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Magnetic biochar based on furfural residue as an excellent candidate for efficient adsorption of Tetracycline, Bisphenol A, Congo red, and Cr. | LitMetric

AI Article Synopsis

  • - Magnetic porous adsorbents, like the magnetic biochar (M-FRAC) created from furfural residue, are effective for removing various pollutants due to their high surface area and easy separation.
  • - The adsorption properties of M-FRAC were influenced by factors such as pH and pollutant concentration, with optimal adsorption occurring under acidic conditions and specific optimal pH values for each pollutant.
  • - M-FRAC showed significant adsorption capacities for contaminants like Congo red and Tetracycline, with adsorption processes aligning with the Langmuir isotherm model and fitting the pseudo-second-order kinetics, making it promising for industrial wastewater treatment applications.

Article Abstract

Magnetic porous adsorbent materials are widely favored for their large specific surface area, good adsorption performance, and ease of separation. This work provided a magnetic biochar derived from furfural residue (M-FRAC) with excellent adsorption properties for various pollutants, including Congo red (CR), Tetracycline (TC), Bisphenol A (BPA), and Cr. The influence of experimental parameters, such as pollutant concentration, contact time, and pH, on the adsorption properties of M-FRAC was studied in detail. The adsorption process was highly dependent on pH and initial contaminant concentration. All pollutant adsorption was favorable under acidic conditions. The optimal pH of the CR, TC, and Cr adsorption was 5, 4, and 2, respectively, while that of BPA was in the range of 2-5. The experimental equilibrium adsorption amount of CR, TC, BPA, and Cr by M-FRAC was 110.89, 602.81, 157.76, and 265.31 mg/g, respectively. The adsorption processes of pollutants on M-FRAC were in accordance with the Langmuir isotherm model. The adsorption kinetics fitted the pseudo-second-order (PSO) kinetics model. In addition, M-FRAC could be readily separated from solution by applying an external magnetic field. Therefore, the M-FRAC has a good application prospect in practical industrial wastewater treatment.

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Source
http://dx.doi.org/10.1007/s11356-022-23978-7DOI Listing

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