Fly ash–based nanocomposites: a potential material for effective photocatalytic degradation/elimination of emerging organic pollutants from aqueous stream

被引:0
作者
Vishal Gadore
Md. Ahmaruzzaman
机构
[1] National Institute of Technology,Department of Chemistry
来源
Environmental Science and Pollution Research | 2021年 / 28卷
关键词
Fly ash nanocomposites; Photocatalysts; Photodegradation; Dyes; Adsorption;
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学科分类号
摘要
Fly ash is readily available and cheaply generated as 47a by-product of the combustion of organic matter. A tremendous amount of fly ash is generated worldwide, and its disposal has imposed 47a severe environmental concern. Its good adsorption capacities attracted several researchers to study the use of fly ash as 47a support for photocatalysts for the degradation of contaminants from wastewater. Undoubtedly the photocatalysts supported on fly ash have represented excellent degradation efficiencies due to the synergistic effect of adsorption and photocatalytic capacity. The utilization of fly ash as 47a precursor has solved the problem of disposal and added value to the waste by-product. Various preparation techniques for fly ash–based nanocomposites such as the sol-gel method, hydrothermal method, solvothermal method, precipitation and co-precipitation, modified metalorganic decomposition, electrospinning, incipient impregnation, and wet chemical synthesis, along with 47a brief study of their characterization using scanning electron microscopy, X-ray diffraction technique and Fourier transform infrared (FTIR) spectroscopy, and the mechanism of photodegradation of dyes have been discussed in this paper. The literature shows that SiO2, TiO2, and Al2O3 present in fly ash play an essential role in the photodegradation of dyes. Factors affecting the degradation of dyes, their kinetic studies, and methods to enhance photodegradation efficiency have also been discussed.
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页码:46910 / 46933
页数:23
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共 384 条
[1]  
Adam F(2010)Silica–tin nanotubes prepared from rice husk ash by sol–gel method: characterization and its photocatalytic activity Appl Surf Sci 257 811-816
[2]  
Appaturi JN(2013)Utilization of tin and titanium incorporated rice husk silica nanocomposite as photocatalyst and adsorbent for the removal of methylene blue in aqueous medium Appl Surf Sci 264 718-726
[3]  
Thankappan R(2018)Photocatalytic degradation of methylene blue by ZnO/NiFe Appl Surf Sci 455 195-200
[4]  
Nawi MAM(2017)O J Environ Chem Eng 5 526-538
[5]  
Adam F(2010) nanoparticles Prog Energy Combust Sci 36 327-363
[6]  
Appaturi JN(2007)Adsorption of resorcinol from aqueous solution onto CTAB/NaOH/flyash composites: equilibrium, kinetics and thermodynamics Microporous Mesoporous Mater 103 284-295
[7]  
Khanam Z(2010)A review on the utilization of fly ash Desalination 261 3-18
[8]  
Thankappan R(2011)Indium incorporated silica from rice husk and its catalytic activity J Environ Manag 92 311-330
[9]  
Nawi MAM(2021)Heterogeneous photocatalytic degradation of phenols in wastewater: a review on current status and developments J Phys Chem Solids 155 110121-1234
[10]  
Adeleke JT(2011)Influence of parameters on the heterogeneous photocatalytic degradation of pesticides and phenolic contaminants in wastewater: a short review Biomass Bioenergy 35 1227-1900