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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Nanocellulose-based multilayer barrier coatings for gas, oil, and grease resistance
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Nanocellulose-based multilayer barrier coatings for gas, oil, and grease resistance

机译:基于纳米纤维素的气体,油和耐油脂的多层阻挡涂层

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Cellulose derivatives such as cellulose nanofibers (CNF) and cellulose nanocrystals (CNC) have enormous potential to reduce or replace petroleum and fluorochemicals for food and other packaging applications. CNFs have been studied for their excellent oxygen and gas barrier properties; however, their performance rapidly decreases in the presence of moisture and higher humidity. CNCs are less sensitive to moisture due to their highly crystalline nature; however, coatings and films made of CNCs are much more prone to fracture due to their high brittleness. Our work demonstrates a unique composite barrier coaling system of CNF and CNC that synergistically enables oil and grease resistance (a kit rating of 11) comparable to fluorochemicals. It also demonstrates a significant increase in air resistance (similar to by a factor of about 300), and a reduction in oxygen transmission rate (similar to by a factor of about 260) compared to uncoated paper. The improvements in oil and gas barrier properties were evaluated with respect to the molecular, chemical, and structural properties of the developed coatings.
机译:纤维素衍生物如纤维素纳米纤维(CNF)和纤维素纳米晶体(CNC)具有巨大的潜力,可以减少或替换用于食品和其他包装应用的石油和含氟化合物。已经研究了CNFS优异的氧气和阻气性能;然而,它们的性能在存在水分和更高湿度的情况下迅速降低。由于其高度结晶性质,CNCs对水分敏感;然而,由于其高脆性,由CNCs制成的涂层和薄膜更容易发生裂缝。我们的作品演示了CNF和CNC的独特复合屏障融合系统,可协同能够与含氟化酶相当的油和耐油脂抗性(套件额定值11)。与未涂布的纸相比,它还证明了空气阻力的显着增加(类似于约300倍),并且氧传输速率(类似于约260倍)的降低。关于显影涂层的分子,化学和结构性能评价油和阻气性的改善。

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