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The Investigation of the Influence of Low-Temperature Plasma and Steam Sterilization on the Properties of Track Membranes Made of Polyethylene Terephthalate

机译:低温等离子体和蒸汽灭菌对聚对苯二甲酸乙二醇酯制成的轨道膜性能影响的研究

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摘要

The influence of modification by low-temperature atmospheric-pressure plasma and steam sterilization on the properties of track membranes based on polyethylene terephthalate is studied. It is found that the action of hot steam under pressure changes the topography of the surface of the membranes with the formation of artifacts in the form of large oval-shaped protrusions with a height of 300-400 nm and a density of up to 0.007 protrusions/μm~2 on the surface, increases the surface roughness by 40% and the wetting angle by 9°-18° for the initial membranes and by 36.8°-39.6° for the membranes modified in plasma, and decreases their surface energy to the initial value of 33 mJ/m~2. Despite the morphological and structural changes in the surface, sterilization by hot steam under pressure does not lead to any noticeable change in the surface charge and ζ, potential of the track membranes. Hot steam under pressure does not promote further crystallization of the membrane, keeping the polymer with a crystalline phase of 40-42%. Thus, to preserve the properties acquired by the membrane after the plasma treatment, it is necessary to search for a different sterilization method (gamma radiation, ethylene oxide sterilization).
机译:研究了低温大气压等离子体和蒸汽灭菌对基于聚对苯二甲酸乙二醇酯的轨道膜性能的影响。发现热蒸汽在压力下的作用改变了膜表面的形貌,形成了大椭圆形突起的形式,高度为300-400nm,密度高达0.007突起表面上/μm〜2,将表面粗糙度增加40%,润湿角度为初始膜的9°-18°,对于在等离子体中改性的膜的36.8°-39.6°,并将它们的表面能降低到初始值为33 mj / m〜2。尽管表面的形态和结构变化,但是在压力下通过热蒸汽进行灭菌不会导致表面电荷的任何明显的变化和ζ,轨道膜的潜力。压力下的热蒸汽不促进膜的进一步结晶,将聚合物保持40-42%的结晶阶段。因此,为了保留膜在等离子体处理之后获得的膜获得的性质,有必要搜索不同的灭菌方法(γ辐射,环氧乙烷灭菌)。

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