Universiti Teknologi Malaysia Institutional Repository

Highly stable photocatalytic removal of paraquat dichloride using ZnO/TiO2 supported on PVC

Ashiru, Abubakar Garba and Matmin, Juan and Toemen, Susilawati (2021) Highly stable photocatalytic removal of paraquat dichloride using ZnO/TiO2 supported on PVC. Malaysian Journal of Fundamental and Applied Sciences, 17 (5). pp. 647-658. ISSN 2289-599X

[img]
Preview
PDF
347kB

Official URL: http://dx.doi.org/10.11113/MJFAS.V17N5.2424

Abstract

This study presents on ZnO/TiO2 supported on PVC (ZnO/TiO2@PVC) in the photocatalytic removal of paraquat dichloride. The ZnO/TiO2@PVC was characterized using XRD, FESEM-EDX, FTIR, and AFM. Findings indicated that ZnO/TiO2@PVC allowed degradation of paraquat dichloride under UV irradiation by the rate of up to 73%. XRD pattern indicated the presence of both TiO2 (anatase) and ZnO (zincite) crystalline as well as PVC amorphous structures. FESEM and AFM results revealed the observed shape and surface of TiO2 interconnected nanowires with ZnO nanorods uniformly distributed according to EDX mapping. The reduced surface roughness was also shown in the supported photocatalyst. FTIR analysis clearly demonstrate the combined spectra of immobilised ZnO/TiO2 powder catalyst onto the PVC in the composite. Kinetic study of the degradation process was performed according to pseudofirst- order and the influence of ZnO/TiO2 coating onto PVC polymer and initial paraquat concentration were investigated on the treatment performance. Under optimized condition (pH = 7, PQ =20 mg/L and catalyst coating =15%), the stability and reusability of the supported catalyst was also evaluated over ten sequential treatment runs, and the catalyst maintain high reactivity. High recyclability of the ZnO/TiO2@PVC composites as catalyst in photodegradation processes are also reported in this study.

Item Type:Article
Uncontrolled Keywords:photocatalytic degradation, supported nanostructures
Subjects:Q Science > QD Chemistry
Divisions:Science
ID Code:94991
Deposited By: Yanti Mohd Shah
Deposited On:29 Apr 2022 22:32
Last Modified:29 Apr 2022 22:32

Repository Staff Only: item control page