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Enhancement of Mechanical and Barrier Property of Hemicellulose Film via Crosslinking with Sodium Trimetaphosphate

机译:用三磷酸钠交联增强半纤维素膜的机械和阻隔性能

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摘要

Hemicellulose is a kind of biopolymer with abundant resources and excellent biodegradability. Owing to its large number of polar hydroxyls, hemicellulose has a good barrier performance to nonpolar oxygen, making this biopolymer promising as food packaging material. Hydrophilic hydroxyls also make the polymer prone to water absorption, resulting in less satisfied strength especially under humid conditions. Thus, preparation of hemicellulose film with enhanced oxygen and water vapor barrier ability, as well as mechanical strength is still sought after. Herein, sodium trimetaphosphate (STMP) was used as esterification agent to form a crosslinked structure with hemicellulose through esterification reaction to render improved barrier performance by reducing the distance between molecular chains. The thus modified hemicellulose film achieved an oxygen permeability and water vapor permeability of 3.72 cm3 × μm × m−2 × d−1 × kPa−1 and 2.85 × 10−10 × g × m−1 × s−1 × Pa−1, respectively, at the lowest esterification agent addition of 10%. The crosslinked structure also brought good mechanical and thermal properties, with the tensile strength reaching 30 MPa, which is 118% higher than that of the hemicellulose film. Preliminary test of its application in apple preservation showed that the barrier film obtained can effectively slow down the oxidation and dehydration of apples, showing the prospect of application in the field of food packaging.
机译:半纤维素是一种具有丰富资源的生物聚合物和优异的生物降解性。由于其大量的极性羟基,半纤维素对非极性氧气具有良好的阻隔性能,使得这种生物聚合物作为食品包装材料。亲水性羟基还使聚合物容易吸水,导致较少满意的强度,特别是在潮湿的条件下。因此,仍然仍然追求具有增强的氧气和水蒸气阻挡能力的半纤维素膜的制备,以及机械强度。在此,三磷酸钠(STMP)用作酯化剂,通过酯化反应形成具有半纤维素的交联结构,以通过减少分子链之间的距离来改善阻挡性能。如此改性的半纤维素膜实现了3.72cm 3×μm×m-2×d-1×KPA-1和2.85×10-10×G×M-1×S-1×PA-1的氧气渗透性和水蒸气渗透性。分别在最低酯化剂中加入10%。交联结构也带来了良好的机械和热性能,拉伸强度达到30MPa,其比半纤维素膜高118%。其在Apple保存中的应用初步测试表明,所获得的阻隔膜可以有效地减缓苹果的氧化和脱水,显示在食品包装领域的应用前景。

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