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Sustainable starch-based barrier coatings for packaging applications

机译:用于包装应用的可持续淀粉基阻隔涂料

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摘要

Starch, as one of the most abundant, sustainable and low-cost commercial biopolymers, has versatile applications in many industries (e.g. food, paper, packaging, construction, etc.). Herein, we reported the synthesis of starch-based polyelectrolyte complexes (SPECs) barrier coatings through a straightforward, industrially scalable shear mixing process. The formation of SPECs was significantly impacted by molecular weight (MW) and charge density of starch polymer chains, resulting in SPECs with different particle sizes, particle morphologies and rheological behaviors. Larger MW and higher charge density contributed to the formation of stiff and entangled starch macromolecular network modulated by different intermolecular interactions, thus leading to a densely packed structure in the coating materials. High MW SPEC coated paperboard exhibited uniform, defect-free surface morphology, improved mechanical properties (18% and 21% increase in tensile strength and Young's modulus, respectively), and excellent barrier performance against water vapor (40% lower than uncoated paperboard), grease (Kit number of 12), and oil penetration (Cobb(60): 1.85 g/m(2)). Such cost-effective, biodegradable and ecologically compatible SPECs barrier materials hold high potential as sustainable alternative coatings for paper and paperboard packaging applications.
机译:淀粉作为最丰富,可持续和低成本的商业生物聚合物之一,在许多行业(例如食品,造纸,包装,建筑等)具有广泛的应用。在本文中,我们报道了通过直接的,工业上可扩展的剪切混合工艺合成淀粉基聚电解质复合物(SPEC)隔离涂层。 SPEC的形成受到淀粉聚合物链的分子量(MW)和电荷密度的显着影响,从而导致SPEC具有不同的粒径,颗粒形态和流变行为。较大的MW和较高的电荷密度有助于形成由不同的分子间相互作用调节的硬质且缠结的淀粉大分子网络,从而导致涂料中的致密堆积结构。高分子量SPEC涂层纸板表现出均匀,无缺陷的表面形态,改善的机械性能(抗张强度和杨氏模量分别提高18%和21%)以及出色的抗水蒸气阻隔性能(比未涂层纸板低40%),润滑脂(套件编号12)和渗透油(Cobb(60):1.85 g / m(2))。这种具有成本效益,可生物降解和生态兼容的SPEC阻隔材料具有很高的潜力,可以用作纸和纸板包装应用的可持续替代涂料。

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