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Fire Extinguishing Performance of Chemically Bonded Struvite Ceramic Powder with High Heat-Absorbing and Flame Retardant Properties

Struvite is a chemically bonded ceramic product in the pipeline of a sewage treatment plant. In order to explore the fire extinguishing potential of struvite, a new type of struvite ultrafine dry powder with excellent performance was prepared by a simple process, and its fire extinguishing performan...

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Autores principales: Liang, Zilong, Zhou, Zhiji, Sun, Yunqi, Huang, Yujia, Guo, Xinya, Cai, Guoshuai, Wang, Mingchao, Zhang, Haijun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9698942/
https://www.ncbi.nlm.nih.gov/pubmed/36431505
http://dx.doi.org/10.3390/ma15228021
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author Liang, Zilong
Zhou, Zhiji
Sun, Yunqi
Huang, Yujia
Guo, Xinya
Cai, Guoshuai
Wang, Mingchao
Zhang, Haijun
author_facet Liang, Zilong
Zhou, Zhiji
Sun, Yunqi
Huang, Yujia
Guo, Xinya
Cai, Guoshuai
Wang, Mingchao
Zhang, Haijun
author_sort Liang, Zilong
collection PubMed
description Struvite is a chemically bonded ceramic product in the pipeline of a sewage treatment plant. In order to explore the fire extinguishing potential of struvite, a new type of struvite ultrafine dry powder with excellent performance was prepared by a simple process, and its fire extinguishing performance and mechanism were analyzed in depth. Under the same process conditions, the refinement degree (D50 = 5.132 μm) and the specific surface area (BET = 25.72 m(2)/g) of ultrafine struvite were larger than those of NH(4)H(2)PO(4) (D50 = 8.961 μm, BET = 13.64 m(2)/g), making struvite more suitable for fire extinguishing. Besides, the pyrolysis process of struvite was relatively concentrated and absorbed more heat in a short time. Its heat absorption (458.4 J/mg) was higher than that of NH(4)H(2)PO(4) (156.4 J/mg). Water, ammonia, and PO· were released during the pyrolysis of struvite, which effectively reduced fire temperature, diluted oxygen concentrations and captured free radicals. At the same time, the final products were magnesium orthophosphate and magnesium pyrophosphate, which formed a dense flame-retardant ceramic layer with good thermal insulation and environmental protection functions. In these cases, the fire extinguishing mechanism of struvite was determined to have three stages: the cooling effect, the asphyxiation effect, and the chemical effect. Correspondingly, the fire extinguishing time of struvite was three seconds faster than that of ammonium phosphate under 0.2 MPa based on the local oil basin test.
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spelling pubmed-96989422022-11-26 Fire Extinguishing Performance of Chemically Bonded Struvite Ceramic Powder with High Heat-Absorbing and Flame Retardant Properties Liang, Zilong Zhou, Zhiji Sun, Yunqi Huang, Yujia Guo, Xinya Cai, Guoshuai Wang, Mingchao Zhang, Haijun Materials (Basel) Article Struvite is a chemically bonded ceramic product in the pipeline of a sewage treatment plant. In order to explore the fire extinguishing potential of struvite, a new type of struvite ultrafine dry powder with excellent performance was prepared by a simple process, and its fire extinguishing performance and mechanism were analyzed in depth. Under the same process conditions, the refinement degree (D50 = 5.132 μm) and the specific surface area (BET = 25.72 m(2)/g) of ultrafine struvite were larger than those of NH(4)H(2)PO(4) (D50 = 8.961 μm, BET = 13.64 m(2)/g), making struvite more suitable for fire extinguishing. Besides, the pyrolysis process of struvite was relatively concentrated and absorbed more heat in a short time. Its heat absorption (458.4 J/mg) was higher than that of NH(4)H(2)PO(4) (156.4 J/mg). Water, ammonia, and PO· were released during the pyrolysis of struvite, which effectively reduced fire temperature, diluted oxygen concentrations and captured free radicals. At the same time, the final products were magnesium orthophosphate and magnesium pyrophosphate, which formed a dense flame-retardant ceramic layer with good thermal insulation and environmental protection functions. In these cases, the fire extinguishing mechanism of struvite was determined to have three stages: the cooling effect, the asphyxiation effect, and the chemical effect. Correspondingly, the fire extinguishing time of struvite was three seconds faster than that of ammonium phosphate under 0.2 MPa based on the local oil basin test. MDPI 2022-11-14 /pmc/articles/PMC9698942/ /pubmed/36431505 http://dx.doi.org/10.3390/ma15228021 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liang, Zilong
Zhou, Zhiji
Sun, Yunqi
Huang, Yujia
Guo, Xinya
Cai, Guoshuai
Wang, Mingchao
Zhang, Haijun
Fire Extinguishing Performance of Chemically Bonded Struvite Ceramic Powder with High Heat-Absorbing and Flame Retardant Properties
title Fire Extinguishing Performance of Chemically Bonded Struvite Ceramic Powder with High Heat-Absorbing and Flame Retardant Properties
title_full Fire Extinguishing Performance of Chemically Bonded Struvite Ceramic Powder with High Heat-Absorbing and Flame Retardant Properties
title_fullStr Fire Extinguishing Performance of Chemically Bonded Struvite Ceramic Powder with High Heat-Absorbing and Flame Retardant Properties
title_full_unstemmed Fire Extinguishing Performance of Chemically Bonded Struvite Ceramic Powder with High Heat-Absorbing and Flame Retardant Properties
title_short Fire Extinguishing Performance of Chemically Bonded Struvite Ceramic Powder with High Heat-Absorbing and Flame Retardant Properties
title_sort fire extinguishing performance of chemically bonded struvite ceramic powder with high heat-absorbing and flame retardant properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9698942/
https://www.ncbi.nlm.nih.gov/pubmed/36431505
http://dx.doi.org/10.3390/ma15228021
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