Effects of thermal aging on the performance of ordinary and novel superhydrophobic and oleophobic ultra-fine dry powder extinguishing agent

Abstract Powder-based fire extinguishing agents have become a kind of promising substitutes for halon extinguishing agents in civil aircrafts. However, their storage lifespan, significantly influenced by the thermal aging, emerges as a crucial yet overlooked aspect for aviation use. This study inves...

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Main Authors: Yurong Liu, Ruiyu Chen, Wang Zhixuan, Rui Zhang, Hongling Jing, Daheng Yu, Renming Pan
Format: Article
Language:English
Published: Nature Portfolio 2025-01-01
Series:Scientific Reports
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Online Access:https://doi.org/10.1038/s41598-025-87718-w
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author Yurong Liu
Ruiyu Chen
Wang Zhixuan
Rui Zhang
Hongling Jing
Daheng Yu
Renming Pan
author_facet Yurong Liu
Ruiyu Chen
Wang Zhixuan
Rui Zhang
Hongling Jing
Daheng Yu
Renming Pan
author_sort Yurong Liu
collection DOAJ
description Abstract Powder-based fire extinguishing agents have become a kind of promising substitutes for halon extinguishing agents in civil aircrafts. However, their storage lifespan, significantly influenced by the thermal aging, emerges as a crucial yet overlooked aspect for aviation use. This study investigates the effects of thermal aging cycles on various parameters of ordinary dry powder extinguishing agent (ODPEA) and novel superhydrophobic and oleophobic ultra-fine dry powder extinguishing agent (SHOU DPEA), including surface microscopic morphology, D90 (the diameter at which 90% of the cumulative volume of particles are equal to or smaller than this value), chemical structure, hydrophobic and oleophobic angles, flowability, extinguishing time and effectiveness. The results indicate that SHOU DPEA exhibits smaller particle size, more regular particle shape, significantly superior heat stability and flowability compared to ODPEA. Furthermore, the D90 value evolution of ODPEA with aging time exhibits two stages: (a) a slow and linear growth stage (0–160 days), and (b) a rapid and substantial growth stage (160–200 days). However, SHOU DPEA shows a gradual increase in D90 value throughout the entire accelerated aging process. After 160 days of aging or more, the performance of ODPEA has significantly deteriorated, while SHOU DPEA has shown less degradation. Specially, the extinguishing concentration for the 160-day-aged ODPEA exceeds that of non-aged ODPEA by 10%, whereas the concentration of the 200-day-aged SHOU DPEA is less than 10% of the non-aged counterpart. Additionally, the predicted lifespans for ODPEA and SHOU DPEA at room temperature (25 °C) are 2715 days and over 4525 days, respectively. These findings can provide valuable guidance for assessments and the selection of aviation fire extinguishing agents.
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spelling doaj-art-4b05a0e2b1014845bdf946ccca2dc7c62025-02-02T12:18:14ZengNature PortfolioScientific Reports2045-23222025-01-0115112010.1038/s41598-025-87718-wEffects of thermal aging on the performance of ordinary and novel superhydrophobic and oleophobic ultra-fine dry powder extinguishing agentYurong Liu0Ruiyu Chen1Wang Zhixuan2Rui Zhang3Hongling Jing4Daheng Yu5Renming Pan6State Key Laboratory of Precision Blasting, Jianghan UniversitySchool of Safety Science and Engineering (School of Emergency Management), Nanjing University of Science and TechnologySchool of Safety Science and Engineering (School of Emergency Management), Nanjing University of Science and TechnologyTianjin Aviation Electro-Mechanical Co., LtdTianjin Aviation Electro-Mechanical Co., LtdTianjin Aviation Electro-Mechanical Co., LtdSchool of Safety Science and Engineering (School of Emergency Management), Nanjing University of Science and TechnologyAbstract Powder-based fire extinguishing agents have become a kind of promising substitutes for halon extinguishing agents in civil aircrafts. However, their storage lifespan, significantly influenced by the thermal aging, emerges as a crucial yet overlooked aspect for aviation use. This study investigates the effects of thermal aging cycles on various parameters of ordinary dry powder extinguishing agent (ODPEA) and novel superhydrophobic and oleophobic ultra-fine dry powder extinguishing agent (SHOU DPEA), including surface microscopic morphology, D90 (the diameter at which 90% of the cumulative volume of particles are equal to or smaller than this value), chemical structure, hydrophobic and oleophobic angles, flowability, extinguishing time and effectiveness. The results indicate that SHOU DPEA exhibits smaller particle size, more regular particle shape, significantly superior heat stability and flowability compared to ODPEA. Furthermore, the D90 value evolution of ODPEA with aging time exhibits two stages: (a) a slow and linear growth stage (0–160 days), and (b) a rapid and substantial growth stage (160–200 days). However, SHOU DPEA shows a gradual increase in D90 value throughout the entire accelerated aging process. After 160 days of aging or more, the performance of ODPEA has significantly deteriorated, while SHOU DPEA has shown less degradation. Specially, the extinguishing concentration for the 160-day-aged ODPEA exceeds that of non-aged ODPEA by 10%, whereas the concentration of the 200-day-aged SHOU DPEA is less than 10% of the non-aged counterpart. Additionally, the predicted lifespans for ODPEA and SHOU DPEA at room temperature (25 °C) are 2715 days and over 4525 days, respectively. These findings can provide valuable guidance for assessments and the selection of aviation fire extinguishing agents.https://doi.org/10.1038/s41598-025-87718-wPredicted storage lifespanUltra-fine dry powder extinguishing agentAviation firefightingSuperhydrophobic and oleophobic
spellingShingle Yurong Liu
Ruiyu Chen
Wang Zhixuan
Rui Zhang
Hongling Jing
Daheng Yu
Renming Pan
Effects of thermal aging on the performance of ordinary and novel superhydrophobic and oleophobic ultra-fine dry powder extinguishing agent
Scientific Reports
Predicted storage lifespan
Ultra-fine dry powder extinguishing agent
Aviation firefighting
Superhydrophobic and oleophobic
title Effects of thermal aging on the performance of ordinary and novel superhydrophobic and oleophobic ultra-fine dry powder extinguishing agent
title_full Effects of thermal aging on the performance of ordinary and novel superhydrophobic and oleophobic ultra-fine dry powder extinguishing agent
title_fullStr Effects of thermal aging on the performance of ordinary and novel superhydrophobic and oleophobic ultra-fine dry powder extinguishing agent
title_full_unstemmed Effects of thermal aging on the performance of ordinary and novel superhydrophobic and oleophobic ultra-fine dry powder extinguishing agent
title_short Effects of thermal aging on the performance of ordinary and novel superhydrophobic and oleophobic ultra-fine dry powder extinguishing agent
title_sort effects of thermal aging on the performance of ordinary and novel superhydrophobic and oleophobic ultra fine dry powder extinguishing agent
topic Predicted storage lifespan
Ultra-fine dry powder extinguishing agent
Aviation firefighting
Superhydrophobic and oleophobic
url https://doi.org/10.1038/s41598-025-87718-w
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