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Aggregation behavior and foam properties of the mixture of hydrocarbon and fluorocarbon surfactants with addition of nanoparticles

机译:添加纳米颗粒的烃和氟碳表面活性剂混合物的聚集行为和泡沫特性

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摘要

Aqueous foam is widely used in many industrial fields. Study on foam properties is the key to reducing additive amount of foaming agents and stabilizers as well as the economic cost, and improving utilization efficiency of foam products. The molecular aggregation behavior, foaming ability, foam drainage, and foam coarsening of the mixtures of hydrophilic silica nanoparticle (NP), anionic hydrocarbon surfactant (SDS), and amphoteric fluorocarbon surfactant (FS-50) were studied systematically. Results indicated that the addition of NP slightly affected the molecular aggregation behavior of the mixed solutions of SDS/FS-50. The surface activity, dynamic viscosity, and foaming ability of the foam dispersions increased slightly with increasing NP concentration. The conductivity of the dispersions decreased slightly with increasing NP concentration. Foam stability was significantly affected by NP concentration. When the NP concentration is lower than 1%, the addition of NPs accelerated foam drainage and coarsening. When the NP concentration is higher than 1%, the addition of NPs decelerated foam drainage and foam coarsening and thus reduced foam stability. The foam stability of SDS/FS-50 solutions was further enhanced with increasing NP concentration. This study provides a basis for the application of foams stabilized by NPs in fire extinguishing agents. (C) 2020 Elsevier B.V. All rights reserved.
机译:水性泡沫广泛应用于许多工业领域。泡沫性能研究是降低发泡剂和稳定剂添加量、降低经济成本、提高泡沫产品利用率的关键。系统研究了亲水性二氧化硅纳米颗粒(NP)、阴离子烃表面活性剂(SDS)和两性氟碳表面活性剂(FS-50)的分子聚集行为、起泡能力、泡沫排水和泡沫粗化。结果表明,NP的加入对SDS/FS-50混合溶液的分子聚集行为影响不大。随着NP浓度的增加,泡沫分散体的表面活性、动态粘度和发泡能力略有增加。随着NP浓度的增加,分散体的电导率略有下降。NP浓度对泡沫稳定性有显著影响。当NP浓度低于1%时,NP的加入加速了泡沫的排水和粗化。当NP浓度高于1%时,添加NPs会减缓泡沫排水和泡沫粗化,从而降低泡沫稳定性。随着NP浓度的增加,SDS/FS-50溶液的泡沫稳定性进一步增强。本研究为NPs稳定泡沫在灭火剂中的应用提供了依据。(C) 2020爱思唯尔B.V.版权所有。

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