Ultrasound assisted synthesis of Fe‐TiO 2 and Ce‐TiO 2 catalysts and subsequent application for photocatalytic, sonocatalytic, and sonophotocatalytic decolorization of basic Victoria blue dye
Abstract Synthesis of Fe‐TiO 2 and Ce‐TiO 2 catalysts using conventional, and ultrasound assisted (US) homogeneous coprecipitation method has been investigated. Effects of ultrasonic irradiation time and ultrasonic power on catalyst synthesis were studied and it was elucidated that best conditions w...
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Published in | Environmental quality management |
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Format | Journal Article |
Language | English |
Published |
08.02.2023
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Abstract | Abstract
Synthesis of Fe‐TiO
2
and Ce‐TiO
2
catalysts using conventional, and ultrasound assisted (US) homogeneous coprecipitation method has been investigated. Effects of ultrasonic irradiation time and ultrasonic power on catalyst synthesis were studied and it was elucidated that best conditions were 140 W and 60 min, respectively. Characterization using FE‐SEM revealed spherical particles with the size range from 36.4 to 49.4 nm whereas XRD analysis affirmed a mixture of anatase, rutile, and brookite TiO
2
phase with crystallite size ranging from 4.18 to 12.99 nm. BET analysis revealed highest specific surface area (211.59 m
2
/g) for the sonochemically synthesized Ce‐TiO
2
. The process intensification benefits demonstrated in catalyst synthesis were better crystallinity, lower particle size, and higher surface area. The application of catalyst efficacy was tested for photocatalytic, sonocatalytic, and sonophotocatalytic oxidation where maximum decolorization as 71.97% was obtained for sonochemically synthesized Ce‐TiO
2
applied in the sonophotocatalytic approach. Studies related to regeneration, stability, and leaching of Ce and Ti ion from the sonochemically synthesized Ce‐TiO
2
catalyst were also performed. It was observed that the catalyst can be regenerated easily and there were no structural changes in the catalyst after regeneration with negligible leaching of the ions from the catalyst into the solution. Overall, an improved process for catalyst synthesis with intensified decolorization application was demonstrated based on the use of ultrasound. |
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AbstractList | Abstract
Synthesis of Fe‐TiO
2
and Ce‐TiO
2
catalysts using conventional, and ultrasound assisted (US) homogeneous coprecipitation method has been investigated. Effects of ultrasonic irradiation time and ultrasonic power on catalyst synthesis were studied and it was elucidated that best conditions were 140 W and 60 min, respectively. Characterization using FE‐SEM revealed spherical particles with the size range from 36.4 to 49.4 nm whereas XRD analysis affirmed a mixture of anatase, rutile, and brookite TiO
2
phase with crystallite size ranging from 4.18 to 12.99 nm. BET analysis revealed highest specific surface area (211.59 m
2
/g) for the sonochemically synthesized Ce‐TiO
2
. The process intensification benefits demonstrated in catalyst synthesis were better crystallinity, lower particle size, and higher surface area. The application of catalyst efficacy was tested for photocatalytic, sonocatalytic, and sonophotocatalytic oxidation where maximum decolorization as 71.97% was obtained for sonochemically synthesized Ce‐TiO
2
applied in the sonophotocatalytic approach. Studies related to regeneration, stability, and leaching of Ce and Ti ion from the sonochemically synthesized Ce‐TiO
2
catalyst were also performed. It was observed that the catalyst can be regenerated easily and there were no structural changes in the catalyst after regeneration with negligible leaching of the ions from the catalyst into the solution. Overall, an improved process for catalyst synthesis with intensified decolorization application was demonstrated based on the use of ultrasound. |
Author | Gogate, Parag R. Dey, Ananya |
Author_xml | – sequence: 1 givenname: Ananya surname: Dey fullname: Dey, Ananya organization: Chemical Engineering Department Institute of Chemical Technology Mumbai Maharashtra India, Chemical Engineering Department NMIMS Mukesh Patel School of Technology Management & Engineering Mumbai Maharashtra India – sequence: 2 givenname: Parag R. orcidid: 0000-0003-0044-7227 surname: Gogate fullname: Gogate, Parag R. organization: Chemical Engineering Department Institute of Chemical Technology Mumbai Maharashtra India |
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CitedBy_id | crossref_primary_10_1002_jctb_7540 crossref_primary_10_1016_j_inoche_2023_111686 crossref_primary_10_1038_s41598_023_45274_1 crossref_primary_10_1016_j_jallcom_2024_174690 crossref_primary_10_1016_j_ultsonch_2023_106426 |
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Snippet | Abstract
Synthesis of Fe‐TiO
2
and Ce‐TiO
2
catalysts using conventional, and ultrasound assisted (US) homogeneous coprecipitation method has been... |
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Title | Ultrasound assisted synthesis of Fe‐TiO 2 and Ce‐TiO 2 catalysts and subsequent application for photocatalytic, sonocatalytic, and sonophotocatalytic decolorization of basic Victoria blue dye |
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