Performance of Green Zinc Oxide Nanofluids in Membrane Photocatalytic Reactor: The Effect of Nanofluids Concentration

Authors

  • Muhammad Akmal Hisyam Idris Centre for Diploma Studies, Universiti Tun Hussein Onn Malaysia, Muar, Johor, 84600, MALAYSIA
  • Muhammad Akmal Annuar Centre for Diploma Studies, Universiti Tun Hussein Onn Malaysia, Muar, Johor, 84600, MALAYSIA
  • Muhammad Zharif Mohd Zamirullah Centre for Diploma Studies, Universiti Tun Hussein Onn Malaysia, Muar, Johor, 84600, MALAYSIA
  • Noor Atiqah Zuraini Faculty of Engineering Technology, Universiti Tun Hussein Onn Malaysia, Muar, Johor, 86400, MALAYSIA
  • Dilaeleyana Abu Bakar Sidik Centre for Diploma Studies, Universiti Tun Hussein Onn Malaysia, Muar, Johor, 84600, MALAYSIA
  • Nur Hanis Hayati Hairom Faculty of Engineering Technology, Universiti Tun Hussein Onn Malaysia, Muar, Johor, 86400, MALAYSIA
  • Zarizi Awang Faculty of Engineering Technology, Universiti Tun Hussein Onn Malaysia, Muar, Johor, 86400, MALAYSIA
  • Maskhairiah Ismail Samsung SDI Energy Malaysia Sdn Bhd., Sungai Gadut Negeri Sembilan, 71450 MALAYSIA
  • Noor Yahida Yahya Universiti Malaysia Pahang Al–Sultan Abdullah

Keywords:

zinc oxide, nanofluids, palm oil mill secondary effluent, membrane photocatalytic reactor

Abstract

Recently, researchers exploring membrane photocatalytic reactor (MPR) treatment employing Zinc Oxide (ZnO) nanoPARticles incorporated capping agents due to their ability to boost photocatalytic performance and reduce fouling. The performance of ZnO–incorporated Pandanus amaryllifolius Roxb. nanofluids (ZnO–PAR) at varying concentrations for palm oil mill secondary effluent (POMSE) treatment via MPR was the main focus of this investigation. The maximum removal effectiveness of color (99.2%), total suspended solid (TSS) (93.6%), turbidity (95.6%), chemical oxygen demand (COD) (96.8%), permeate flux (23.9±0.3 L/m2.hr) and normalized flux (0.47) was achieved at 1.0 wt% ZnO–PAR nanofluids. According to this study, 1.0 wt% produced an ideal balanced and effective performance, demonstrating the substantial potential for use in the palm oil sector since it optimized flux and minimize membrane fouling. While the highest pollutant removal efficiencies were achieved at the lower concentrations (0.1 and 0.25 wt%). This green nanotechnology provides a viable tertiary treatment solution that meets environmental discharge limits outlined in Malaysia's Environmental Quality Act 1974.

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Published

27-06-2026

Issue

Section

Articles

How to Cite

Idris, M. A. H. ., Abu Bakar Sidik, D., & Noor Yahida Yahya. (2026). Performance of Green Zinc Oxide Nanofluids in Membrane Photocatalytic Reactor: The Effect of Nanofluids Concentration (M. A. Annuar, M. Z. M. . Zamirullah, N. A. . Zuraini, N. H. H. . Hairom, Z. . Awang, & M. Ismail, Trans.). Journal of Science and Technology, 18(1), 142-154. https://publisher.uthm.edu.my/ojs/index.php/JST/article/view/24577