Remediation of bio-refinery wastewater containing organic and inorganic toxic pollutants by adsorption onto chitosan-based magnetic nanosorbent

被引:26
|
作者
Kumar, Abiram Karanam Rathan [1 ]
Saikia, Kongkona [1 ]
Neeraj, Gerard [1 ]
Cabana, Hubert [2 ]
Kumar, Vaidyanathan Vinoth [3 ]
机构
[1] SRM Inst Sci & Technol, Sch Bioengn, Integrated Bioproc Lab, Chennai 603203, Tamil Nadu, India
[2] Univ Sherbrooke, Fac Genie, Lab Genie Environm, 2500 Blvd Univ, Sherbrooke, PQ J1K 2R1, Canada
[3] SRM Inst Sci & Technol, Sch Bioengn, Dept Biotechnol, Chennai 603203, Tamil Nadu, India
来源
WATER QUALITY RESEARCH JOURNAL OF CANADA | 2020年 / 55卷 / 01期
基金
加拿大自然科学与工程研究理事会;
关键词
bio-refinery wastewater; chitosan magnetic nanoparticle (cMNPs); heavy metals; phenolic compound; AQUEOUS-SOLUTIONS; HEAVY-METAL; PHENOL REMOVAL; CR(VI); NANOPARTICLES; KINETICS; NANOTECHNOLOGY; ADSORBENTS; CU(II); IONS;
D O I
10.2166/wqrj.2019.003
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
The novelty of the current study deals with the application of magnetic nanosorbent, chitosan-coated magnetic nanoparticles (cMNPs), to be utilized for the management of lignocellulosic bio-refinery wastewater (LBW) containing three heavy metals and 26 phenolic compounds. The magnetic property of the adsorbent, confirmed by elemental and vibrating sample magnetometer analysis (saturation magnetization of 26.96 emu/g), allows easy separation of the particles in the presence of an external magnetic field. At pH 6.0, with optimized adsorbent dosage of 2.0 g/L and 90 min contact time, maximum removal of phenol (46.2%), copper (42.2%), chromium (18.7%) and arsenic (2.44%) was observed. The extent of removal of phenolic compounds was in the order: polysubstituted > di-substituted > mono-substituted > cresol > phenol. Overall, the adsorption capacity (q(e)) of cMNPs varies among the different contaminants in the following manner: copper (1.03 mg/g), chromium (0.20 mg/g), arsenic (0.04 mg/g) and phenol (0.56 mg/g). Post-adsorption, retrieving the cMNPs using an external magnetic field followed by single-step desorption via acid-base treatment is attractive for implementation in industrial settings. Reusability of the adsorbent was studied by recycling the cMNPs for five consecutive rounds of adsorption followed by desorption, at the end of which, cMNPs retained 20% of their initial adsorption capacity.
引用
收藏
页码:36 / 51
页数:16
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