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Title: | Synthesis and characterization of natural adsorbents derived of chitosan, ecuadorian clay and diatomite for Ni 2+ removal from aqueous media |
Authors: | Bastardo González, Ernesto Luis Carrera Marmolejo, Clara Johana |
Keywords: | Montmorillonite Quitosano Adsorción Isoterma de Langmuir Chitosan Adsorption Langmuir isotherm model |
Issue Date: | Jul-2020 |
Publisher: | Universidad de Investigación de Tecnología Experimetal Yachay |
Abstract: | Se prepararon adsorbentes para la eliminación efectiva de Ni2+ de sistemas acuosos por dispersión de quitosano en materiales locales (arcilla montmorillonita y tierras diatomeas). Los adsorbentes se sintetizaron en forma esférica usando el método de gota a gota, y fueron denotados arcilla montmorillonita natural (M), tierras diatomeas (D) y sus compositos con quitosano: arcilla de montmorillonita / quitosano (CM), tierra de diatomeas / quitosano (CD) y arcilla de montmorillonita / tierra de diatomeas / quitosano. (CMD). La composición química de los adsorbentes, la morfología de la microestructura y estructura cristalina se investigaron mediante diferentes técnicas de caracterización: espectroscopía de rayos X dispersiva (EDS), microscopía electrónica de barrido (SEM), difracción de rayos X, espectroscopía infrarroja (IR) y propiedades de textura por el modelo de Brunauer-Emmett-Teller (BET). Técnicas de adsorción Batch fueron desarrolladas para evaluar la idoneidad de los adsorbentes sintetizados y para examinar el impacto de los parámetros como el pH de la solución, la concentración inicial de metal y el tiempo de contacto en la adsorción de Ni2+. En condiciones óptimas, las capacidades máximas de adsorción de los adsorbentes basados en el modelo de isoterma de Langmuir fueron 5.82, 1.66, 5.95, 8.64 y 6.95 mg/g para M, D, CM, CD y CMD, respectivamente. |
Description: | Adsorbents for an effective removal of Ni2+ from aqueous systems were prepared by dispersion of chitosan onto local natural materials (montmorillonite clay and diatomaceous earth). The adsorbents were synthesized into a spherical shape using the dropwise method, and they were denoted as natural montmorillonite clay (M), diatomaceous earth (D) and its composites with chitosan: montmorillonite clay/chitosan (CM), diatomaceous earth/chitosan (CD) and montmorillonite clay/diatomaceous earth/chitosan (CMD). Adsorbent’s chemical composition, microstructure morphology, and crystalline structure were investigated by different characterization techniques: dispersive X-ray spectroscopy (EDS), scanning electron microscopy (SEM), X-ray diffraction, infrared spectroscopy (IR), and textural properties by the Brunauer-Emmett-Teller model. Batch adsorption studies were developed to evaluate the potential suitability of the adsorbents and to examine the impact of adsorption parameters such as solution-pH, initial metal concentration, and contact time on the Ni2+ adsorption. Under optimal conditions, the maximal adsorption capacities of adsorbents based on the Langmuir isotherm model were 5.82, 1.66, 5.95, 8.64 and 6.95 mg/g for M, D, CM, CD and CMD, respectively. |
URI: | http://repositorio.yachaytech.edu.ec/handle/123456789/217 |
Appears in Collections: | Química |
Files in This Item:
File | Description | Size | Format | |
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ECQI0044.pdf | 2.76 MB | Adobe PDF | View/Open |
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