Adsorption of Malachite Green Using Rice Husk-Based Adsorbents

This study investigates the adsorption of Malachite Green using chitosan alginate rice husk beads and rice husk powder. The methodology involved adsorbent preparation, adsorption study, kinetic and isotherm models evaluation and adsorbent characterization. The selected malachite green adsorption con...

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Published in:INTERNATIONAL JOURNAL OF INTEGRATED ENGINEERING
Main Authors: Manok, Angelie Uni Mapong Anak; Ismail, Farhanny; Salizam, Dhia Zur'Ain Noor; Nasir, Nor Atikah Husna Ahmad; Wu, Rui Hong; Van Hullebusch, Eric D.; Tay, Chia Chay
Format: Article
Language:English
Published: UNIV TUN HUSSEIN ONN MALAYSIA 2024
Subjects:
Online Access:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-recordWOS:001364045900011
author Manok
Angelie Uni Mapong Anak; Ismail
Farhanny; Salizam
Dhia Zur'Ain Noor; Nasir
Nor Atikah Husna Ahmad; Wu
Rui Hong; Van Hullebusch
Eric D.; Tay
Chia Chay
spellingShingle Manok
Angelie Uni Mapong Anak; Ismail
Farhanny; Salizam
Dhia Zur'Ain Noor; Nasir
Nor Atikah Husna Ahmad; Wu
Rui Hong; Van Hullebusch
Eric D.; Tay
Chia Chay
Adsorption of Malachite Green Using Rice Husk-Based Adsorbents
Engineering
author_facet Manok
Angelie Uni Mapong Anak; Ismail
Farhanny; Salizam
Dhia Zur'Ain Noor; Nasir
Nor Atikah Husna Ahmad; Wu
Rui Hong; Van Hullebusch
Eric D.; Tay
Chia Chay
author_sort Manok
spelling Manok, Angelie Uni Mapong Anak; Ismail, Farhanny; Salizam, Dhia Zur'Ain Noor; Nasir, Nor Atikah Husna Ahmad; Wu, Rui Hong; Van Hullebusch, Eric D.; Tay, Chia Chay
Adsorption of Malachite Green Using Rice Husk-Based Adsorbents
INTERNATIONAL JOURNAL OF INTEGRATED ENGINEERING
English
Article
This study investigates the adsorption of Malachite Green using chitosan alginate rice husk beads and rice husk powder. The methodology involved adsorbent preparation, adsorption study, kinetic and isotherm models evaluation and adsorbent characterization. The selected malachite green adsorption conditions were 50% removal at 1.35 g for chitosan alginate rice husk beads and 0.02 g for rice husk powder, 60 minutes contact time and 5 mg/L initial oncentration. Both adsorbents were fitted to the pseudo-second-order kinetic model rather than the pseudo-first-order kinetic model, indicating chemisorption is the rate-limiting step. Chitosan alginate rice husk beads were better fitted to the heterogeneous Freundlich isotherm model, while rice husk powder matched better with the homogeneous monolayer Langmuir isotherm model. Chitosan alginate beads showed lower adsorption than rice husk powder due to blocked functional groups. The FTIR characterization showed functional groups-OH,-NH,-C-H and C=C present on both adsorbents. For chitosan alginate beads, the shift, disappearance and appearance of new peaks after Malachite Green adsorption indicated bonding breakdown and reaction occurred with Malachite Green, thus new bonding was formed. SEM micrographs illustrated surface changed from smooth to rough and porous were filled by particles after Malachite Green adsorption. In this study, rice husk-based adsorbent has the potential to be used for removing Malachite Green from aqueous solutions, especially in pilot study or industrial applications.
UNIV TUN HUSSEIN ONN MALAYSIA
2229-838X

2024
16
8
10.30880/ijie.2024.16.08.011
Engineering

WOS:001364045900011
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-recordWOS:001364045900011
title Adsorption of Malachite Green Using Rice Husk-Based Adsorbents
title_short Adsorption of Malachite Green Using Rice Husk-Based Adsorbents
title_full Adsorption of Malachite Green Using Rice Husk-Based Adsorbents
title_fullStr Adsorption of Malachite Green Using Rice Husk-Based Adsorbents
title_full_unstemmed Adsorption of Malachite Green Using Rice Husk-Based Adsorbents
title_sort Adsorption of Malachite Green Using Rice Husk-Based Adsorbents
container_title INTERNATIONAL JOURNAL OF INTEGRATED ENGINEERING
language English
format Article
description This study investigates the adsorption of Malachite Green using chitosan alginate rice husk beads and rice husk powder. The methodology involved adsorbent preparation, adsorption study, kinetic and isotherm models evaluation and adsorbent characterization. The selected malachite green adsorption conditions were 50% removal at 1.35 g for chitosan alginate rice husk beads and 0.02 g for rice husk powder, 60 minutes contact time and 5 mg/L initial oncentration. Both adsorbents were fitted to the pseudo-second-order kinetic model rather than the pseudo-first-order kinetic model, indicating chemisorption is the rate-limiting step. Chitosan alginate rice husk beads were better fitted to the heterogeneous Freundlich isotherm model, while rice husk powder matched better with the homogeneous monolayer Langmuir isotherm model. Chitosan alginate beads showed lower adsorption than rice husk powder due to blocked functional groups. The FTIR characterization showed functional groups-OH,-NH,-C-H and C=C present on both adsorbents. For chitosan alginate beads, the shift, disappearance and appearance of new peaks after Malachite Green adsorption indicated bonding breakdown and reaction occurred with Malachite Green, thus new bonding was formed. SEM micrographs illustrated surface changed from smooth to rough and porous were filled by particles after Malachite Green adsorption. In this study, rice husk-based adsorbent has the potential to be used for removing Malachite Green from aqueous solutions, especially in pilot study or industrial applications.
publisher UNIV TUN HUSSEIN ONN MALAYSIA
issn 2229-838X

publishDate 2024
container_volume 16
container_issue 8
doi_str_mv 10.30880/ijie.2024.16.08.011
topic Engineering
topic_facet Engineering
accesstype
id WOS:001364045900011
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-recordWOS:001364045900011
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