Characterization of Adsorbent Developed from Rice Husk: Effect of Surface Functional Group on Phenol Adsorption

Over the last three decades, there has been increasing global concern over the public health impacts attributed to environmental pollution. Among various water pollutants, phenol and its derivatives are the most toxic because they are carcinogenic in nature. The objective of this study was to develo...

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Main Authors: Daffalla, S.B., H., Mukhtar, Shaharun, Maizatul Shima
Format: Citation Index Journal
Published: 2010
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Online Access:http://eprints.utp.edu.my/2561/1/qredirect.php%3Fdoi%3Djas.2010.1060.1067%26linkid%3Dpdf
http://scialert.net/abstract/?doi=jas.2010.1060.1067
http://eprints.utp.edu.my/2561/
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spelling my.utp.eprints.25612017-01-19T08:24:06Z Characterization of Adsorbent Developed from Rice Husk: Effect of Surface Functional Group on Phenol Adsorption Daffalla, S.B. H., Mukhtar Shaharun, Maizatul Shima TP Chemical technology Over the last three decades, there has been increasing global concern over the public health impacts attributed to environmental pollution. Among various water pollutants, phenol and its derivatives are the most toxic because they are carcinogenic in nature. The objective of this study was to develop novel, low-cost adsorbent from rice husk modified by thermal and chemical treatments for the effective removal of phenol from industrial wastewater. The physical and surface properties of the developed adsorbents were characterized using FTIR, SEM and FSEM. The results indicated that the pretreatment of rice husk has caused the functional groups (-OH, Si-OH, C-H, C=O, C=C, CH2, CH3, CO, Si-O-Si, C-C, Si-H, -O-CH3) on the surface of adsorbent to change and the specific surface area to increase. The adsorption capacity was greatly influenced by surface group changes. The effects of the presence of the surface functional group on adsorption of phenol were analyzed by observing the shifting of the FTIR peaks after the adsorption experiment. Analysis of FTIR shows that the -OH, C-H,-CO, C-OH, Si-OH and -Si-H groups contribute to the adsorption of phenol onto the surface of adsorbent. 2010-06-01 Citation Index Journal NonPeerReviewed application/pdf http://eprints.utp.edu.my/2561/1/qredirect.php%3Fdoi%3Djas.2010.1060.1067%26linkid%3Dpdf http://scialert.net/abstract/?doi=jas.2010.1060.1067 Daffalla, S.B. and H., Mukhtar and Shaharun, Maizatul Shima (2010) Characterization of Adsorbent Developed from Rice Husk: Effect of Surface Functional Group on Phenol Adsorption. [Citation Index Journal] http://eprints.utp.edu.my/2561/
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
topic TP Chemical technology
spellingShingle TP Chemical technology
Daffalla, S.B.
H., Mukhtar
Shaharun, Maizatul Shima
Characterization of Adsorbent Developed from Rice Husk: Effect of Surface Functional Group on Phenol Adsorption
description Over the last three decades, there has been increasing global concern over the public health impacts attributed to environmental pollution. Among various water pollutants, phenol and its derivatives are the most toxic because they are carcinogenic in nature. The objective of this study was to develop novel, low-cost adsorbent from rice husk modified by thermal and chemical treatments for the effective removal of phenol from industrial wastewater. The physical and surface properties of the developed adsorbents were characterized using FTIR, SEM and FSEM. The results indicated that the pretreatment of rice husk has caused the functional groups (-OH, Si-OH, C-H, C=O, C=C, CH2, CH3, CO, Si-O-Si, C-C, Si-H, -O-CH3) on the surface of adsorbent to change and the specific surface area to increase. The adsorption capacity was greatly influenced by surface group changes. The effects of the presence of the surface functional group on adsorption of phenol were analyzed by observing the shifting of the FTIR peaks after the adsorption experiment. Analysis of FTIR shows that the -OH, C-H,-CO, C-OH, Si-OH and -Si-H groups contribute to the adsorption of phenol onto the surface of adsorbent.
format Citation Index Journal
author Daffalla, S.B.
H., Mukhtar
Shaharun, Maizatul Shima
author_facet Daffalla, S.B.
H., Mukhtar
Shaharun, Maizatul Shima
author_sort Daffalla, S.B.
title Characterization of Adsorbent Developed from Rice Husk: Effect of Surface Functional Group on Phenol Adsorption
title_short Characterization of Adsorbent Developed from Rice Husk: Effect of Surface Functional Group on Phenol Adsorption
title_full Characterization of Adsorbent Developed from Rice Husk: Effect of Surface Functional Group on Phenol Adsorption
title_fullStr Characterization of Adsorbent Developed from Rice Husk: Effect of Surface Functional Group on Phenol Adsorption
title_full_unstemmed Characterization of Adsorbent Developed from Rice Husk: Effect of Surface Functional Group on Phenol Adsorption
title_sort characterization of adsorbent developed from rice husk: effect of surface functional group on phenol adsorption
publishDate 2010
url http://eprints.utp.edu.my/2561/1/qredirect.php%3Fdoi%3Djas.2010.1060.1067%26linkid%3Dpdf
http://scialert.net/abstract/?doi=jas.2010.1060.1067
http://eprints.utp.edu.my/2561/
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