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首页> 外文期刊>International Journal of Polymeric Materials >Hydrophobicity and Water Vapor Permeability of Ethylene-plasmacoated Whey, Chitosan and Starch Films
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Hydrophobicity and Water Vapor Permeability of Ethylene-plasmacoated Whey, Chitosan and Starch Films

机译:乙烯等离子体乳清,壳聚糖和淀粉薄膜的疏水性和水蒸气渗透性

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摘要

Water vapor transmission rate was measured on uncoated and ethylene-plasma-coated whey (65-93.5% whey protein), on chitosan and starch films and on aluminum-coated chitosan. Surface hydrophobicity was assessed by contact angle measurements, and X-ray photoelectron spectroscopy was used to characterize the coatings. The water vapor transimission rate through the uncoated polymer films was highest for starch and lowest for chitosan. Whey showed intermediate water permeability, with the sample containing 65% whey-protein having the lowest water vapor transmission rate. An improvement in water vapor barrier properties was observed only for the aluminum-coated sample and not for any of the polyethylene-coated samples. It is observed that the penetrating water cuased the substrate to swell and the polyethylene coating layer to crack. According to profilometry, the thickness of the polyethylene coating layer was 0.1-1 #mu#m after 15 min exposure time. The coating was hydrophobic and contained almost exclusively carbons typical of linear or crosslinked hydrocarbons. It is suggested that the observed decrease in hydrophobicity with time during the contact angle measurements is due to the reorientatiojn at the surface of carbonyls present in small amounts in the coating.
机译:在未包衣的和乙烯-血浆包衣的乳清(65-93.5%乳清蛋白),壳聚糖和淀粉膜以及铝包衣的壳聚糖上测量了水蒸气透过率。通过接触角测量来评估表面疏水性,并且使用X射线光电子能谱表征涂层。通过未涂覆的聚合物膜的水蒸气透过率对于淀粉最高,对于壳聚糖最低。乳清显示出中等的水渗透性,样品中含有65%的乳清蛋白具有最低的水蒸气透过率。仅对于铝涂覆的样品观察到水蒸气阻隔性能的改善,而对于任何聚乙烯涂覆的样品则没有观察到。观察到渗透的水导致基材溶胀并且聚乙烯涂层破裂。根据轮廓测定法,暴露15分钟后,聚乙烯涂层的厚度为0.1-1μμm。该涂层是疏水性的,几乎只含有线性或交联烃的典型碳。建议在接触角测量过程中观察到的疏水性随时间的下降是由于涂层中少量存在的羰基表面的重新取向。

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