Mesoporous MCM-41 modified with Cu(II) for indole removal: A Taguchi design

Indole is a hazardous substance existing in the curl oil, which released to the environment by various industrial activities; thus, decreasing its ratio from nature seems to be essential. In this study, a facial pathway for loading Cu(II) particles on MCM-41 mesoporous material was introduced as an...

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Main Authors: S. A. Khoshkarvandani, R. Fazaeli, M. G. Saravani, H. Pasdar
Format: Article
Language:English
Published: Growing Science 2021-01-01
Series:Current Chemistry Letters
Subjects:
Online Access:http://www.growingscience.com/ccl/Vol10/ccl_2020_7.pdf
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author S. A. Khoshkarvandani
R. Fazaeli
M. G. Saravani
H. Pasdar
author_facet S. A. Khoshkarvandani
R. Fazaeli
M. G. Saravani
H. Pasdar
author_sort S. A. Khoshkarvandani
collection DOAJ
description Indole is a hazardous substance existing in the curl oil, which released to the environment by various industrial activities; thus, decreasing its ratio from nature seems to be essential. In this study, a facial pathway for loading Cu(II) particles on MCM-41 mesoporous material was introduced as an efficient catalyst for indole oxidation. The obtained catalyst was characterized by XRD, FESEM, EDS, TEM and BET/BJH techniques. Based on Taguchi method, indole oxidation via prepared catalyst at mild condition was evaluated. By applying this method, the operating factors including Indole initial concentration (mg/L), pH value and the mass of catalyst (g) were optimized. It was found that pH plays the most crucial role in indole oxidation, on the other word, in alkaline environment; indole oxidation was happened with higher yield.
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spelling doaj.art-90e5ed1223cc4071bd06822700b568652022-12-21T22:11:54ZengGrowing ScienceCurrent Chemistry Letters1927-72961927-730X2021-01-011011810.5267/j.ccl.2020.4.002Mesoporous MCM-41 modified with Cu(II) for indole removal: A Taguchi designS. A. KhoshkarvandaniR. FazaeliM. G. SaravaniH. PasdarIndole is a hazardous substance existing in the curl oil, which released to the environment by various industrial activities; thus, decreasing its ratio from nature seems to be essential. In this study, a facial pathway for loading Cu(II) particles on MCM-41 mesoporous material was introduced as an efficient catalyst for indole oxidation. The obtained catalyst was characterized by XRD, FESEM, EDS, TEM and BET/BJH techniques. Based on Taguchi method, indole oxidation via prepared catalyst at mild condition was evaluated. By applying this method, the operating factors including Indole initial concentration (mg/L), pH value and the mass of catalyst (g) were optimized. It was found that pH plays the most crucial role in indole oxidation, on the other word, in alkaline environment; indole oxidation was happened with higher yield.http://www.growingscience.com/ccl/Vol10/ccl_2020_7.pdfcu(ii)/mcm-41mesoporeindoletaguchioptimization
spellingShingle S. A. Khoshkarvandani
R. Fazaeli
M. G. Saravani
H. Pasdar
Mesoporous MCM-41 modified with Cu(II) for indole removal: A Taguchi design
Current Chemistry Letters
cu(ii)/mcm-41
mesopore
indole
taguchi
optimization
title Mesoporous MCM-41 modified with Cu(II) for indole removal: A Taguchi design
title_full Mesoporous MCM-41 modified with Cu(II) for indole removal: A Taguchi design
title_fullStr Mesoporous MCM-41 modified with Cu(II) for indole removal: A Taguchi design
title_full_unstemmed Mesoporous MCM-41 modified with Cu(II) for indole removal: A Taguchi design
title_short Mesoporous MCM-41 modified with Cu(II) for indole removal: A Taguchi design
title_sort mesoporous mcm 41 modified with cu ii for indole removal a taguchi design
topic cu(ii)/mcm-41
mesopore
indole
taguchi
optimization
url http://www.growingscience.com/ccl/Vol10/ccl_2020_7.pdf
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