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The effects of ozone treatment on polylactic acid (pla) fibres

机译:臭氧处理对聚乳酸(PLA)纤维的影响

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A set of knitted poly(lactic acid) (PLA) fabrics was ozonated at room temperature for periods ranging from one to 60 minutes in order to identify any accompanying effects on physical properties (specifically whiteness, water-absorbency, flexural rigidity and burst strength), fiber surface integrity or internal microstructure. A significant (ca. 6 after 10 minutes of treatment) initial increase in whiteness was observed, with longer treatment times producing little further change. The fabric's absorbency and flexibility both increased, the time of wetting having fallen by ca. 20 and the flexural rigidity by ca. 16, respectively, after 10 minutes of treatment. Fabric strength remained virtually unaffected for short times (up to 10 minutes) of ozonation, although longer treatments caused a measurable drop (ca. 10 after 60 minutes). SEM imaging showed virtually no evidence for surface damage, even after 60 minutes of treatment, whereas peroxide treatment caused massive pitting of the fiber surface. Raman spectroscopy of the ozonated PLA fabrics indicated that the treatment had not affected the internal microstructure of the fibers. Our conclusion is that brief (no more than 10 minutes) room-temperature ozonation is potentially an effective, safe and low-energy alternative to conventional higher temperature peroxide treatment.
机译:将一组针织聚乳酸 (PLA) 织物在室温下臭氧化 1 至 60 分钟,以确定对物理性能(特别是白度、吸水性、弯曲刚度和爆破强度)、纤维表面完整性或内部微观结构的任何伴随影响。观察到白度的显着(治疗 10 分钟后约 6%)初始增加,较长的治疗时间几乎没有进一步的变化。处理10分钟后,织物的吸水性和柔韧性均有所增加,润湿时间分别下降了约20%和弯曲刚度分别下降了约16%。在短时间(长达 10 分钟)的臭氧化中,织物强度几乎不受影响,尽管较长的处理会导致可测量的下降(60 分钟后约 10%)。SEM 成像显示几乎没有表面损伤的证据,即使在处理 60 分钟后也是如此,而过氧化物处理会导致纤维表面出现大量点蚀。臭氧化PLA织物的拉曼光谱表明,处理没有影响纤维的内部微观结构。我们的结论是,短暂(不超过 10 分钟)室温臭氧化可能是传统高温过氧化物处理的有效、安全和低能耗的替代方案。

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