DEGRADATION KINETICS OF TEXTILE AZO DYE REACTIVE ORANGE-16 BY GAMMA IRRADIATION

Nurfiana, Fifi and Rochmadi, Rochmadi and Cahyono, Rochim Bakti and Winarno, Hendig and Putra, Sugili and Yusmaman, Waringin M. (2024) DEGRADATION KINETICS OF TEXTILE AZO DYE REACTIVE ORANGE-16 BY GAMMA IRRADIATION. Jurnal Teknologi, 86 (6). 131 – 139. ISSN 01279696

[thumbnail of DEGRADATION_KINETICS_OF_TEXTILE_AZO_DYE_REACTIVE_O.pdf] Text
DEGRADATION_KINETICS_OF_TEXTILE_AZO_DYE_REACTIVE_O.pdf - Published Version
Restricted to Registered users only

Download (694kB) | Request a copy

Abstract

Gamma radiation have become attention since their high potential for degrading compounds, especially organic pollutants. In this research, gamma radiation was studied for degrading the Reactive Orange-16 (RO-16) dye, a toxic and carcinogenic pollutant. The radiolytic degradation process was studied in a batch reactor with a gamma-ray dose rate of 2.930 kGy/h. The effect of experimental variable such as initial peroxide concentration, initial pH, initial dye concentration, and addition of inorganic anion were studied. The highest degradation rates were achieved at a peroxide concentration ranging from 2 to 4 mM. In contrast, the higher peroxide concentration indicated the slower degradation process caused by the scavenging effect of the peroxide. Degradation of 88 RO-16 dye with 0.1 mM initial concentration, was achieved at 2.0 kGy irradiation dose and 97.4 degradation in the presence of 4 mM peroxide. The dose constant (d) for those degradation processes was 1.0657 kGy-1 and 1.8420 kGy-1 respectively. The degradation was more efficient in acid pH. The degradation process increased with lower initial dye concentrations. The degradation of RO-16 dye by gamma-ray was inhibited by the presence of inorganic anions in the following sequence: NO3-→ CO32− → HCO3− → CH3COO-→ Cl-. © 2024 Penerbit UTM Press. All rights reserved.

Item Type: Article
Additional Information: Cited by: 0; All Open Access, Gold Open Access
Subjects: T Technology > TP Chemical technology
Divisions: Faculty of Engineering > Chemistry Engineering Department
Depositing User: Rita Yulianti Yulianti
Date Deposited: 31 Jul 2025 08:49
Last Modified: 31 Jul 2025 08:49
URI: https://ir.lib.ugm.ac.id/id/eprint/12870

Actions (login required)

View Item
View Item