首页> 外文期刊>European Polymer Journal >The fabrication of bilayer polylactic acid films from cross-linked starch as eco-friendly biodegradable materials: Synthesis, characterization, mechanical and physical properties
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The fabrication of bilayer polylactic acid films from cross-linked starch as eco-friendly biodegradable materials: Synthesis, characterization, mechanical and physical properties

机译:双层聚乳酸薄膜从交联淀粉作为环保可生物降解材料的制备:合成,表征,机械和物理性质

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摘要

In this study, pure potato starch (PPS) was purified from waste potato residual to fabricate cross-linked bilayer materials with the casting method. Malonic acid (MA) was employed to get cross-linked material from PPS as PPS-MA. Then polylactic acid (PLA) was also implemented onto PPS and PPS-MA to produce bilayer materials as PPS-PLA and PPS-MA-PLA. The obtained these bilayer films were characterized by FTIR, XRD, and TGA. The mechanical and physical applications such as water vapor permeability, water uptake, moisture content, solubility, and opacity were investigated. The biodegradation calculations were also done by the process of composting. It has demonstrated that each application onto PPS increased the mechanical features. However, elongation wasn't seen during the breaking test of PPS and PPS-MA films, whereas the PPS-PLA and PPS-MA-PLA films demonstrated 9.34% and 10.14% elongation at break that substantiates the structural durability against rupture, fragmentation, and feeble. Furthermore, the water vapor permeability, water uptake, moisture content, and solubility decreased but the opacity has increased.
机译:在该研究中,纯马铃薯淀粉(PPS)从废马铃薯残留纯化以用铸造方法制造交联双层材料。使用丙酸(MA)从PPS作为PPS-MA的交联材料。然后将聚乳酸(PLA)实施在PPS和PPS-MA上,以产生双层材料作为PPS-PLA和PPS-MA-PLA。所得这些双层膜的特征在于FTIR,XRD和TGA。研究了水蒸汽渗透性,水吸收,水分含量,溶解度和不透明度等机械和物理应用。生物降解计算也通过堆肥过程来完成。它证明每个应用程序都会增加机械特征。然而,在PPS和PPS-MA薄膜的破碎试验期间没有看到伸长率,而PPS-PLA和PPS-MA-PLA薄膜在断裂中展示了9.34%和10.14%的伸长率,这使得防止破裂,碎裂,碎裂的结构耐久性和虚弱。此外,水蒸气渗透性,水吸收,水分含量和溶解度降低,但不透明度增加。

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