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Integrated Efforts for the Valorization of Sweet Potato By-Products within a Circular Economy Concept: Biocomposites for Packaging Applications Close the Loop

机译:在循环经济概念中综合努力储存甘薯副产品的储价:用于包装应用的生物复合材料关闭环

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摘要

With the aim to fully exploit the by-products obtained after the industrial extraction of starch from sweet potatoes, a cascading approach was developed to extract high-value molecules, such as proteins and pectins, and to valorize the solid fraction, rich in starch and fibrous components. This fraction was used to prepare new biocomposites designed for food packaging applications. The sweet potato residue was added to poly(3-hydroxybutyrate-co-3-hydroxyvalerate) in various amounts up to 40 wt % by melt mixing, without any previous treatment. The composites are semicrystalline materials, characterized by thermal stability up to 260 °C. For the composites containing up to 10 wt % of residue, the tensile strength remains over 30 MPa and the strain stays over 3.2%. A homogeneous dispersion of the sweet potato waste into the bio-polymeric matrix was achieved but, despite the presence of hydrogen bond interactions between the components, a poor interfacial adhesion was detected. Considering the significant percentage of sweet potato waste used, the biocomposites obtained show a low economic and environmental impact, resulting in an interesting bio-alternative to the materials commonly used in the packaging industry. Thus, according to the principles of a circular economy, the preparation of the biocomposites closes the loop of the complete valorization of sweet potato products and by-products.
机译:随着旨在充分利用在甘薯的淀粉的工业提取后获得的副产品,开发了一种级联方法以提取高价值分子,例如蛋白质和果胶,并储存富含淀粉的固体级分,富含淀粉和植物纤维组分。该级分用于制备专为食品包装应用而设计的新型生物复合材料。通过熔融混合将甘薯残余物加入到聚(3-羟基丁酸酯-CO-3-羟基羟基戊酰羟戊烷中,以熔融混合,在没有任何先前的治疗的情况下,各种量高达40wt%。复合材料是半结晶材料,其特征在于热稳定性,可达260℃。对于含有高达10wt%残基的复合材料,拉伸强度保持超过30MPa,菌株保持超过3.2%。将甘薯废物均匀分散到生物聚合物基质中,但是,尽管部件之间存在氢键相互作用,但检测到差的界面粘附性差。考虑到所用的甘薯废物的显着百分比,获得的生物复合材料显示出低的经济和环境影响,导致包装行业常用材料的有趣生物替代品。因此,根据循环经济的原理,生物复合材料的制备闭合了甘薯产物的完全储存的环,备份。

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