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Iranian association of environmental health (IAEH)
Avicenna J Environ Health Eng
. 2014;1(1): 1-6. doi:
10.17795/ajehe-120
Research Article
Removal of Furfural From Wastewater Using Integrated Catalytic Ozonation and Biological Approaches
Mostafa Leili
1
,
2
, Gholamreza Moussavi
2
* , Kazem Naddaf
3
Cited by CrossRef: 6
1- Samarghandi M, Poormohammadi A, Shanesaz S, Godini K. Comparison Between the Performance of Activated Carbon and Graphene in Removal of Reactive Red 198.
Avicenna J Environ Health Eng
. 2017;4(1):6021
[Crossref]
2- Rosen Y, Maslennikov A, Trabelcy B, Gerchman Y, Mamane H. Short ozonation for effective removal and detoxification of fermentation inhibitors resulting from thermal pretreatment.
Renewable Energy
. 2022;189:1407
[Crossref]
3- Aghapour A, Alizadeh N, Khorsandi H. Biological degradation and mineralization of tetracycline antibiotic using SBR equipped with a vertical axially rotating biological bed (SBR-VARB).
Biodegradation
. 2023;34(4):325
[Crossref]
4- Naghizadeh M, Aghapour A, khorsandi H. The degradation and mineralization of hydrochlorothiazide (HCTZ) using catalytic ozonation process (COP) with Al2O3/granular activated carbon composite.
Reac Kinet Mech Cat
. 2022;135(4):1875
[Crossref]
5- Azarian G, Leili M, Godini K, Faradmal J, Bajalan S. Furfural degradation using an electrochemical advanced oxidation process (EAOP): optimization of operating parameters using Taguchi approach.
Desalination and Water Treatment
. 2018;126:287
[Crossref]
6- Ghosh S, Falyouna O, Malloum A, Othmani A, Bornman C, Bedair H, Onyeaka H, Al-Sharify Z, Jacob A, Miri T, Osagie C, Ahmadi S. A general review on the use of advance oxidation and adsorption processes for the removal of furfural from industrial effluents.
Microporous and Mesoporous Materials
. 2022;331:111638
[Crossref]
7- Tian H, Quan Y, Yin Z, Yin C, Fu Y. Bioelectrochemical Purification of Biomass Polymer Derived Furfural Wastewater and Its Electric Energy Recovery.
Polymers
. 2023;15(16):3422
[Crossref]