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Synthesis of Carboxyl Modified Polyether Polysiloxane Surfactant for the Biodegradable Foam Fire Extinguishing Agents

It is necessary to develop novel and efficient alternatives to fluorocarbon surfactant and prepare fluorine-free environmentally-friendly fire extinguishing agent. The carboxyl modified polyether polysiloxane surfactant (CMPS) with high surface activity was synthesized via the esterification reactio...

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Detalles Bibliográficos
Autores principales: Jiao, Jinqing, Qi, Lei, Wu, Jingfeng, Lang, Xuqing, Wei, Yuechang, Zhang, Guangwen, Cui, Pengyu, Shang, Zuzheng, Mu, Xiaodong, Mu, Shanjun, Lv, Yuzhuo, Pan, Weichao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10142534/
https://www.ncbi.nlm.nih.gov/pubmed/37110780
http://dx.doi.org/10.3390/molecules28083546
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author Jiao, Jinqing
Qi, Lei
Wu, Jingfeng
Lang, Xuqing
Wei, Yuechang
Zhang, Guangwen
Cui, Pengyu
Shang, Zuzheng
Mu, Xiaodong
Mu, Shanjun
Lv, Yuzhuo
Pan, Weichao
author_facet Jiao, Jinqing
Qi, Lei
Wu, Jingfeng
Lang, Xuqing
Wei, Yuechang
Zhang, Guangwen
Cui, Pengyu
Shang, Zuzheng
Mu, Xiaodong
Mu, Shanjun
Lv, Yuzhuo
Pan, Weichao
author_sort Jiao, Jinqing
collection PubMed
description It is necessary to develop novel and efficient alternatives to fluorocarbon surfactant and prepare fluorine-free environmentally-friendly fire extinguishing agent. The carboxyl modified polyether polysiloxane surfactant (CMPS) with high surface activity was synthesized via the esterification reaction using hydroxyl-containing polyether modified polysiloxane (HPMS) and maleic anhydride (MA) as raw materials. The process conditions of the esterification reaction were optimized by orthogonal tests, and the optimum process parameters were determined as follows: reaction temperature of 85 °C, reaction time of 4.5 h, isopropyl alcohol content of 20% and the molar ratio of HPMS/MA of 1/1. The chemical structure, surface activity, aggregation behavior, foam properties, wetting properties and electron distribution were systematically investigated. It was found that the carboxyl group was successfully grafted into silicone molecule, and the conjugated system was formed, which changed the interaction force between the molecules and would affect the surface activity of the aqueous solution. The CMPS exhibited excellent surface activity and could effectively reduce the water’s surface tension to 18.46 mN/m. The CMPS formed spherical aggregates in aqueous solution, and the contact angle value of CMPS is 15.56°, illustrating that CMPS had excellent hydrophilicity and wetting performance. The CMPS can enhance the foam property and has good stability. The electron distribution results indicate that the introduced carboxyl groups are more inclined towards the negative charge band, which would be conducive to weak the interaction between molecules and improve the surface activity of the solution. Consequently, new foam fire extinguishing agents were prepared by using CMPS as a key component and they exhibited excellent fire-fighting performance. The prepared CMPS would be the optimal alternative to fluorocarbon surfactant and could be applied in foam extinguishing agents.
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spelling pubmed-101425342023-04-29 Synthesis of Carboxyl Modified Polyether Polysiloxane Surfactant for the Biodegradable Foam Fire Extinguishing Agents Jiao, Jinqing Qi, Lei Wu, Jingfeng Lang, Xuqing Wei, Yuechang Zhang, Guangwen Cui, Pengyu Shang, Zuzheng Mu, Xiaodong Mu, Shanjun Lv, Yuzhuo Pan, Weichao Molecules Article It is necessary to develop novel and efficient alternatives to fluorocarbon surfactant and prepare fluorine-free environmentally-friendly fire extinguishing agent. The carboxyl modified polyether polysiloxane surfactant (CMPS) with high surface activity was synthesized via the esterification reaction using hydroxyl-containing polyether modified polysiloxane (HPMS) and maleic anhydride (MA) as raw materials. The process conditions of the esterification reaction were optimized by orthogonal tests, and the optimum process parameters were determined as follows: reaction temperature of 85 °C, reaction time of 4.5 h, isopropyl alcohol content of 20% and the molar ratio of HPMS/MA of 1/1. The chemical structure, surface activity, aggregation behavior, foam properties, wetting properties and electron distribution were systematically investigated. It was found that the carboxyl group was successfully grafted into silicone molecule, and the conjugated system was formed, which changed the interaction force between the molecules and would affect the surface activity of the aqueous solution. The CMPS exhibited excellent surface activity and could effectively reduce the water’s surface tension to 18.46 mN/m. The CMPS formed spherical aggregates in aqueous solution, and the contact angle value of CMPS is 15.56°, illustrating that CMPS had excellent hydrophilicity and wetting performance. The CMPS can enhance the foam property and has good stability. The electron distribution results indicate that the introduced carboxyl groups are more inclined towards the negative charge band, which would be conducive to weak the interaction between molecules and improve the surface activity of the solution. Consequently, new foam fire extinguishing agents were prepared by using CMPS as a key component and they exhibited excellent fire-fighting performance. The prepared CMPS would be the optimal alternative to fluorocarbon surfactant and could be applied in foam extinguishing agents. MDPI 2023-04-18 /pmc/articles/PMC10142534/ /pubmed/37110780 http://dx.doi.org/10.3390/molecules28083546 Text en © 2023 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
Jiao, Jinqing
Qi, Lei
Wu, Jingfeng
Lang, Xuqing
Wei, Yuechang
Zhang, Guangwen
Cui, Pengyu
Shang, Zuzheng
Mu, Xiaodong
Mu, Shanjun
Lv, Yuzhuo
Pan, Weichao
Synthesis of Carboxyl Modified Polyether Polysiloxane Surfactant for the Biodegradable Foam Fire Extinguishing Agents
title Synthesis of Carboxyl Modified Polyether Polysiloxane Surfactant for the Biodegradable Foam Fire Extinguishing Agents
title_full Synthesis of Carboxyl Modified Polyether Polysiloxane Surfactant for the Biodegradable Foam Fire Extinguishing Agents
title_fullStr Synthesis of Carboxyl Modified Polyether Polysiloxane Surfactant for the Biodegradable Foam Fire Extinguishing Agents
title_full_unstemmed Synthesis of Carboxyl Modified Polyether Polysiloxane Surfactant for the Biodegradable Foam Fire Extinguishing Agents
title_short Synthesis of Carboxyl Modified Polyether Polysiloxane Surfactant for the Biodegradable Foam Fire Extinguishing Agents
title_sort synthesis of carboxyl modified polyether polysiloxane surfactant for the biodegradable foam fire extinguishing agents
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10142534/
https://www.ncbi.nlm.nih.gov/pubmed/37110780
http://dx.doi.org/10.3390/molecules28083546
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