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Officially associated with:

 Iranian association of environmental health (IAEH)

 Iranian Association of Environmental Health

Avicenna J Environ Health Eng. 2018;5(1): 50-55. doi: 10.15171/ajehe.2018.07

Original Article

Removal of Reactive Blue 19 Dye Using Fenton From Aqueous Solution

Fahimeh Moghadam 1,2 * ORCID, Najmeh Nori Kohbanan 3

Cited by CrossRef: 2


1- Ileri B, Dogu I. Sono–degradation of Reactive Blue 19 in aqueous solution and synthetic textile industry wastewater by nanoscale zero–valent aluminum. Journal of Environmental Management. 2022;303:114200 [Crossref]
2- Ismail F, El Fadl A, Abou Taleb M. Effect of Structurally Different Magnetic Alginate Nanocomposite Beads on Fenton-Like Oxidation of Direct Dyes. J Inorg Organomet Polym. 2024; [Crossref]
3- Nouri Sarabi L, Shariati S, Islamnezhad A, Kefayati H. Electro-Fenton process based on sacrificial Iron electrode for Ponceau 4R removal. Water Air Soil Pollut. 2024;235(9) [Crossref]
4- Slama N, Masmoudi G, Fizer M, Mariychuk R, Dhaouadi H. Comprehensive study of Fenton reaction efficiency on textile wastewater treatment from dye solution to real effluent with emphasis on Fukui function analysis. Journal of Molecular Liquids. 2024;402:124773 [Crossref]
5- Hassan G, Ghaly M, Ahmed G, Mohamed R, El-Gawad H, Kowal P, Al-Hazmi H, Afify A. A Comprehensive Approach to Azo Dichlorotriazine Dye Treatment: Assessing the Impact of Physical, Chemical, and Biological Treatment Methods through Statistical Analysis of Experimental Data. Water. 2024;16(10):1327 [Crossref]
6- Alibeigi A, Pormazar S, Salmani M, Dalvand A. Heterogeneous Fenton process using GO@Fe 3 O 4 /Cu catalyst for the degradation of reactive dyes from aqueous solutions: modeling and optimisation . International Journal of Environmental Analytical Chemistry. 2024;:1 [Crossref]