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首页> 外文期刊>International Journal of Mineral Processing >Drainage and rupture of thin foam films in the presence of ionic and non-ionic surfactants
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Drainage and rupture of thin foam films in the presence of ionic and non-ionic surfactants

机译:在离子型和非离子型表面活性剂的存在下,泡沫薄膜的排水和破裂

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The thin film pressure balance technique was used to determine the overall magnitude of the surface forces in foam films stabilized by flotation reagents such as sodium dodecyl sulfate and polypropylene glycol at high NaCl concentrations. The Stefan-Reynolds lubrication approximation was used to estimate the forces from measured film thinning rates while the capillary wave model of Valkovska, Danov and Ivanov was used to calculate the forces from measured critical rupture thicknesses. It was found that at very low surfactant concentrations commensurate with typical flotation reagent dosage, the overall forces were attractive and up to one order of magnitude stronger than the Lifshitz-van der Waals forces. The forces became smaller with increasing surfactant concentration. It was also found that the forces obtained from the capillary wave theory were indifferent to changes in film radii and surface mobility, in contrast to the Reynolds lubrication approximation. For comparison, other film drainage models considering film surface mobility and hydrodynamic corrugation were used to fit the present experimental thinning curves obtained at very low surfactant concentrations. They also showed that the overall attraction forces were several times stronger than the Lifshitz-van der Waals forces.
机译:薄膜压力平衡技术用于确定在高NaCl浓度下由浮选剂(如十二烷基硫酸钠和聚丙二醇)稳定的泡沫膜中表面力的总体大小。 Stefan-Reynolds润滑近似值用于根据测得的薄膜变薄率来估算力,而Valkovska,Danov和Ivanov的毛细管波模型用于根据测得的临界破裂厚度来计算力。已发现在非常低的表面活性剂浓度与典型的浮选剂剂量相当的情况下,总力是有吸引力的,并且比Lifshitz-van der Waals力强多达一个数量级。随着表面活性剂浓度的增加,作用力变小。还发现,与雷诺兹润滑近似相反,从毛细管波理论获得的力对薄膜半径和表面迁移率的变化无动于衷。为了比较,考虑膜表面流动性和流体动力波纹的其他膜排水模型被用于拟合在非常低的表面活性剂浓度下获得的本实验稀化曲线。他们还表明,总吸引力比利夫希茨-范德华力强大几倍。

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