Models, Kinetics, and Thermodynamics for The Adsorption of Ni2 + Metal Ions by Solid Tofu Waste Immobilized on Silica’s Surface
| Dublin Core | PKP Metadata Items | Metadata for this Document | |
| 1. | Title | Title of document | Models, Kinetics, and Thermodynamics for The Adsorption of Ni2 + Metal Ions by Solid Tofu Waste Immobilized on Silica’s Surface |
| 2. | Creator | Author's name, affiliation, country | Handoko Darmokoesoemo, Eko Prasetyo Kuncoro, Ganden Supriyanto, Yosephine Sri Wulan Manuhara; Handoko Darmokoesoemo, Eko Prasetyo Kuncoro, Ganden Supriyanto, Yosephine Sri Wulan Manuhara; Morocco |
| 3. | Subject | Discipline(s) | |
| 3. | Subject | Keyword(s) | adsorption; model; kinetics; thermodynamics |
| 4. | Description | Abstract | This research aimed to study the models, kinetics, and thermodynamics for the adsorption of Ni2+ metal ions by solid tofu waste immobilized on silica surface. The isothermal adsorption model developed in this study revealed that a temperature of 27oC was required for the adsorption of Ni2+ metal ions in a batch system with pH = 6. Absorption model of Ni2+ ion followed BiLangmuir Model. The real adsorption capacity was between 0.478 mg/L to 4.750 mg/L. The Gibbs free energy for Ni2+ ions adsorption was 2159.57 J/mol within the initial concentration range of about 5,10,20 and 30 ppm and -7769.27 J/mol in the initial concentration range about 40 and 50 ppm. The order of the adsorption kinetics for Ni2+ ions were second order for a concentration range of about 5-50 ppm. The thermodynamic study of adsorption carried out at temperature variations (from 30 to 60oC) was used to determine the average enthalpy adsorption values for Ni2+ ions (111.092 KJ/mol). While the pH of zero charge potential (pHPCZ of adsorbent was 8.40) and the optimum pH for the adsorption of Ni2+ ion is 6. |
| 5. | Publisher | Organizing agency, location | |
| 6. | Contributor | Sponsor(s) | |
| 7. | Date | (YYYY-MM-DD) | 09-01-2020 |
| 8. | Type | Status & genre | Peer-reviewed Article |
| 8. | Type | Type | |
| 9. | Format | File format | |
| 10. | Identifier | Uniform Resource Identifier | https://revues.imist.ma/index.php/morjchem/article/view/19128 |
| 10. | Identifier | Digital Object Identifier (DOI) | https://doi.org/10.48317/IMIST.PRSM/morjchem-v8i1.19128 |
| 11. | Source | Title; vol., no. (year) | Moroccan Journal of Chemistry; Special Volume 8 S1 (2020) : The 1st International Conference on Science, Applied Science, (ICoSASTE) 2019 |
| 12. | Language | English=en | en |
| 13. | Relation | Supp. Files | |
| 14. | Coverage | Geo-spatial location, chronological period, research sample (gender, age, etc.) | |
| 15. | Rights | Copyright and permissions |
Copyright (c) 2020 Moroccan Journal of Chemistry |