Removal of diclofenac and ibuprofen on mesoporous activated carbon from agro-industrial wastes prepared by optimized synthesis employing a central composite design

被引:18
作者
Alvear-Daza, John J. [1 ]
Canneva, Antonela [2 ]
Donadelli, Jorge A. [2 ]
Manrique-Holguin, Manuela [3 ]
Rengifo-Herrera, Julian A. [1 ]
Pizzio, Luis R. [1 ]
机构
[1] UNLP CCT La Plata, CONICET, Ctr Invest & Desarrollo Ciencias Aplicadas Dr JJ, Dept Quim,Fac Ciencias Exactas, 47 257La Plata, RA-1900 Buenos Aires, DF, Argentina
[2] YPF TECNOL SA, Av Petr S-N Entre 129 & 143, RA-1925 Berisso, Argentina
[3] Univ Tecnol Pereira, Grp Invest Fotocatalisis & Estado Solido GEFES, Escuela Quim, Pereira 660003, Risaralda, Colombia
关键词
Biochar; Diclofenac; Ibuprofen; Mesoporosity; Sunflower seed shell; SUNFLOWER SEED HULLS; METHYLENE-BLUE; SURFACE-AREA; AQUEOUS-SOLUTION; CHEMICAL ACTIVATION; PHOSPHORIC-ACID; HYDROTHERMAL CARBONIZATION; JACKFRUIT PEEL; DYE ADSORPTION; PORE STRUCTURE;
D O I
10.1007/s13399-021-02227-w
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Synthesis of biochar from sunflower seed shells by using H3PO4 (AC-H) and NaOH (AC-N) as activated agents was optimized through a central composite design (CD) for building a second-order (quadratic) model with factorial points 2(k) (k = 2) where concentration of activating agent (20-80% wt.) and carbonization temperature (300-600 degrees C under N-2 atmosphere) were used as variables. At optimized conditions suggested by the experimental design for AC-H (H3PO4 at 80% wt. and annealed at 544 degrees C) and AC-N (NaOH at 50% wt., and annealed at 300 degrees C), materials exhibited the highest specific surface area (S BET ), mesoporosity (S-meso), and methylene blue (MB) adsorption. AC-H exhibited several surface functional groups such as -P2O7, and -COOH as well as high porosity and acidity caused by the H3PO4 treatment. Regarding diclofenac (DIC) and ibuprofen (IBU) adsorptions, AC-H and AC-N exhibited maximum adsorption capacities of 690.2 and 105.7 mg g(-1) and 23.6 and 4.5 mg g(-1), respectively. The novelty of this study lies in the combined use of an experiment design procedure and exhaustive physicochemical characterization to find the best synthesis conditions of biochars exhibiting high specific surface area, mesoporosity, and a diversity of surface functional groups to be applied in the removal of pharmaceutical pollutants in water.
引用
收藏
页码:13197 / 13219
页数:23
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