Heterogeneous photocatalysis of glove wastewater over green synthesized zno immobilized on natural hydroxyapatite

Photocatalytic degradation of glove wastewater has been studied in this research to treat the ongoing water pollution from the glove industry. The green synthesized using plant extracts was emerged as a renewable, cost effectively and environmental friendly method that can be used to synthesis zinc...

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Main Author: Leow, Guo Quan
Format: Final Year Project / Dissertation / Thesis
Published: 2019
Subjects:
Online Access:http://eprints.utar.edu.my/3901/
http://eprints.utar.edu.my/3901/1/fyp_PE_2019_LGQ.pdf
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author Leow, Guo Quan
author_facet Leow, Guo Quan
author_sort Leow, Guo Quan
building UTAR Institutional Repository
collection Online Access
description Photocatalytic degradation of glove wastewater has been studied in this research to treat the ongoing water pollution from the glove industry. The green synthesized using plant extracts was emerged as a renewable, cost effectively and environmental friendly method that can be used to synthesis zinc oxide (ZnO) photocatalyst. Corn husk extract was used to synthesis ZnO without the usage of harmful chemicals. Besides that, the ZnO also coupled with the natural hydroxyapatite (HAp) that obtained from buffalo bone to enhance the photocatalysis. ZnO, HAp and ZnO/HAp was characterized through numerous analyses which included X-ray diffraction (XRD), scanning electron microscopy (SEM), energy dispersive X-ray (EDX), Fourier transform infrared spectroscopy (FTIR), Ultraviolet-visible diffuse reflectance spectroscopy (UV-vis DRS), and Particle Size Analysis (PSA). The ZnO was observed as hexagonal wurtzite structure and HAp was indicate in the XRD analysis. Green synthesized ZnO, HAp and ZnO/HAp was observed as porous and fluffy in nature in the SEM analysis. The fine particle of ZnO and ZnO/HAp was observed through PSA. EDX analysis determines the composition of element that presented in the photocatalyst. The content of HAp on the ZnO was studied in this research by varying 20 wt% to 50 wt % of HAp. The optimum HAp content on ZnO was ZnO-50%HAp was achieved 100 % photocatalytic degradation efficiency of glove wastewater. The effects of initial wastewater concentration and ZnO/HAp catalyst loading were studied. The optimal ZnO-50%HAp catalyst loading was found to be 1 g/L. Consequently, the effect of various scavengers was also investigated to determine the role of each active species in the reaction mechanism. The h+ radicals was observed to be the main reactive species in this studY.
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format Final Year Project / Dissertation / Thesis
id utar-3901
institution Universiti Tunku Abdul Rahman
institution_category Local University
last_indexed 2025-11-15T19:31:51Z
publishDate 2019
recordtype eprints
repository_type Digital Repository
spelling utar-39012021-01-08T07:41:56Z Heterogeneous photocatalysis of glove wastewater over green synthesized zno immobilized on natural hydroxyapatite Leow, Guo Quan TP Chemical technology Photocatalytic degradation of glove wastewater has been studied in this research to treat the ongoing water pollution from the glove industry. The green synthesized using plant extracts was emerged as a renewable, cost effectively and environmental friendly method that can be used to synthesis zinc oxide (ZnO) photocatalyst. Corn husk extract was used to synthesis ZnO without the usage of harmful chemicals. Besides that, the ZnO also coupled with the natural hydroxyapatite (HAp) that obtained from buffalo bone to enhance the photocatalysis. ZnO, HAp and ZnO/HAp was characterized through numerous analyses which included X-ray diffraction (XRD), scanning electron microscopy (SEM), energy dispersive X-ray (EDX), Fourier transform infrared spectroscopy (FTIR), Ultraviolet-visible diffuse reflectance spectroscopy (UV-vis DRS), and Particle Size Analysis (PSA). The ZnO was observed as hexagonal wurtzite structure and HAp was indicate in the XRD analysis. Green synthesized ZnO, HAp and ZnO/HAp was observed as porous and fluffy in nature in the SEM analysis. The fine particle of ZnO and ZnO/HAp was observed through PSA. EDX analysis determines the composition of element that presented in the photocatalyst. The content of HAp on the ZnO was studied in this research by varying 20 wt% to 50 wt % of HAp. The optimum HAp content on ZnO was ZnO-50%HAp was achieved 100 % photocatalytic degradation efficiency of glove wastewater. The effects of initial wastewater concentration and ZnO/HAp catalyst loading were studied. The optimal ZnO-50%HAp catalyst loading was found to be 1 g/L. Consequently, the effect of various scavengers was also investigated to determine the role of each active species in the reaction mechanism. The h+ radicals was observed to be the main reactive species in this studY. 2019-05-01 Final Year Project / Dissertation / Thesis NonPeerReviewed application/pdf http://eprints.utar.edu.my/3901/1/fyp_PE_2019_LGQ.pdf Leow, Guo Quan (2019) Heterogeneous photocatalysis of glove wastewater over green synthesized zno immobilized on natural hydroxyapatite. Final Year Project, UTAR. http://eprints.utar.edu.my/3901/
spellingShingle TP Chemical technology
Leow, Guo Quan
Heterogeneous photocatalysis of glove wastewater over green synthesized zno immobilized on natural hydroxyapatite
title Heterogeneous photocatalysis of glove wastewater over green synthesized zno immobilized on natural hydroxyapatite
title_full Heterogeneous photocatalysis of glove wastewater over green synthesized zno immobilized on natural hydroxyapatite
title_fullStr Heterogeneous photocatalysis of glove wastewater over green synthesized zno immobilized on natural hydroxyapatite
title_full_unstemmed Heterogeneous photocatalysis of glove wastewater over green synthesized zno immobilized on natural hydroxyapatite
title_short Heterogeneous photocatalysis of glove wastewater over green synthesized zno immobilized on natural hydroxyapatite
title_sort heterogeneous photocatalysis of glove wastewater over green synthesized zno immobilized on natural hydroxyapatite
topic TP Chemical technology
url http://eprints.utar.edu.my/3901/
http://eprints.utar.edu.my/3901/1/fyp_PE_2019_LGQ.pdf