Role of hydrochloric acid treated HZSM-5 zeolite in Sm2Ti2O7/nHZSM-5 composite for photocatalytic degradation of ofloxacin

NaZSM-5 was treated in hydrochloric acid solution to prepare HZSM-5. The Sm2Ti2O7/nHZSM-5 composites were synthesized via a sol-gel route. The concentration of the hydrochloric acid solution could greatly influence the properties of the Sm2Ti2O7/nHZSM-5 composites, and the composites were characteri...

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Main Authors: Lili Yang, Kuiqi Wang, Jiao Yang, Wenjie Zhang
Format: Article
Language:English
Published: Elsevier 2020-09-01
Series:Journal of Materials Research and Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2238785420315775
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spelling doaj-d33de6ff01a54bf8abe509ba95595fb12020-11-25T03:43:54ZengElsevierJournal of Materials Research and Technology2238-78542020-09-01951058510596Role of hydrochloric acid treated HZSM-5 zeolite in Sm2Ti2O7/nHZSM-5 composite for photocatalytic degradation of ofloxacinLili Yang0Kuiqi Wang1Jiao Yang2Wenjie Zhang3School of Environmental and Chemical Engineering, Shenyang Ligong University, Shenyang 110159, ChinaSchool of Environmental and Chemical Engineering, Shenyang Ligong University, Shenyang 110159, ChinaSchool of Environmental and Chemical Engineering, Shenyang Ligong University, Shenyang 110159, ChinaCorresponding author.; School of Environmental and Chemical Engineering, Shenyang Ligong University, Shenyang 110159, ChinaNaZSM-5 was treated in hydrochloric acid solution to prepare HZSM-5. The Sm2Ti2O7/nHZSM-5 composites were synthesized via a sol-gel route. The concentration of the hydrochloric acid solution could greatly influence the properties of the Sm2Ti2O7/nHZSM-5 composites, and the composites were characterized to clarify the role of the HZSM-5 zeolite. The pyrochlore phase Sm2Ti2O7 was produced in the composites. The hydrochloric acid treatment resulted in the dealumination and enhanced crystallinity of the nHZSM-5 zeolites. The specific surface area of the zeolites was increased from 175.0 m2/g of NaZSM5 to 300.4 m2/g of 0.1HZSM-5, and the total pore volume in the ZSM-5 zeolites was notably enlarged too. The BET surface areas of the Sm2Ti2O7/nHZSM-5 composites (67.2–87.9 m2/g) were much larger than the surface area of the Sm2Ti2O7 (5.6 m2/g). Large mesopores and macropores were formed in the Sm2Ti2O7 layer of the composites. The band gap energies of the Sm2Ti2O7 and the composites were between 3.52 eV and 3.69 eV. 93.5% of the ofloxacin molecules were degraded on the Sm2Ti2O7/0.3HZSM-5 composite after 150 min of reaction. At the same time, the degradation efficiencies on the Sm2Ti2O7/NaZSM-5 and Sm2Ti2O7 were 70.0% and 45.1%. The reaction rate constants for the photocatalytic degradation of ofloxacin were 0.0163, 0.00769 and 0.00402 min−1 for the Sm2Ti2O7/0.3HZSM-5, Sm2Ti2O7/NaZSM-5 and Sm2Ti2O7, respectively. The increased production of hydroxyl radicals was related to the enhanced photocatalytic activity of the Sm2Ti2O7/nHZSM-5 composites.http://www.sciencedirect.com/science/article/pii/S2238785420315775Photocatalytic degradationSm2Ti2O7CompositeHZSM-5Ofloxacin
collection DOAJ
language English
format Article
sources DOAJ
author Lili Yang
Kuiqi Wang
Jiao Yang
Wenjie Zhang
spellingShingle Lili Yang
Kuiqi Wang
Jiao Yang
Wenjie Zhang
Role of hydrochloric acid treated HZSM-5 zeolite in Sm2Ti2O7/nHZSM-5 composite for photocatalytic degradation of ofloxacin
Journal of Materials Research and Technology
Photocatalytic degradation
Sm2Ti2O7
Composite
HZSM-5
Ofloxacin
author_facet Lili Yang
Kuiqi Wang
Jiao Yang
Wenjie Zhang
author_sort Lili Yang
title Role of hydrochloric acid treated HZSM-5 zeolite in Sm2Ti2O7/nHZSM-5 composite for photocatalytic degradation of ofloxacin
title_short Role of hydrochloric acid treated HZSM-5 zeolite in Sm2Ti2O7/nHZSM-5 composite for photocatalytic degradation of ofloxacin
title_full Role of hydrochloric acid treated HZSM-5 zeolite in Sm2Ti2O7/nHZSM-5 composite for photocatalytic degradation of ofloxacin
title_fullStr Role of hydrochloric acid treated HZSM-5 zeolite in Sm2Ti2O7/nHZSM-5 composite for photocatalytic degradation of ofloxacin
title_full_unstemmed Role of hydrochloric acid treated HZSM-5 zeolite in Sm2Ti2O7/nHZSM-5 composite for photocatalytic degradation of ofloxacin
title_sort role of hydrochloric acid treated hzsm-5 zeolite in sm2ti2o7/nhzsm-5 composite for photocatalytic degradation of ofloxacin
publisher Elsevier
series Journal of Materials Research and Technology
issn 2238-7854
publishDate 2020-09-01
description NaZSM-5 was treated in hydrochloric acid solution to prepare HZSM-5. The Sm2Ti2O7/nHZSM-5 composites were synthesized via a sol-gel route. The concentration of the hydrochloric acid solution could greatly influence the properties of the Sm2Ti2O7/nHZSM-5 composites, and the composites were characterized to clarify the role of the HZSM-5 zeolite. The pyrochlore phase Sm2Ti2O7 was produced in the composites. The hydrochloric acid treatment resulted in the dealumination and enhanced crystallinity of the nHZSM-5 zeolites. The specific surface area of the zeolites was increased from 175.0 m2/g of NaZSM5 to 300.4 m2/g of 0.1HZSM-5, and the total pore volume in the ZSM-5 zeolites was notably enlarged too. The BET surface areas of the Sm2Ti2O7/nHZSM-5 composites (67.2–87.9 m2/g) were much larger than the surface area of the Sm2Ti2O7 (5.6 m2/g). Large mesopores and macropores were formed in the Sm2Ti2O7 layer of the composites. The band gap energies of the Sm2Ti2O7 and the composites were between 3.52 eV and 3.69 eV. 93.5% of the ofloxacin molecules were degraded on the Sm2Ti2O7/0.3HZSM-5 composite after 150 min of reaction. At the same time, the degradation efficiencies on the Sm2Ti2O7/NaZSM-5 and Sm2Ti2O7 were 70.0% and 45.1%. The reaction rate constants for the photocatalytic degradation of ofloxacin were 0.0163, 0.00769 and 0.00402 min−1 for the Sm2Ti2O7/0.3HZSM-5, Sm2Ti2O7/NaZSM-5 and Sm2Ti2O7, respectively. The increased production of hydroxyl radicals was related to the enhanced photocatalytic activity of the Sm2Ti2O7/nHZSM-5 composites.
topic Photocatalytic degradation
Sm2Ti2O7
Composite
HZSM-5
Ofloxacin
url http://www.sciencedirect.com/science/article/pii/S2238785420315775
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