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Efficient purification of wastewater by applying mechanical force and BaCO(3)/TiO(2) and BaTiO(3)/TiO(2) piezocatalysts

In typical advanced oxidation catalysis, a semiconductor should have a robust capacity to generate separated electron–hole pairs on a material's surface under irradiation of photons with energy more than the material's bandgap. However, rapid charge carrier recombination and low photon to...

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Autores principales: Amiri, Omid, Ahmed, Haval Aziz, Abdan, Abdulla Ahmed, Mahmood, Peshawa H., Salavati-Niasari, Masoud
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9043623/
https://www.ncbi.nlm.nih.gov/pubmed/35496442
http://dx.doi.org/10.1039/d1ra07742b
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author Amiri, Omid
Ahmed, Haval Aziz
Abdan, Abdulla Ahmed
Mahmood, Peshawa H.
Salavati-Niasari, Masoud
author_facet Amiri, Omid
Ahmed, Haval Aziz
Abdan, Abdulla Ahmed
Mahmood, Peshawa H.
Salavati-Niasari, Masoud
author_sort Amiri, Omid
collection PubMed
description In typical advanced oxidation catalysis, a semiconductor should have a robust capacity to generate separated electron–hole pairs on a material's surface under irradiation of photons with energy more than the material's bandgap. However, rapid charge carrier recombination and low photon to current yield of semiconductor photocatalysts and low percentages of UV light in sunlight leads to a low level of photocatalytic efficiency for practical application. Mechanical energy is a natural energy that can be considered as a form of rich, clean and renewable energy which can be harvested by using piezoelectric materials. Here, we developed BaCO(3)/TiO(2) and BaTiO(3)/TiO(2) composites as mechanical harvesting materials to decontaminate pollutants. Results showed that BaCO(3) has a great effect on the piezocatalytic activity of products. The control sample (sample without Ba) only degraded 11.2% of Acid Red 151 (AR151) , while the sample containing Ba degraded 96.7% of AR151. Besides, the effects of several parameters, including the natural surfactant, reaction time and temperature, calcination, and ultrasonic power and pulse on the catalytic activity of the as-prepared piezocatalysts were studied. Results showed that it is possible to degrade 99.1% of AR151 by controlling ultrasonic parameters during 2 h of mechanical energy force.
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spelling pubmed-90436232022-04-28 Efficient purification of wastewater by applying mechanical force and BaCO(3)/TiO(2) and BaTiO(3)/TiO(2) piezocatalysts Amiri, Omid Ahmed, Haval Aziz Abdan, Abdulla Ahmed Mahmood, Peshawa H. Salavati-Niasari, Masoud RSC Adv Chemistry In typical advanced oxidation catalysis, a semiconductor should have a robust capacity to generate separated electron–hole pairs on a material's surface under irradiation of photons with energy more than the material's bandgap. However, rapid charge carrier recombination and low photon to current yield of semiconductor photocatalysts and low percentages of UV light in sunlight leads to a low level of photocatalytic efficiency for practical application. Mechanical energy is a natural energy that can be considered as a form of rich, clean and renewable energy which can be harvested by using piezoelectric materials. Here, we developed BaCO(3)/TiO(2) and BaTiO(3)/TiO(2) composites as mechanical harvesting materials to decontaminate pollutants. Results showed that BaCO(3) has a great effect on the piezocatalytic activity of products. The control sample (sample without Ba) only degraded 11.2% of Acid Red 151 (AR151) , while the sample containing Ba degraded 96.7% of AR151. Besides, the effects of several parameters, including the natural surfactant, reaction time and temperature, calcination, and ultrasonic power and pulse on the catalytic activity of the as-prepared piezocatalysts were studied. Results showed that it is possible to degrade 99.1% of AR151 by controlling ultrasonic parameters during 2 h of mechanical energy force. The Royal Society of Chemistry 2021-11-18 /pmc/articles/PMC9043623/ /pubmed/35496442 http://dx.doi.org/10.1039/d1ra07742b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Amiri, Omid
Ahmed, Haval Aziz
Abdan, Abdulla Ahmed
Mahmood, Peshawa H.
Salavati-Niasari, Masoud
Efficient purification of wastewater by applying mechanical force and BaCO(3)/TiO(2) and BaTiO(3)/TiO(2) piezocatalysts
title Efficient purification of wastewater by applying mechanical force and BaCO(3)/TiO(2) and BaTiO(3)/TiO(2) piezocatalysts
title_full Efficient purification of wastewater by applying mechanical force and BaCO(3)/TiO(2) and BaTiO(3)/TiO(2) piezocatalysts
title_fullStr Efficient purification of wastewater by applying mechanical force and BaCO(3)/TiO(2) and BaTiO(3)/TiO(2) piezocatalysts
title_full_unstemmed Efficient purification of wastewater by applying mechanical force and BaCO(3)/TiO(2) and BaTiO(3)/TiO(2) piezocatalysts
title_short Efficient purification of wastewater by applying mechanical force and BaCO(3)/TiO(2) and BaTiO(3)/TiO(2) piezocatalysts
title_sort efficient purification of wastewater by applying mechanical force and baco(3)/tio(2) and batio(3)/tio(2) piezocatalysts
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9043623/
https://www.ncbi.nlm.nih.gov/pubmed/35496442
http://dx.doi.org/10.1039/d1ra07742b
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