Statistical Optimization of Adsorption Process for Removal of Methylene Blue Using Durio Zibethinus Murr Shell

Adsorption of methylene blue (MB) was investigated using physically prepared Durio Zibethinus Murr shell activated carbon (DZMAC). Response surface methodology (RSM) statistical technique was used to optimise the preparation conditions: activation power, activation time, and CO2 flow, with the perce...

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發表在:AIP Conference Proceedings
主要作者: 2-s2.0-85177605684
格式: Conference paper
語言:English
出版: American Institute of Physics Inc. 2023
在線閱讀:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85177605684&doi=10.1063%2f5.0134035&partnerID=40&md5=f798185b38059d4c31d951b016311197
id Mohamed Latiff M.F.P.; Ruzami N.S.; Kamaruddin M.A.; EM Yahaya N.K.; Mohd Zahid M.Z.A.
spelling Mohamed Latiff M.F.P.; Ruzami N.S.; Kamaruddin M.A.; EM Yahaya N.K.; Mohd Zahid M.Z.A.
2-s2.0-85177605684
Statistical Optimization of Adsorption Process for Removal of Methylene Blue Using Durio Zibethinus Murr Shell
2023
AIP Conference Proceedings
2712
1
10.1063/5.0134035
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85177605684&doi=10.1063%2f5.0134035&partnerID=40&md5=f798185b38059d4c31d951b016311197
Adsorption of methylene blue (MB) was investigated using physically prepared Durio Zibethinus Murr shell activated carbon (DZMAC). Response surface methodology (RSM) statistical technique was used to optimise the preparation conditions: activation power, activation time, and CO2 flow, with the percentage of MB dye removal and DZMAC yield as the targeted responses. Based on the central composite design (CCD), two empirical models were developed and validated by applying ANOVA analysis incorporating interaction effects of three variables using RSM to the two responses. The optimum conditions for preparing DZMAC for adsorption of MB dye were found as follows: activation power of 666-Watt, activation time of 2.83 minutes, and CO2 flow of 100 cm3, which resulted in 70% of MB dye removal and 25.21% of DZMAC yield. Experimental results obtained agreed satisfactorily well with the model predictions. © 2023 American Institute of Physics Inc.. All rights reserved.
American Institute of Physics Inc.
0094243X
English
Conference paper

author 2-s2.0-85177605684
spellingShingle 2-s2.0-85177605684
Statistical Optimization of Adsorption Process for Removal of Methylene Blue Using Durio Zibethinus Murr Shell
author_facet 2-s2.0-85177605684
author_sort 2-s2.0-85177605684
title Statistical Optimization of Adsorption Process for Removal of Methylene Blue Using Durio Zibethinus Murr Shell
title_short Statistical Optimization of Adsorption Process for Removal of Methylene Blue Using Durio Zibethinus Murr Shell
title_full Statistical Optimization of Adsorption Process for Removal of Methylene Blue Using Durio Zibethinus Murr Shell
title_fullStr Statistical Optimization of Adsorption Process for Removal of Methylene Blue Using Durio Zibethinus Murr Shell
title_full_unstemmed Statistical Optimization of Adsorption Process for Removal of Methylene Blue Using Durio Zibethinus Murr Shell
title_sort Statistical Optimization of Adsorption Process for Removal of Methylene Blue Using Durio Zibethinus Murr Shell
publishDate 2023
container_title AIP Conference Proceedings
container_volume 2712
container_issue 1
doi_str_mv 10.1063/5.0134035
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85177605684&doi=10.1063%2f5.0134035&partnerID=40&md5=f798185b38059d4c31d951b016311197
description Adsorption of methylene blue (MB) was investigated using physically prepared Durio Zibethinus Murr shell activated carbon (DZMAC). Response surface methodology (RSM) statistical technique was used to optimise the preparation conditions: activation power, activation time, and CO2 flow, with the percentage of MB dye removal and DZMAC yield as the targeted responses. Based on the central composite design (CCD), two empirical models were developed and validated by applying ANOVA analysis incorporating interaction effects of three variables using RSM to the two responses. The optimum conditions for preparing DZMAC for adsorption of MB dye were found as follows: activation power of 666-Watt, activation time of 2.83 minutes, and CO2 flow of 100 cm3, which resulted in 70% of MB dye removal and 25.21% of DZMAC yield. Experimental results obtained agreed satisfactorily well with the model predictions. © 2023 American Institute of Physics Inc.. All rights reserved.
publisher American Institute of Physics Inc.
issn 0094243X
language English
format Conference paper
accesstype
record_format scopus
collection Scopus
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