The preparation of Ag@AgCl photocatalytic material based on the photocatalysis material CA+ and degradation of tetracycline
AbstractIn this paper, the photocatalysis material CA+, which uses calcium alginate as carrier and cetyltrimethylammonium bromide as surfactant, was studied. The morphology and structure of the prepared CA+ were characterised by SEM, TEM, FT-IR and Raman spectroscopy. The surface electrical properti...
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Format: | Article |
Language: | English |
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Taylor & Francis Group
2023-12-01
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Series: | Journal of Experimental Nanoscience |
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Online Access: | https://www.tandfonline.com/doi/10.1080/17458080.2022.2162509 |
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author | Daxiang Gao Hetong Yang Zhen Shu |
author_facet | Daxiang Gao Hetong Yang Zhen Shu |
author_sort | Daxiang Gao |
collection | DOAJ |
description | AbstractIn this paper, the photocatalysis material CA+, which uses calcium alginate as carrier and cetyltrimethylammonium bromide as surfactant, was studied. The morphology and structure of the prepared CA+ were characterised by SEM, TEM, FT-IR and Raman spectroscopy. The surface electrical properties and stability of the catalytic materials were evaluated by Zeta potential and cycling performance measurements, and the data were analyzed and processed according to the principle of degradation kinetics. The results show that Ag@AgCl Nanoparticles are distributed on the cross-linked structure of CA in the form of clusters. The prepared CA+ photocatalyst material has good adsorption performance and photocatalytic activity for tetracycline (TC). Temperature has a significant effect on the degradation of TC by photocatalytic materials. The photocatalytic degradation rate is the highest at 40 °C, and the photocatalytic reaction rate was 0.08276 min−1. The photocatalytic degradation process at different temperatures conforms to the quasi first-order reaction kinetics. Adding a certain amount of H2O2 can produce more active species O2−. The photocatalytic material has the advantages of good stability, short photocatalytic degradation time, high catalytic efficiency, and can be used for the degradation of actual tetracycline polluted wastewater. |
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id | doaj.art-42eed9b02824489194d7ce9deb2f093d |
institution | Directory Open Access Journal |
issn | 1745-8080 1745-8099 |
language | English |
last_indexed | 2024-03-08T12:26:02Z |
publishDate | 2023-12-01 |
publisher | Taylor & Francis Group |
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series | Journal of Experimental Nanoscience |
spelling | doaj.art-42eed9b02824489194d7ce9deb2f093d2024-01-22T08:59:05ZengTaylor & Francis GroupJournal of Experimental Nanoscience1745-80801745-80992023-12-0118110.1080/17458080.2022.2162509The preparation of Ag@AgCl photocatalytic material based on the photocatalysis material CA+ and degradation of tetracyclineDaxiang Gao0Hetong Yang1Zhen Shu2Jiangsu Vocational College of Agriculture and Forestry, Jurong, Jiangsu, ChinaJiangsu Vocational College of Agriculture and Forestry, Jurong, Jiangsu, ChinaAnhui Xuchen Biotechnology Co., Ltd., Bengbu, Anhui, ChinaAbstractIn this paper, the photocatalysis material CA+, which uses calcium alginate as carrier and cetyltrimethylammonium bromide as surfactant, was studied. The morphology and structure of the prepared CA+ were characterised by SEM, TEM, FT-IR and Raman spectroscopy. The surface electrical properties and stability of the catalytic materials were evaluated by Zeta potential and cycling performance measurements, and the data were analyzed and processed according to the principle of degradation kinetics. The results show that Ag@AgCl Nanoparticles are distributed on the cross-linked structure of CA in the form of clusters. The prepared CA+ photocatalyst material has good adsorption performance and photocatalytic activity for tetracycline (TC). Temperature has a significant effect on the degradation of TC by photocatalytic materials. The photocatalytic degradation rate is the highest at 40 °C, and the photocatalytic reaction rate was 0.08276 min−1. The photocatalytic degradation process at different temperatures conforms to the quasi first-order reaction kinetics. Adding a certain amount of H2O2 can produce more active species O2−. The photocatalytic material has the advantages of good stability, short photocatalytic degradation time, high catalytic efficiency, and can be used for the degradation of actual tetracycline polluted wastewater.https://www.tandfonline.com/doi/10.1080/17458080.2022.2162509Ag@AgClcalcium alginateCA+tetracycline |
spellingShingle | Daxiang Gao Hetong Yang Zhen Shu The preparation of Ag@AgCl photocatalytic material based on the photocatalysis material CA+ and degradation of tetracycline Journal of Experimental Nanoscience Ag@AgCl calcium alginate CA+ tetracycline |
title | The preparation of Ag@AgCl photocatalytic material based on the photocatalysis material CA+ and degradation of tetracycline |
title_full | The preparation of Ag@AgCl photocatalytic material based on the photocatalysis material CA+ and degradation of tetracycline |
title_fullStr | The preparation of Ag@AgCl photocatalytic material based on the photocatalysis material CA+ and degradation of tetracycline |
title_full_unstemmed | The preparation of Ag@AgCl photocatalytic material based on the photocatalysis material CA+ and degradation of tetracycline |
title_short | The preparation of Ag@AgCl photocatalytic material based on the photocatalysis material CA+ and degradation of tetracycline |
title_sort | preparation of ag agcl photocatalytic material based on the photocatalysis material ca and degradation of tetracycline |
topic | Ag@AgCl calcium alginate CA+ tetracycline |
url | https://www.tandfonline.com/doi/10.1080/17458080.2022.2162509 |
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