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Transparent Cellulose/Technical Lignin Composite Films for Advanced Packaging

机译:用于高级包装的透明纤维素/木质素技术复合膜

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摘要

Although recent work has shown natural lignin products are promising to fabricate various polymer based functional composites, high-value applications were challenged by their structural complexity and inhomogeneity. This work specially assessed the potential of four technical lignins for cellulose based functional films production. These four technical lignins were obtained by emerging pretreatment systems, i.e., lactic acid-betaine deep eutectic solvent (DES), ethanol organosolv, soda/anthraquinone (Soda/AQ) and the sodium salicylate hydrotrope, and their phenolic substructures were comparatively identified by prevalent 31P NMR technique. The influence of lignin chemical structure on the antioxidant potential and UV-shielding performance of the prepared cellulose/technical lignin composite films were assessed. Results showed severe organosolv and soda/AQ pretreatment produced technical lignins with higher total phenolic hydroxyl groups (3.37 and 3.23 mmol g-1 respectively), which also exhibited higher antioxidant activities. The composite films could effectively block the ultraviolet lights especially for UVB region (ultraviolet B, 280–315 nm) at only 5 wt.% lignin content. The contribution of lignin phenolic substructures to both antioxidant activity and UV-shielding property from high to low was syringyl > guaiacyl > p-hydroxyphenyl phenolic hydroxyl groups. This work provided some useful information that could facilitate upstream lignin extraction or downstream value-added applications.
机译:尽管最近的工作表明天然木质素产品有望制造各种基于聚合物的功能性复合材料,但高价值的应用却因其结构复杂性和不均匀性而受到挑战。这项工作专门评估了四种技术木质素在纤维素功能膜生产中的潜力。这四种技术木质素是通过新兴的预处理系统获得的,即乳酸-甜菜碱深共熔溶剂(DES),乙醇有机溶剂,苏打/蒽醌(Soda / AQ)和水杨酸钠水溶助长剂,并通过普遍的方法对它们的酚亚结构进行了比较鉴定。 31 P NMR技术。评估了木质素化学结构对制备的纤维素/工业木质素复合膜的抗氧化能力和紫外线屏蔽性能的影响。结果表明,严格的有机溶剂和苏打/ AQ预处理产生的工业木质素具有较高的总酚羟基(分别为3.37和3.23 mmol g-1),还具有较高的抗氧化活性。复合膜可以有效地阻挡紫外线,尤其是木质素含量仅为5 wt。%的UVB区域(紫外线B,280-315 nm)。木质素酚亚结构从高到低对抗氧化活性和紫外线屏蔽性能的贡献是丁香基>愈创木基>对羟基苯基酚羟基。这项工作提供了一些有用的信息,可以促进上游木质素的提取或下游增值应用。

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