R2 | 0.77507 | 0.87509 | 0.97686 |
Figure 10Adsorption kinetics of rhodamine B by different adsorbents: (a) pseudo-first order kinetic model; (b) pseudo-second order kinetic model.
Kinetic fitting of rhodamine B adsorption by different adsorbents.
| Adsorbent Concentration (mg/L) | 50 | |||
|---|---|---|---|---|
| Adsorbent Type | Kaolin | Kaolin-Sodium | Kaolin-Organic | |
| Pseudo-first order kinetic equation | 5.1152 | 6.57354 | 6.90133 | |
|
| 0.26364 | 0.15821 | 0.30208 | |
| R2 | 0.83987 | 0.84537 | 0.80484 | |
| Pseudo-second order kinetic equation | 5.1649 | 7.02359 | 6.82869 | |
|
| 0.20192 | 0.04874 | 0.22165 | |
| R2 | 0.99994 | 0.98391 | 0.99967 | |
Figure 11Plots of ln Kd versus 1/T for the three adsorbents.
Thermodynamic parameters for the adsorption of rhodamine B by the three adsorbents.
| Temperature/(℃) | 20 | 30 | 40 | 50 | 60 | |
|---|---|---|---|---|---|---|
| Kaolin | Δ | 5.780 | ||||
| Δ | 0.053 | |||||
| Δ | −9.700 | −10.340 | −11.090 | −11.450 | −11.810 | |
| R2 | 0.970 | |||||
| Kaolin-sodium bentonite | Δ | 4.990 | ||||
| Δ | 0.053 | |||||
| Δ | −10.680 | −11.400 | −12.040 | −12.460 | −12.840 | |
| R2 | 0.872 | |||||
| Kaolin-organic bentonite | Δ | 4.060 | ||||
| Δ | 0.051 | |||||
| Δ | −10.980 | −11.550 | −12.210 | −12.620 | −13.030 | |
| R2 | 0.906 | |||||