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羧基改性聚醚硅油表面活性剂的合成及其在生物降解泡沫灭火剂中的应用。

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

机构信息

State Key Laboratory of Safety and Control for Chemicals, SINOPEC Research Institute of Safety Engineering Co., Ltd., Qingdao 266071, China.

State Key Laboratory of Heavy Oil Processing, China University of Petroleum (Beijing), Beijing 102249, China.

出版信息

Molecules. 2023 Apr 18;28(8):3546. doi: 10.3390/molecules28083546.

Abstract

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.

摘要

有必要开发新型、高效的氟碳表面活性剂替代品,并制备无氟环保型灭火剂。本研究以含羟基聚醚改性硅油(HPMS)和马来酸酐(MA)为原料,通过酯化反应合成了具有高表面活性的羧基改性聚醚硅油表面活性剂(CMPS)。采用正交试验对酯化反应条件进行优化,确定最佳工艺参数为:反应温度 85℃,反应时间 4.5 h,异丙醇含量 20%,HPMS/MA 摩尔比为 1/1。系统研究了 CMPS 的化学结构、表面活性、聚集行为、泡沫性能、润湿性能和电子分布。结果表明,羧基成功接枝到硅氧烷分子上,形成了共轭体系,改变了分子间的相互作用力,从而影响了水溶液的表面活性。CMPS 表现出优异的表面活性,可有效降低水的表面张力至 18.46 mN/m。CMPS 在水溶液中形成球形聚集体,CMPS 的接触角值为 15.56°,表明 CMPS 具有优异的亲水性和润湿性能。CMPS 可增强泡沫性能,且具有良好的稳定性。电子分布结果表明,引入的羧基更倾向于带负电荷的区域,有利于减弱分子间的相互作用,提高溶液的表面活性。因此,以 CMPS 为关键成分制备了新型泡沫灭火剂,具有优异的灭火性能。所制备的 CMPS 有望替代氟碳表面活性剂,应用于泡沫灭火剂中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aef6/10142534/586fa6ae2e25/molecules-28-03546-g001.jpg

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