Preparation of a cellulose-based adsorbent and its removal of Disperse Red 3B dye
被引:0
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作者:
Jinbang Hu
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机构:Wuhan Textile University,College of Chemistry and Chemical Engineering
Jinbang Hu
Wei Liu
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机构:Wuhan Textile University,College of Chemistry and Chemical Engineering
Wei Liu
Liangjun Xia
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机构:Wuhan Textile University,College of Chemistry and Chemical Engineering
Liangjun Xia
Guangdi Yu
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机构:Wuhan Textile University,College of Chemistry and Chemical Engineering
Guangdi Yu
Hongbo Huang
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机构:Wuhan Textile University,College of Chemistry and Chemical Engineering
Hongbo Huang
Heng Guo
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机构:Wuhan Textile University,College of Chemistry and Chemical Engineering
Heng Guo
Wen Zhang
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机构:Wuhan Textile University,College of Chemistry and Chemical Engineering
Wen Zhang
Yunli Wang
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机构:Wuhan Textile University,College of Chemistry and Chemical Engineering
Yunli Wang
Weilin Xu
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机构:Wuhan Textile University,College of Chemistry and Chemical Engineering
Weilin Xu
机构:
[1] Wuhan Textile University,College of Chemistry and Chemical Engineering
[2] Wuhan Textile University,State Key Laboratory of New Textile Materials and Advanced Processing Technologies
[3] Hubei Grerial Environmental Protection Co.,Hubei Key Laboratory of Biomass Fibers and Eco
[4] Ltd,Dyeing & Finishing
[5] Wuhan Textile University,undefined
来源:
Cellulose
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2021年
/
28卷
关键词:
Disperse dye;
Cellulosic fiber;
Dye removal;
Chemical modification;
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摘要:
Cellulosic Juncus effusus fiber with porous structure, belonging to the carbohydrate polymers group, was chemically modified by a resin to form a cellulose-based adsorbent (FA–JE) for the removal of Disperse Red 3B dye. The structural characteristics and elemental changes of FA–JE were characterized by Fourier transform infrared spectroscopy and with an X-ray photoelectron spectrometer, while the morphology was observed via scanning electron microscopy. The pH, contact time, and adsorption temperature were investigated for optimal adsorption of disperse dyes. The adsorption of Disperse Red 3B dye by FA–JE was consistent with that observed by the Langmuir model. The maximum adsorption capacity of FA–JE was 103.95 mg/g, and the removal of disperse Red 3B dye was 99%. The data fitted well to pseudo-second-order kinetic model was followed. Thus, this natural cellulose-based adsorbent was determined to exhibit excellent performance for the removal of Disperse Red 3B dye.