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Ag(3)VO(4)/g-C(3)N(4)/diatomite ternary compound reduces Cr(vi) ion in aqueous solution effectively under visible light
In recent years, the conversion of Cr(vi) to Cr(iii) ions by semiconductor photocatalysis technology has been considered to be an effective method to solve this problem. In this paper, a kind of ternary composite, Ag(3)VO(4)/g-C(3)N(4)/diatomite (AVO/CN/DT), was synthesized by a two-step method (ann...
Autores principales: | , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
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The Royal Society of Chemistry
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8982247/ https://www.ncbi.nlm.nih.gov/pubmed/35424717 http://dx.doi.org/10.1039/d1ra09295b |
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author | Jiang, Zhuhuan Zhu, Haitao Guo, Wanmi Ren, Qifang Ding, Yi Chen, Shaohua Chen, Jing Jia, Xinyu |
author_facet | Jiang, Zhuhuan Zhu, Haitao Guo, Wanmi Ren, Qifang Ding, Yi Chen, Shaohua Chen, Jing Jia, Xinyu |
author_sort | Jiang, Zhuhuan |
collection | PubMed |
description | In recent years, the conversion of Cr(vi) to Cr(iii) ions by semiconductor photocatalysis technology has been considered to be an effective method to solve this problem. In this paper, a kind of ternary composite, Ag(3)VO(4)/g-C(3)N(4)/diatomite (AVO/CN/DT), was synthesized by a two-step method (annealing–precipitation). Through a series of characterization analyses, the crystal morphology, microstructure, optical properties and photoelectrochemical properties of the material were characterized and analyzed. The band edge of g-C(3)N(4) was red-shifted due to the addition of Ag(3)VO(4) and diatomite. Consequently, the visible light response of the composites was intensified. Taking Cr(vi) in aqueous solution as a target pollutant, the degradation efficiency using 4AVO/CN/0.06DT reached 70% within 60 min under visible light irradiation, far exceeding the degradation efficiency using the pure substances. The cyclic degradation performance of the composite material was tested, and it still had a stable degradation effect after three cycles. The degradation efficiency in solution at different pH values was investigated. When the pH value of the solution gradually increased, the degradation efficiency gradually decreased, which was mainly caused by the different forms of Cr(vi) under different pH values. A corresponding degradation mechanism was proposed. Diatomite provided a reaction site for Ag(3)VO(4) and g-C(3)N(4), which promoted the photoreduction of Cr(vi). This work provides some reference significance for deepening the application field of diatomite and treating heavy metal ion wastewater. |
format | Online Article Text |
id | pubmed-8982247 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | The Royal Society of Chemistry |
record_format | MEDLINE/PubMed |
spelling | pubmed-89822472022-04-13 Ag(3)VO(4)/g-C(3)N(4)/diatomite ternary compound reduces Cr(vi) ion in aqueous solution effectively under visible light Jiang, Zhuhuan Zhu, Haitao Guo, Wanmi Ren, Qifang Ding, Yi Chen, Shaohua Chen, Jing Jia, Xinyu RSC Adv Chemistry In recent years, the conversion of Cr(vi) to Cr(iii) ions by semiconductor photocatalysis technology has been considered to be an effective method to solve this problem. In this paper, a kind of ternary composite, Ag(3)VO(4)/g-C(3)N(4)/diatomite (AVO/CN/DT), was synthesized by a two-step method (annealing–precipitation). Through a series of characterization analyses, the crystal morphology, microstructure, optical properties and photoelectrochemical properties of the material were characterized and analyzed. The band edge of g-C(3)N(4) was red-shifted due to the addition of Ag(3)VO(4) and diatomite. Consequently, the visible light response of the composites was intensified. Taking Cr(vi) in aqueous solution as a target pollutant, the degradation efficiency using 4AVO/CN/0.06DT reached 70% within 60 min under visible light irradiation, far exceeding the degradation efficiency using the pure substances. The cyclic degradation performance of the composite material was tested, and it still had a stable degradation effect after three cycles. The degradation efficiency in solution at different pH values was investigated. When the pH value of the solution gradually increased, the degradation efficiency gradually decreased, which was mainly caused by the different forms of Cr(vi) under different pH values. A corresponding degradation mechanism was proposed. Diatomite provided a reaction site for Ag(3)VO(4) and g-C(3)N(4), which promoted the photoreduction of Cr(vi). This work provides some reference significance for deepening the application field of diatomite and treating heavy metal ion wastewater. The Royal Society of Chemistry 2022-03-08 /pmc/articles/PMC8982247/ /pubmed/35424717 http://dx.doi.org/10.1039/d1ra09295b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/ |
spellingShingle | Chemistry Jiang, Zhuhuan Zhu, Haitao Guo, Wanmi Ren, Qifang Ding, Yi Chen, Shaohua Chen, Jing Jia, Xinyu Ag(3)VO(4)/g-C(3)N(4)/diatomite ternary compound reduces Cr(vi) ion in aqueous solution effectively under visible light |
title | Ag(3)VO(4)/g-C(3)N(4)/diatomite ternary compound reduces Cr(vi) ion in aqueous solution effectively under visible light |
title_full | Ag(3)VO(4)/g-C(3)N(4)/diatomite ternary compound reduces Cr(vi) ion in aqueous solution effectively under visible light |
title_fullStr | Ag(3)VO(4)/g-C(3)N(4)/diatomite ternary compound reduces Cr(vi) ion in aqueous solution effectively under visible light |
title_full_unstemmed | Ag(3)VO(4)/g-C(3)N(4)/diatomite ternary compound reduces Cr(vi) ion in aqueous solution effectively under visible light |
title_short | Ag(3)VO(4)/g-C(3)N(4)/diatomite ternary compound reduces Cr(vi) ion in aqueous solution effectively under visible light |
title_sort | ag(3)vo(4)/g-c(3)n(4)/diatomite ternary compound reduces cr(vi) ion in aqueous solution effectively under visible light |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8982247/ https://www.ncbi.nlm.nih.gov/pubmed/35424717 http://dx.doi.org/10.1039/d1ra09295b |
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