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Determining the Surface Free Energy of Cellulose Materials with the Powder Contact Angle Method

机译:粉末接触角法测定纤维素材料的表面自由能

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摘要

Different treatment processes such as alkaline washing, bleaching, and slack-mercer-ization are used to improve the sorption characteristics of cellulose fibers. The differences between the sorption properties of cellulose fibers are measured with tensiometry, and their sorption velocities are measured with liquids of different polarities. From those measurements, contact angles are determined using the Washburn equation. The surface free energy of the cellulose fibers is determined from contact angle data obtained with the Owens-Wendt-Rabel-Kaeble approximation. Results show that among these treatments, slack-mercerization produces the lowest contact angle and the highest surface free fiber energy, and has therefore the largest influence on sorption ability. Viscose fibers (raw and treated) have the lowest contact angle and the highest surface free energy, and are the most hydrophilic compared to lyocell and modal fibers. This is explained by their crystalline structure and the accessibility of their surface groups to polar liquids.
机译:为了改善纤维素纤维的吸附特性,使用了不同的处理工艺,例如碱洗,漂白和松弛汞化。纤维素纤维的吸附性能之间的差异通过张力测定法测量,并且其吸附速度通过不同极性的液体进行测量。根据这些测量,使用Washburn方程确定接触角。纤维素纤维的表面自由能由通过Owens-Wendt-Rabel-Kaeble近似获得的接触角数据确定。结果表明,在这些处理中,松弛丝光产生最小的接触角和最大的表面自由纤维能量,因此对吸附能力的影响最大。与莱赛尔纤维和莫代尔纤维相比,粘胶纤维(粗纤维和经处理的纤维)具有最低的接触角和最高的表面自由能,并且亲水性最高。这可以通过它们的晶体结构和其表面基团对极性液体的可及性来解释。

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