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Fe-Impregnated Charcoal for Enhanced Removal of Azo Dye Reactive Blue 194: Fenton-like Oxidation Conditions and Fate of Degradation Products in Activated Sludge System

Article

Last updated: 23 Dec 2024

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Abstract

This study aimed to assess the effectiveness of Fe-impregnated charcoal (FIC) in removing azo dye Reactive Blue 194 (RB) under various Fenton-like oxidation (FLO) conditions, as well as investigate the fate of degradation products when discharged into an activated sludge system. The optimal FIC concentration for achieving maximum decolorization activity was found to be 0.5 to 1 g/L, resulting in a removal efficiency of over 95% within 90 minutes. However, the decolorization efficiency decreased as the initial dye concentration increased, reaching 83.6% at 0.5 g/L within 90 minutes. Other optimal reaction conditions included 80 mg/L H2O2 at an initial pH of 3.5 and a temperature of 25°C. The impact of tap water and chemical additives commonly used in dyeing baths, such as acetic acid and sulfonic acid, on the FLO rate was investigated. The use of tap water resulted in a 3.4% reduction in decolorization activity, while the addition of 0.3 g/L sulfonic acid led to a decrease in color removal efficiency to 84.4% within 90 minutes, although the pH was maintained at the optimum condition. The treated solutions were transferred to a pre-adapted activated sludge system, and the resulting solutions after each stage were extracted and analyzed using GC-MS. The results revealed that the de-aromatization process began during the Fenton oxidation stage and was completed in the activated sludge system. However, certain phenolic compounds originating from the degradation of the parent dye remained unchanged throughout all stages

DOI

10.21608/jenvbs.2023.233823.1229

Keywords

Azo dyes, Decolorization, advanced oxidation, Aromatic amine

Authors

First Name

Tamer

Last Name

Elsakhawy

MiddleName

Abdallah

Affiliation

Microbiology department, Soil, Water and Environment Research Institute, Agricultural Research Center.

Email

drelsakhawyg@gmail.com

City

kafrelshikh

Orcid

0000-0001-9512-6826

First Name

Reda

Last Name

Bayoumi

MiddleName

A

Affiliation

Department of Biology , Alkhormah University College, Taif University, Taif 21974, Saudi Arabia

Email

r.bayome@tu.edu.sa

City

-

Orcid

-

Volume

7

Article Issue

2023

Related Issue

39180

Issue Date

2023-01-01

Receive Date

2023-09-03

Publish Date

2023-01-01

Page Start

219

Page End

229

Print ISSN

2536-9415

Online ISSN

2536-9423

Link

https://jenvbs.journals.ekb.eg/article_326677.html

Detail API

https://jenvbs.journals.ekb.eg/service?article_code=326677

Order

326,677

Type

Original Article

Type Code

363

Publication Type

Journal

Publication Title

Environment, Biodiversity and Soil Security

Publication Link

https://jenvbs.journals.ekb.eg/

MainTitle

Fe-Impregnated Charcoal for Enhanced Removal of Azo Dye Reactive Blue 194: Fenton-like Oxidation Conditions and Fate of Degradation Products in Activated Sludge System

Details

Type

Article

Created At

23 Dec 2024