Treatment of furazolidone contaminated water using banana pseudostem biochar engineered with facile synthesized magnetic nanocomposites

被引:73
作者
Gurav, Ranjit [1 ]
Bhatia, Shashi Kant [1 ,2 ]
Choi, Tae-Rim [1 ]
Park, Ye-Lim [1 ]
Park, Jun Young [1 ]
Han, Yeong-Hoon [1 ]
Vyavahare, Govind [3 ]
Jadhav, Jyoti [3 ]
Song, Hun-Suk [1 ]
Yang, Peizhou [4 ]
Yoon, Jeong-Jun [5 ]
Bhatnagar, Amit [6 ]
Choi, Yong-Keun [1 ]
Yang, Yung-Hun [1 ,2 ]
机构
[1] Konkuk Univ, Dept Biol Engn, Coll Engn, Seoul 05029, South Korea
[2] Konkuk Univ, Inst Ubiquitous Informat Technol & Applicat CBRU, Seoul 05029, South Korea
[3] Shivaji Univ, Dept Biotechnol, Kolhapur 416004, Maharashtra, India
[4] Hefei Univ Technol, Coll Food & Biol Engn, Anhui Key Lab Intens Proc Agr Prod, Hefei, Anhui, Peoples R China
[5] Korea Inst Ind Technol KITECH, Intelligent Sustainable Mat R&D Grp, Cheonan Si 31056, Chungcheongnam, South Korea
[6] Univ Eastern Finland, Dept Environm & Biol Sci, POB 1627, FI-70211 Kuopio, Finland
基金
新加坡国家研究基金会;
关键词
Antibiotics; Adsorption; Banana pseudostem; Furazolidone; Magnetic biochar; WASTE-WATER; PYROLYSIS TEMPERATURES; DYE SORPTION; RESIDUAL DYE; REMOVAL; DEGRADATION; ADSORPTION; BIOMASS; ACID; SULFAMETHOXAZOLE;
D O I
10.1016/j.biortech.2019.122472
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
The present study enlightens facile synthesis and characterization of magnetic biochar derived from waste banana pseudostem biomass for the removal of nitrofuran antibiotic 'furazolidone' (FZD). Brunauer-Emmett-Teller (BET), scanning electron microscopy (SEM), magnetic hysteresis, X-ray diffraction (XRD), and Fourier transform infrared spectroscopy (FTIR) revealed successful hybridization of magnetic nanocomposites with biochar (BPB600). The maximum adsorption capacity of magnetic BPB600 was 96.81% (37.86 mg g(-1)), which was significantly higher than the non-coated BPB600 (77.25%; 31.45 mg g(-1)). Adsorption kinetics data fitted well with pseudo-second order, and Elovich model demonstrating dominance of the chemisorption mechanism. Furthermore, the response surface methodology (RSM) was applied to evaluate the interactive effect of pH, temperature, and FZD concentration on adsorption. Therefore, the results of present study would provide an effective strategy to tackle antibiotic contaminants responsible for the antibiotic resistance genes or bacteria that decreases the therapeutic value of antibiotics.
引用
收藏
页数:7
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