Ultrasound-assisted photocatalytic decomposition of rifadin with biochar and CNT-based NiCr layered double hydroxides

Modification of layered double hydroxides (LDHs) is known to be beneficial for boosting the consistent formation of reactive oxygen species (ROSs) and enhancing the photocatalytic process. Herein, a facile synthesis method for preparing carbon nanotube (CNT) and biochar (BC)-based NiCr LDH (NC) nanocomposites as a sonophotocatalyst for the efficient degradation of rifadin (RA) was provided. The formation of thin nanosheet structures of NC along with porous and nanotube structures of BC and CNT was well approved by scanning electron microscope (SEM) and high-resolution transmission electron microscope (HRTEM). The bandgaps of the nanocomposites and pristine LDH are determined by differential reflectance spectroscopy (DRS) analysis. Results unveiled that sonophotocatalysis presented high efficacy in comparison with sonocatalysis and photocatalysis. Under optimized conditions, a 15 mg L-1 of RA at pH 8 treated with 1 g L-1 of NiCr LDH/BC (NC/BC) demonstrated 80.3 sonophotocatalytic degradation during 90 min. To shed light on the durability and stability of NC/BC, four consecutive cycles were operated. The chemical structure and surface morphology of the reused catalyst were stable, revealed by SEM and Fourier transform infrared (FTIR) analyses. It is deduced that NC/BC is an advantageous sonophotocatalyst for the decomposition of emerging pharmaceuticals.

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Название публикации
(dc.title)
Ultrasound-assisted photocatalytic decomposition of rifadin with biochar and CNT-based NiCr layered double hydroxides
Автор/ы
(dc.contributor.yazarlar)
Tannaz Sadeghi Rad, Emine Sevval Yazici, Alireza Khataee, Erhan Gengec, Mehmet Kobya
Вид публикации
(dc.type)
Makale
Язык
(dc.language)
İngilizce
Год публикации
(dc.date.issued)
2023
Национальный/Международный
(dc.identifier.ulusaluluslararasi)
Uluslararası
Источник
(dc.relation.journal)
Surfaces and Interfaces
Том/№
(dc.identifier.volume)
36
Страница
(dc.identifier.startpage)
Article Number: 102628
ISSN/ISBN
(dc.identifier.issn)
ISSN: 2468-0230
Издатель
(dc.publisher)
Elsevier
Базы данных
(dc.contributor.veritaban)
Web of Science Core Collection
Базы данных
(dc.contributor.veritaban)
Sciencedirect
Базы данных
(dc.contributor.veritaban)
Scopus
Вид индекса
(dc.identifier.index)
SCI Expanded
Вид индекса
(dc.identifier.index)
Scopus
Импакт-фактор
(dc.identifier.etkifaktoru)
6,2 / 2022-WOS / 5 Year: 5,8
Резюме
(dc.description.abstract)
Modification of layered double hydroxides (LDHs) is known to be beneficial for boosting the consistent formation of reactive oxygen species (ROSs) and enhancing the photocatalytic process. Herein, a facile synthesis method for preparing carbon nanotube (CNT) and biochar (BC)-based NiCr LDH (NC) nanocomposites as a sonophotocatalyst for the efficient degradation of rifadin (RA) was provided. The formation of thin nanosheet structures of NC along with porous and nanotube structures of BC and CNT was well approved by scanning electron microscope (SEM) and high-resolution transmission electron microscope (HRTEM). The bandgaps of the nanocomposites and pristine LDH are determined by differential reflectance spectroscopy (DRS) analysis. Results unveiled that sonophotocatalysis presented high efficacy in comparison with sonocatalysis and photocatalysis. Under optimized conditions, a 15 mg L-1 of RA at pH 8 treated with 1 g L-1 of NiCr LDH/BC (NC/BC) demonstrated 80.3 sonophotocatalytic degradation during 90 min. To shed light on the durability and stability of NC/BC, four consecutive cycles were operated. The chemical structure and surface morphology of the reused catalyst were stable, revealed by SEM and Fourier transform infrared (FTIR) analyses. It is deduced that NC/BC is an advantageous sonophotocatalyst for the decomposition of emerging pharmaceuticals.
URL
(dc.rights)
https://www.sciencedirect.com/science/article/pii/S2468023022008859
DOI
(dc.identifier.doi)
10.1016/j.surfin.2022.102628
Факультет / Институт
(dc.identifier.fakulte)
Mühendislik Fakültesi
Кафедра
(dc.identifier.bolum)
Çevre Mühendisliği Bölümü
Автор(ы) в учреждении
(dc.contributor.author)
Mehmet KOBYA
№ регистрации
(dc.identifier.kayitno)
BLAE65189C
Дата регистрации
(dc.date.available)
2023-02-23
Заметка (Год публикации)
(dc.identifier.notyayinyili)
February 2023
Wos No
(dc.identifier.wos)
WOS:000922949800001
Тематический рубрикатор
(dc.subject)
advanced oxidation process
Тематический рубрикатор
(dc.subject)
biochar
Тематический рубрикатор
(dc.subject)
carbon nanotube
Тематический рубрикатор
(dc.subject)
layered double hydroxide
Тематический рубрикатор
(dc.subject)
antibiotic
Анализы
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