Production of porous activated carbons from Caesalpinia ferrea seed pod wastes: Highly efficient removal of captopril from aqueous solutions
Porous activated carbons (ACs) prepared from a lignocellulosic waste, Caesalpinia ferrea seed pod wastes (CF) were utilised for removing captopril pharmaceutical from synthetic hospital effluents and aqueous effluents. Chemical activation using ZnCl2 was performed. It was utilised the following prop...
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Published in | Journal of cleaner production Vol. 197; no. 1; pp. 919 - 929 |
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Main Authors | , , , , , , , , |
Format | Journal Article |
Language | English |
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Elsevier Ltd
01.10.2018
Elsevier |
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Abstract | Porous activated carbons (ACs) prepared from a lignocellulosic waste, Caesalpinia ferrea seed pod wastes (CF) were utilised for removing captopril pharmaceutical from synthetic hospital effluents and aqueous effluents. Chemical activation using ZnCl2 was performed. It was utilised the following proportions CF-Biomass: ZnCl2 (1: 0.5, 1:1 and 1:1.5, obtaining CFAC.0.5, CFAC.1.0, and CFAC.1.5 activated carbons. These mixtures were pyrolysed at 600 °C in a conventional furnace. The ACs were characterised by FTIR, hydrophobic/hydrophilic ratio (HI), CHN/O elemental analysis, Boehm titration, surface areas (SBET), total pore volumes, and pore size distribution. These analyses show that the ACs presents several functional groups on AC surfaces and there is a predominance of hydrophilic surfaces. All the activated carbons prepared presented surface area 1050–1480 m2 g−1. Regarding the adsorption process, the kinetics data were fitted to General-order kinetic model and equilibrium of adsorption data were well represented by and Liu isotherm model. The maximum adsorption capacity of 535.5 mg g−1 was obtained at 25 °C for the sample CFAC.1.5. The thermodynamic studies have shown that the adsorption process of captopril is spontaneous and favourable. The employment of the ACs for treating simulated effluents, with different emerging contaminants, showed an excellent removal (up to 97.67%). This result is evidence that Caesalpinia ferrea seed pod wastes were a high-efficiency precursor for AC preparation and that such activated carbons could be used for treating hospital effluents containing pharmaceuticals.
•Caesalpinia ferrea seed pods were used as carbon source for preparation of activated carbon.•Efficient removal of captopril pharmaceutical from hospital effluents was obtained.•Maximum captopril sorption capacity of 776.2 mg g−1.•The several functional groups of ACs surface leads to a hydrophilic surface of ACs. |
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AbstractList | Porous activated carbons (ACs) prepared from a lignocellulosic waste, Caesalpinia ferrea seed pod wastes (CF) were utilised for removing captopril pharmaceutical from synthetic hospital effluents and aqueous effluents. Chemical activation using ZnCl2 was performed. It was utilised the following proportions CF-Biomass: ZnCl2 (1: 0.5, 1:1 and 1:1.5, obtaining CFAC.0.5, CFAC.1.0, and CFAC.1.5 activated carbons. These mixtures were pyrolysed at 600 °C in a conventional furnace. The ACs were characterised by FTIR, hydrophobic/hydrophilic ratio (HI), CHN/O elemental analysis, Boehm titration, surface areas (SBET), total pore volumes, and pore size distribution. These analyses show that the ACs presents several functional groups on AC surfaces and there is a predominance of hydrophilic surfaces. All the activated carbons prepared presented surface area 1050–1480 m2 g−1. Regarding the adsorption process, the kinetics data were fitted to General-order kinetic model and equilibrium of adsorption data were well represented by and Liu isotherm model. The maximum adsorption capacity of 535.5 mg g−1 was obtained at 25 °C for the sample CFAC.1.5. The thermodynamic studies have shown that the adsorption process of captopril is spontaneous and favourable. The employment of the ACs for treating simulated effluents, with different emerging contaminants, showed an excellent removal (up to 97.67%). This result is evidence that Caesalpinia ferrea seed pod wastes were a high-efficiency precursor for AC preparation and that such activated carbons could be used for treating hospital effluents containing pharmaceuticals.
•Caesalpinia ferrea seed pods were used as carbon source for preparation of activated carbon.•Efficient removal of captopril pharmaceutical from hospital effluents was obtained.•Maximum captopril sorption capacity of 776.2 mg g−1.•The several functional groups of ACs surface leads to a hydrophilic surface of ACs. Porous activated carbons (ACs) prepared from a lignocellulosic waste, Caesalpinia ferrea seed pod wastes (CF) were utilised for removing captopril pharmaceutical from synthetic hospital effluents and aqueous effluents. Chemical activation using ZnCl2 was performed. It was utilised the following proportions CFBiomass: ZnCl2 (1: 0.5, 1:1 and 1:1.5, obtaining CFAC.0.5, CFAC.1.0, and CFAC.1.5 activated carbons. These mixtures were pyrolysed at 600 °C in a conventional furnace. The ACs were characterised by FTIR, hydrophobic/hydrophilic ratio (HI), CHN/O elemental analysis, Boehm titration, surface areas (SBET), total pore volumes, and pore size distribution. These analyses show that the ACs presents several functional groups on AC surfaces and there is a predominance of hydrophilic surfaces. All the activated carbons prepared presented surface area 1050-1480m2 g-1. Regarding the adsorption process, the kinetics data were fitted to General-order kinetic model and equilibrium of adsorption data were well represented by and Liu isotherm model. The maximum adsorption capacity of 535.5 mg g-1 was obtained at 25 °C for the sample CFAC.1.5. The thermodynamic studies have shown that the adsorption process of captopril is spontaneous and favourable. The employment of the ACs for treating simulated effluents, with different emerging contaminants, showed an excellent removal (up to 97.67%). This result is evidence that Caesalpinia ferrea seed pod wastes were a high-efficiency precursor for AC preparation and that such activated carbons could be used for treating hospital effluents containing pharmaceuticals. |
Author | Thue, Pascal Silas Kasperiski, Fernando M. Dias, Silvio L.P. Saucier, Caroline Lima, Diana Ramos dos Reis, Glaydson S. da Costa, Janaina B. Umpierres, Cibele S. Lima, Eder C. |
Author_xml | – sequence: 1 givenname: Fernando M. surname: Kasperiski fullname: Kasperiski, Fernando M. organization: Graduate Program in Metallurgical, Mine and Materials Engineering (PPGE3M), School of Engineering, Federal University of Rio Grande Do Sul (UFRGS), Av. Bento Gonçalves 9500, Porto Alegre, RS, Brazil – sequence: 2 givenname: Eder C. surname: Lima fullname: Lima, Eder C. email: eder.lima@ufrgs.br, profederlima@gmail.com organization: Institute of Chemistry, Federal University of Rio Grande Do Sul (UFRGS), Av. Bento Gonçalves 9500, P.O. Box 15003, 91501-970, Porto Alegre, RS, Brazil – sequence: 3 givenname: Cibele S. surname: Umpierres fullname: Umpierres, Cibele S. organization: Graduate Program in Science of Materials (PGCIMAT), Institute of Chemistry, Federal University of Rio Grande Do Sul (UFRGS), Av. Bento Gonçalves 9500, Porto Alegre, RS, Brazil – sequence: 4 givenname: Glaydson S. surname: dos Reis fullname: dos Reis, Glaydson S. organization: Graduate Program in Metallurgical, Mine and Materials Engineering (PPGE3M), School of Engineering, Federal University of Rio Grande Do Sul (UFRGS), Av. Bento Gonçalves 9500, Porto Alegre, RS, Brazil – sequence: 5 givenname: Pascal Silas surname: Thue fullname: Thue, Pascal Silas organization: Institute of Chemistry, Federal University of Rio Grande Do Sul (UFRGS), Av. Bento Gonçalves 9500, P.O. Box 15003, 91501-970, Porto Alegre, RS, Brazil – sequence: 6 givenname: Diana Ramos surname: Lima fullname: Lima, Diana Ramos organization: Graduate Program in Metallurgical, Mine and Materials Engineering (PPGE3M), School of Engineering, Federal University of Rio Grande Do Sul (UFRGS), Av. Bento Gonçalves 9500, Porto Alegre, RS, Brazil – sequence: 7 givenname: Silvio L.P. surname: Dias fullname: Dias, Silvio L.P. organization: Institute of Chemistry, Federal University of Rio Grande Do Sul (UFRGS), Av. Bento Gonçalves 9500, P.O. Box 15003, 91501-970, Porto Alegre, RS, Brazil – sequence: 8 givenname: Caroline surname: Saucier fullname: Saucier, Caroline organization: Graduate Program in Chemistry (PPGQ), Institute of Chemistry, Federal University of Rio Grande Do Sul (UFRGS), Av. Bento Gonçalves 9500, Porto Alegre, RS, Brazil – sequence: 9 givenname: Janaina B. surname: da Costa fullname: da Costa, Janaina B. organization: Institute of Chemistry, Federal University of Rio Grande Do Sul (UFRGS), Av. Bento Gonçalves 9500, P.O. Box 15003, 91501-970, Porto Alegre, RS, Brazil |
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Keywords | Emerging contaminant Pharmaceutical Adsorption Captopril Activated carbon Caesalpinia ferrea TRAITEMENT DE L&apos ACTIVATED CARBON PHARMACEUTICAL EMERGING CONTAMINANT HOPITAL EAU CONTAMINATION INHIBITEUR ADSORPTION CAPTOPRIL |
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Snippet | Porous activated carbons (ACs) prepared from a lignocellulosic waste, Caesalpinia ferrea seed pod wastes (CF) were utilised for removing captopril... |
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SubjectTerms | Activated carbon Adsorption Caesalpinia ferrea Captopril Chemical Sciences Emerging contaminant Pharmaceutical |
Title | Production of porous activated carbons from Caesalpinia ferrea seed pod wastes: Highly efficient removal of captopril from aqueous solutions |
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