Synthesis of GO-ZnO via impregnation method for fluoride removal in wastewater / Mohamad Hanafi Mohamad Rosli, Nurulhuda Amri and Norhusna Mohamad Nor

High concentration of fluoride in wastewater discharge from various industries is threatening the environment due to its hazardous effects and properties. This research work aims to develop an efficient adsorbent for fluoride removal in wastewater. Graphite oxide (GO) was impregnated with ZnO nanopa...

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Main Authors: Mohamad Rosli, Mohamad Hanafi, Amri, Nurulhuda, Mohamad Nor, Norhusna
Format: Article
Language:English
Published: Universiti Teknologi Mara Cawangan Pulau Pinang 2019
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Online Access:http://ir.uitm.edu.my/id/eprint/28937/1/AJ_MOHAMAD%20HANAFI%20MOHAMAD%20ROSLI%20EAJ%20P%2019.pdf
http://ir.uitm.edu.my/id/eprint/28937/
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spelling my.uitm.ir.289372020-03-30T08:43:50Z http://ir.uitm.edu.my/id/eprint/28937/ Synthesis of GO-ZnO via impregnation method for fluoride removal in wastewater / Mohamad Hanafi Mohamad Rosli, Nurulhuda Amri and Norhusna Mohamad Nor Mohamad Rosli, Mohamad Hanafi Amri, Nurulhuda Mohamad Nor, Norhusna Sewage disposal systems Treatment, purification, etc. Chemical engineering Special processes and operations Solidification High concentration of fluoride in wastewater discharge from various industries is threatening the environment due to its hazardous effects and properties. This research work aims to develop an efficient adsorbent for fluoride removal in wastewater. Graphite oxide (GO) was impregnated with ZnO nanoparticles as an adsorbent, and the effect of synthesis parameters of GO-ZnO adsorbent for fluoride removal were studied (sonication temperature, synthesis time, and ratio of GO to ZnO). The surface functional groups of these synthesized adsorbents were analyzed by using FTIR. The synthesis parameters that contribute to the highest adsorption capacity and percentage removal are 5:1 ratio of GO-ZnO, 45 ºC of sonication temperature and 60 minutes of synthesis time, respectively. The highest value of adsorption capacity obtained from the fluoride removal is 55.5 mg/g. The functional groups contained in the GO-ZnO adsorbent are hydroxyl group (O-H), C=O group, aromatics group, carboxyl group (C-O), epoxy group and alkoxy group. These functional groups showed significant impact towards fluoride adsorption due to the bonding of fluoride ion to the functional groups. Universiti Teknologi Mara Cawangan Pulau Pinang 2019-12-30 Article PeerReviewed text en http://ir.uitm.edu.my/id/eprint/28937/1/AJ_MOHAMAD%20HANAFI%20MOHAMAD%20ROSLI%20EAJ%20P%2019.pdf Mohamad Rosli, Mohamad Hanafi and Amri, Nurulhuda and Mohamad Nor, Norhusna (2019) Synthesis of GO-ZnO via impregnation method for fluoride removal in wastewater / Mohamad Hanafi Mohamad Rosli, Nurulhuda Amri and Norhusna Mohamad Nor. ESTEEM Academic Journal, 15. pp. 35-43. ISSN 2289-4934 http://uppp.uitm.edu.my
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Sewage disposal systems
Treatment, purification, etc.
Chemical engineering
Special processes and operations
Solidification
spellingShingle Sewage disposal systems
Treatment, purification, etc.
Chemical engineering
Special processes and operations
Solidification
Mohamad Rosli, Mohamad Hanafi
Amri, Nurulhuda
Mohamad Nor, Norhusna
Synthesis of GO-ZnO via impregnation method for fluoride removal in wastewater / Mohamad Hanafi Mohamad Rosli, Nurulhuda Amri and Norhusna Mohamad Nor
description High concentration of fluoride in wastewater discharge from various industries is threatening the environment due to its hazardous effects and properties. This research work aims to develop an efficient adsorbent for fluoride removal in wastewater. Graphite oxide (GO) was impregnated with ZnO nanoparticles as an adsorbent, and the effect of synthesis parameters of GO-ZnO adsorbent for fluoride removal were studied (sonication temperature, synthesis time, and ratio of GO to ZnO). The surface functional groups of these synthesized adsorbents were analyzed by using FTIR. The synthesis parameters that contribute to the highest adsorption capacity and percentage removal are 5:1 ratio of GO-ZnO, 45 ºC of sonication temperature and 60 minutes of synthesis time, respectively. The highest value of adsorption capacity obtained from the fluoride removal is 55.5 mg/g. The functional groups contained in the GO-ZnO adsorbent are hydroxyl group (O-H), C=O group, aromatics group, carboxyl group (C-O), epoxy group and alkoxy group. These functional groups showed significant impact towards fluoride adsorption due to the bonding of fluoride ion to the functional groups.
format Article
author Mohamad Rosli, Mohamad Hanafi
Amri, Nurulhuda
Mohamad Nor, Norhusna
author_facet Mohamad Rosli, Mohamad Hanafi
Amri, Nurulhuda
Mohamad Nor, Norhusna
author_sort Mohamad Rosli, Mohamad Hanafi
title Synthesis of GO-ZnO via impregnation method for fluoride removal in wastewater / Mohamad Hanafi Mohamad Rosli, Nurulhuda Amri and Norhusna Mohamad Nor
title_short Synthesis of GO-ZnO via impregnation method for fluoride removal in wastewater / Mohamad Hanafi Mohamad Rosli, Nurulhuda Amri and Norhusna Mohamad Nor
title_full Synthesis of GO-ZnO via impregnation method for fluoride removal in wastewater / Mohamad Hanafi Mohamad Rosli, Nurulhuda Amri and Norhusna Mohamad Nor
title_fullStr Synthesis of GO-ZnO via impregnation method for fluoride removal in wastewater / Mohamad Hanafi Mohamad Rosli, Nurulhuda Amri and Norhusna Mohamad Nor
title_full_unstemmed Synthesis of GO-ZnO via impregnation method for fluoride removal in wastewater / Mohamad Hanafi Mohamad Rosli, Nurulhuda Amri and Norhusna Mohamad Nor
title_sort synthesis of go-zno via impregnation method for fluoride removal in wastewater / mohamad hanafi mohamad rosli, nurulhuda amri and norhusna mohamad nor
publisher Universiti Teknologi Mara Cawangan Pulau Pinang
publishDate 2019
url http://ir.uitm.edu.my/id/eprint/28937/1/AJ_MOHAMAD%20HANAFI%20MOHAMAD%20ROSLI%20EAJ%20P%2019.pdf
http://ir.uitm.edu.my/id/eprint/28937/
http://uppp.uitm.edu.my
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score 13.160551