Kinetics, Thermodynamics, and Competitive Adsorption of Heavy Metals from Water Using Orange Biomass
| Audiencia | Público en general | es_ES |
| Cobertura | México | es_ES |
| Fecha de ingreso | 2026-09-15T00:30:38Z | |
| Fecha de publicación | 2018-12-01 | |
| Resumen | ABSTRACT Adsorption of heavy metals on modified orange biomass has been studied. This biomass was treated with NaOH and CaCl 2 to improve its adsorption properties. Kinetic and thermodynamic studies of the adsorption of Cd 2+ , Ni 2+ , Cu 2+ , and Zn 2+ were performed at different operating conditions, including competitive adsorption studies with binary metallic mixtures. Results show that this adsorption process was endothermic where an ion exchange mechanism played a relevant role. Adsorbent effectiveness decreased in binary solutions, indicating a strong antagonistic adsorption behavior caused by counter‐ions. This antagonistic adsorption was highly dependent on the counter‐ion type and its concentration. Multicomponent adsorption of Cu 2+ ions was not significantly affected by the presence of other metallic counter‐ions, whereas the adsorption of Ni 2+ could be totally suppressed by the other ions. The modeling of binary adsorption isotherms was successful using the modified Langmuir equation, which outperformed the Ideal Absorbed Solution Theory‐Sips and modified Redlich‐Peterson models. | es_ES |
| Doi | https://doi.org/10.2175/106143017x15131012188321 | es_ES |
| URI | https://riuat.uat.edu.mx/handle/123456789/2611 | |
| Idioma | en | es_ES |
| Editorial | Wiley | es_ES |
| Relación | Water Environment Research | es_ES |
| URL relacionado | https://doi.org/10.2175/106143017x15131012188321 | es_ES |
| Derechos | Acceso restringido / Suscripción (Metadatos de producción científica) | es_ES |
| Licencia | http://purl.org/coar/access_right/c_16ec | es_ES |
| Fuente | Water Environment Research | |
| Palabra clave | Adsorption | es_ES |
| Palabra clave | Endothermic process | es_ES |
| Palabra clave | Chemistry | es_ES |
| Palabra clave | Metal ions in aqueous solution | es_ES |
| Palabra clave | Metal | es_ES |
| Palabra clave | Langmuir adsorption model | es_ES |
| Palabra clave | Thermodynamics | es_ES |
| Palabra clave | Ion | es_ES |
| Palabra clave | Inorganic chemistry | es_ES |
| Palabra clave | Kinetics | es_ES |
| Palabra clave | Ion exchange | es_ES |
| Palabra clave | Binary system | es_ES |
| Clasificación | Adsorption and biosorption for pollutant removal | es_ES |
| Título | Kinetics, Thermodynamics, and Competitive Adsorption of Heavy Metals from Water Using Orange Biomass | es_ES |
| Tipo | Artículo | es_ES |
| Arbitrado | Ha sido Arbitrado | es_ES |
| Autor | Sandoval-Flores, Gloria | |
| Autor | Alvarado-Reyna, Sofía | |
| Autor | Elvir-Padilla, Laura Gabriela | |
| Autor | Mendoza‐Castillo, Didilia Ileana | |
| Autor | Reynel‐Ávila, Hilda Elizabeth | |
| Autor | Bonilla‐Petriciolet, Adrián | |
| Autor | Sandoval-Flores, Gloria | es_ES |
| Autor | Alvarado-Reyna, Sofía | es_ES |
| Autor | Elvir-Padilla, Laura Gabriela | es_ES |
| Autor | Mendoza‐Castillo, Didilia Ileana | es_ES |
| Autor | Reynel‐Ávila, Hilda Elizabeth | es_ES |
| Autor | Bonilla‐Petriciolet, Adrián | es_ES |
| Institución | Universidad Autónoma de Tamaulipas | |
| Institución | Universidad Autónoma de Tamaulipas | es_ES |
| Número | 12 | es_ES |
| Rango de páginas | 2114-2125 | es_ES |
| URL relacionada | https://doi.org/10.2175/106143017x15131012188321 | |
| Tipo de artículo | Indexado | |
| Tipo de artículo | Indexado | es_ES |
| Volumen | 90 | es_ES |
