Research Article

Response Surface Methodology Optimized Eriochrome Black T Dye Removal Using Alumina Beads: Isotherms and Kinetics Studies

Volume: 5 Number: 1 July 9, 2022
EN

Response Surface Methodology Optimized Eriochrome Black T Dye Removal Using Alumina Beads: Isotherms and Kinetics Studies

Abstract

Numerous approaches have been investigated for the development of cheaper and more effective technologies to improve the quality of industrial effluent. However, adsorption has been one of the most simplest and economical remediation technology in the treatment of wastewaters. In this study, commercial alumina beads (Al-beads) were utilized for the adsorption of Eriochrome Black T dye. The adsorption process was optimized using the RSM model by Box-Behnken Design (BBD). From the optimization result, the most influential variables are; the initial dye concentration, the interaction between adsorbent dosage with itself, and that of adsorbent dosage with initial dye concentration. The R2 value of 0.7743 implies that 77.43% on the percent dye removal could be due to the variation in the independent variable. Whereas the Adeq. precision of 6.493, and lack of fit (0.92) implies the model can be used to navigate the design space. Up to 98.28%, dye removal was attained using the Al-beads under the conditions; pH of 12.39, adsorbent dosage (1.25 g), and initial dye concentration (175 ppm). The sorption data indicated that the adsorption process was fitted to Freundlich and Temkin isotherm models, while for the kinetics study, the pseudo-second-order model was the best fit. Furthermore, the adsorption mechanism was found to be governed majorly by intra-particle diffusion with some contribution from external mass transfer diffusion.

Keywords

References

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Details

Primary Language

English

Subjects

Metrology, Applied and Industrial Physics

Journal Section

Research Article

Publication Date

July 9, 2022

Submission Date

March 30, 2022

Acceptance Date

May 25, 2022

Published in Issue

Year 2022 Volume: 5 Number: 1

APA
Bello, A., Hamisu, A., & Alhassan, N. M. (2022). Response Surface Methodology Optimized Eriochrome Black T Dye Removal Using Alumina Beads: Isotherms and Kinetics Studies. Journal of Physical Chemistry and Functional Materials, 5(1), 97-110. https://doi.org/10.54565/jphcfum.1095968
AMA
1.Bello A, Hamisu A, Alhassan NM. Response Surface Methodology Optimized Eriochrome Black T Dye Removal Using Alumina Beads: Isotherms and Kinetics Studies. Journal of Physical Chemistry and Functional Materials. 2022;5(1):97-110. doi:10.54565/jphcfum.1095968
Chicago
Bello, Abdu, Abubakar Hamisu, and Naziru Muhammad Alhassan. 2022. “Response Surface Methodology Optimized Eriochrome Black T Dye Removal Using Alumina Beads: Isotherms and Kinetics Studies”. Journal of Physical Chemistry and Functional Materials 5 (1): 97-110. https://doi.org/10.54565/jphcfum.1095968.
EndNote
Bello A, Hamisu A, Alhassan NM (July 1, 2022) Response Surface Methodology Optimized Eriochrome Black T Dye Removal Using Alumina Beads: Isotherms and Kinetics Studies. Journal of Physical Chemistry and Functional Materials 5 1 97–110.
IEEE
[1]A. Bello, A. Hamisu, and N. M. Alhassan, “Response Surface Methodology Optimized Eriochrome Black T Dye Removal Using Alumina Beads: Isotherms and Kinetics Studies”, Journal of Physical Chemistry and Functional Materials, vol. 5, no. 1, pp. 97–110, July 2022, doi: 10.54565/jphcfum.1095968.
ISNAD
Bello, Abdu - Hamisu, Abubakar - Alhassan, Naziru Muhammad. “Response Surface Methodology Optimized Eriochrome Black T Dye Removal Using Alumina Beads: Isotherms and Kinetics Studies”. Journal of Physical Chemistry and Functional Materials 5/1 (July 1, 2022): 97-110. https://doi.org/10.54565/jphcfum.1095968.
JAMA
1.Bello A, Hamisu A, Alhassan NM. Response Surface Methodology Optimized Eriochrome Black T Dye Removal Using Alumina Beads: Isotherms and Kinetics Studies. Journal of Physical Chemistry and Functional Materials. 2022;5:97–110.
MLA
Bello, Abdu, et al. “Response Surface Methodology Optimized Eriochrome Black T Dye Removal Using Alumina Beads: Isotherms and Kinetics Studies”. Journal of Physical Chemistry and Functional Materials, vol. 5, no. 1, July 2022, pp. 97-110, doi:10.54565/jphcfum.1095968.
Vancouver
1.Abdu Bello, Abubakar Hamisu, Naziru Muhammad Alhassan. Response Surface Methodology Optimized Eriochrome Black T Dye Removal Using Alumina Beads: Isotherms and Kinetics Studies. Journal of Physical Chemistry and Functional Materials. 2022 Jul. 1;5(1):97-110. doi:10.54565/jphcfum.1095968

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