Biodegradable polymeric green adsorbent for the highly efficient removal of crystal violet dye from aqueous solution

被引:15
作者
Radoor, Sabarish [1 ,2 ]
Jayakumar, Aswathy [3 ]
Karayil, Jasila [4 ]
Kim, Jun Tae [3 ]
Siengchin, Suchart [1 ]
机构
[1] King Mongkuts Univ Technol North Bangkok, Sirindhorn Int Thai German Grad Sch Engn TGGS, Dept Mech & Proc Engn, 1518 Wongsawang Rd, Bangkok 10800, Thailand
[2] Jeonbuk Natl Univ, Dept Polymer Nano Sci & Technol, 567 Baekje Daero, Jeonju 54896, South Korea
[3] Kyung Hee Univ, BioNanocomposite Res Ctr, Dept Food & Nutr, Seoul 02447, South Korea
[4] Govt Engn Coll West Hill, Dept Appl Sci, Kozhikode, India
关键词
Breadfruit peel; Crystal violet; Kinetic; Isotherm; Carrageenan; Polyvinyl alcohol; LOW-COST; MAGNETIC PARTICLES; ADSORPTION; KINETICS; EQUILIBRIUM; NANOCOMPOSITE; COMPOSITE; CARBON; OPTIMIZATION; MEMBRANES;
D O I
10.1016/j.cherd.2023.09.048
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
In this study, we fabricated a novel membrane from breadfruit peel (Artocarpus altilis), a biowaste, to quickly and effectively remove the toxic crystal violet (CV) dye from aqueous solutions. The membrane was characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), water contact angle, thermogravimetric analysis (TGA), and Fourier transform infrared spectra (FTIR) techniques. SEM results confirmed that the breadfruit peel particles are well dispersed on the membrane surface. Furthermore, the breadfruit peel improved the mechanical and thermal stability of the membrane. The membrane exhibited a maximum adsorption capacity of 176.25 mg/g at a pH of 11 and a contact time of 150 min. The adsorption capacity of the membrane could be tailored by operational parameters like initial concentration of CV, equilibrium time, adsorbent dosage, and temperature. The adsorption mechanisms responsible for the efficient elimination of CV dye is discussed in terms of electrostatic attraction. The adsorption kinetic results indicate that the adsorption of CV was more consistent with pseudo-second order model. Meanwhile, the adsorption data fitted to Freundlich model rather than Langmuir isotherm model. Furthermore, even after six adsorption-desorption cycles, no significant decrease in the removal efficiency was observed. The polymer membrane was therefore proposed as a potential candidate for water treatment. (c) 2023 Institution of Chemical Engineers. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:473 / 485
页数:13
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