4.7 Article

Adsorption of naproxen pharmaceutical micropollutant from aqueous solutions on superior activated carbon synthesized from sheep manure: Kinetics, thermodynamics, and mechanism

期刊

JOURNAL OF MOLECULAR LIQUIDS
卷 381, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.molliq.2023.121839

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Chemical activation; Isotherm; Kinetic; Pharmaceuticals; Sustainability; Thermodynamics

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The research investigated the performance of a new method for synthesizing super activated carbon from sheep manure in the adsorption of the naproxen micropollutant. Chemical activation with ZnCl2 as an activator was used to produce activated carbon, with various parameters such as impregnation rate, activation temperature, and duration examined. Characterization of the produced activated carbons was done using FTIR, SEM, and BET measurements, with a surface area of 2170 m2 g-1 determined. The adsorption of naproxen was found to be influenced by solution pH, initial concentration, and the amount of activated carbon.
The performance of a new method for synthesizing super activated carbon derived from sheep manure in the adsorption of naproxen micropollutant from an aqueous solution was investigated in this research. Chemical activation employing ZnCl2 as an activator was used to produce activated carbon. The effects of several pa-rameters such as the rate of impregnation, temperature of activation, and duration of activation on the synthesis of activated carbon were examined. FTIR, SEM, and BET measurements were used to characterize the produced activated carbons. The surface area of the manufactured activated carbon was determined to be 2170 m2 g-1. On naproxen adsorption, the effects of solution initial pH, solution initial concentration, and amount of activated carbon were examined. When the pH of the solution was 4, the adsorption capacity was found to be greater. The pseudo-second order kinetic model was found to fit the adsorption kinetics. The data on adsorption equilibrium was found to be consistent with the Langmuir and Freundlich isotherm. According to Langmuir isotherm adsorbent capacity qm was found 7790 mg g-1. Delta G0, Delta S0, and Delta H0, among other thermodynamic parameters, were estimated. The thermodynamics of the naproxen-Activated Carbon combination show that the reaction is endothermic and favourable. This high surface area and adsorption capacity showed that the material is inno-vatively important.

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