Facile synthesis of TiO2/Chitosan nanohybrid for adsorption-assisted rapid photodegradation of an azo dye in water

被引:0
作者
Tabassum Sultana
Shaikat Chandra Dey
Md. Ashraful Islam Molla
Mohammad Rahat Hossain
Muhammad Mominur Rahman
Md. Saiful Quddus
Mohammad Moniruzzaman
Sayed Md. Shamsuddin
Mithun Sarker
机构
[1] Department of Applied Chemistry and Chemical Engineering,
[2] Faculty of Engineering and Technology,undefined
[3] University of Dhaka,undefined
[4] Department of Chemistry,undefined
[5] Virginia Tech,undefined
[6] Institute of Glass and Ceramic Research and Testing,undefined
[7] Bangladesh Council of Scientific and Industrial Research,undefined
[8] Central Analytical and Research Facilities,undefined
[9] Bangladesh Council of Scientific and Industrial Research,undefined
来源
Reaction Kinetics, Mechanisms and Catalysis | 2021年 / 133卷
关键词
TiO; Chitosan; Dye; Photodegradation; Nanohybrids;
D O I
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中图分类号
学科分类号
摘要
A series of bifunctional nanohybrids containing different proportions of chitosan and titanium dioxide (TiO2) were prepared through precipitation technique and applied for removal of a model anionic azo dye, Remazol Orange 3R (RO), from aqueous solution. This study reveals the dual benefit of adsorption and photocatalytic degradation of RO by TiO2/Chitosan nanohybrids. Nanohybrid fabricated from 80% TiO2 (w/w) and 20% chitosan (w/w) termed as T0.80CS0.20 removed ∼98.8% RO within only 8 min at pH 2.0 under sunlight irradiation from 60 mg L−1 dye solution. This was mainly due to the simultaneous role of adsorption and photodegradation activities of nanohybrids. The adsorption performance of T0.80CS0.20 was investigated in terms of the Langmuir isotherm under dark and the maximum adsorption capacity of T0.80CS0.20 for RO was found to be 243.9 mg g−1. Electrostatic interaction was suggested as a plausible mechanism for RO adsorption whereas photogenerated holes controlled photocatalytic degradation of RO by producing sufficient quantities of different radical species. In addition, T0.80CS0.20 can be regenerated for removal of RO by simple alkali washing. Therefore, T0.80CS0.20 is recommended as a promising photocatalyst for the removal of RO dye from water.
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页码:1121 / 1139
页数:18
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共 313 条
[1]  
Yagub MT(2014)Dye and its removal from aqueous solution by adsorption: a review Adv Colloid Interface Sci 209 172-184
[2]  
Sen TK(2016)Textile dye degradation using nano zero valent iron: a review J Environ Manag 177 341-355
[3]  
Afroze S(2016)A critical review on textile wastewater treatments: possible approaches J Environ Manag 182 351-366
[4]  
Ang HM(2007)Mutagenic and carcinogenic potential of a textile azo dye processing plant effluent that impacts a drinking water source Mutat Res 626 53-60
[5]  
Raman CD(2017)Green and eco-friendly synthesis of cobalt-oxide nanoparticle: characterization and photo-catalytic activity Adv Powder Technol 28 2035-2043
[6]  
Kanmani S(2008)Heterogeneous photocatalytic treatment of organic dyes in air and aqueous media J Photochem Photobiol C 9 171-192
[7]  
Holkar CR(2010)Adsorption of methylene blue on low-cost adsorbents: a review J Hazard Mater 177 70-80
[8]  
Jadhav AJ(2012)Towards advanced aqueous dye removal processes: a short review on the versatile role of activated carbon J Environ Manag 102 148-164
[9]  
Pinjari DV(2012)A review on chemical coagulation/flocculation technologies for removal of colour from textile wastewaters J Environ Manag 93 154-168
[10]  
Mahamuni NM(2018)Efficiency of various recent wastewater dye removal methods: a review J Environ Chem Eng 6 4676-4697