Microwave induced HNO2 and H3PO4 activation of oil palm frond (OPF) for removal of malachite green

Adam Harith, Zafrul Fazry and Norzahir, Sapawe and Ahmad Izhar Fahimi, Abdul Aziz and Muhammad Zafri Haiqal, Zainudin and Muhammad Hakimi Haizal, Hafiz and Muhammad Aiman Farhan, Idris and Muhammad Farhan, Hanafi and Muhammad Farhan, Mohd Fozi (2018) Microwave induced HNO2 and H3PO4 activation of oil palm frond (OPF) for removal of malachite green. Materials Today: Proceedings, 5 (10 (2)). pp. 22143-22147. ISSN 2214-7853

[img] PDF
- microwave induced.pdf

Download (460kB)
Official URL: https://www.sciencedirect.com/science/article/abs/...

Abstract

The use of abundantly available and eco-friendly adsorbent oil palm frond (OPF) has been reported as an alternative to the current expensive methods of removing of malachite green (MG) dyes from an aqueous solution. The effects of pre-treatment (microwave activated with HNO3 / H3PO4) was investigated. The adsorption of MG on OPF was confirmed by FTIR, as it showed the change in characterization before and after adsorption. It was found that strong interaction between OPF surface and MG was observed as similar to characteristic peaks of MG which also presence at OPF spectra after reaction. These results provide a strong evidence for the adsorption of MG onto the OPF surface. In this study, the use of 1 g/L of 300W N-OPF resulted in the nearly complete removal of 10 ppm of MG with a maximum removal at 93.6 after 15 min of contact time at pH 5 and 303 K. The results indicated that the OPF can be used effectively to remove MG from aqueous media.

Item Type: Article
Additional Information: The 3rd International Conference on Green Chemical Engineering and Technology (3rd GCET): Materials Science, 07-08 November 2017
Uncontrolled Keywords: Oil palm frond (OPF), malachite green (MG), microwave, adsorption, HNO, HPO.
Subjects: T Technology > TP Chemical technology
Divisions: Academic Faculties, Institutes and Centres > Faculty of Engineering
Faculties, Institutes, Centres > Faculty of Engineering
Depositing User: Hanafi
Date Deposited: 29 Jul 2025 03:04
Last Modified: 29 Jul 2025 03:04
URI: http://ir.unimas.my/id/eprint/48962

Actions (For repository members only: login required)

View Item View Item