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Development of Bio-Based Films and 3D Objects from Apple Pomace

机译:Apple Pomace开发基于生物的胶片和3D对象

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摘要

Extensive quantities of apple pomace are generated annually but its disposal is still challenging. This study addresses this issue by introducing a new, environmentally-friendly approach for the production of sustainable biomaterials from apple pomace, containing 55.47% free sugars and a water insoluble fraction, containing 29.42 ± 0.44% hemicelluloses, 38.99 ± 0.42% cellulose, and 22.94 ± 0.12% lignin. Solution casting and compression molding were applied to form bio-based films and 3D objects (i.e., fiberboards), respectively. Using glycerol as plasticizer resulted in highly compact films with high tensile strength and low elongation (16.49 ± 2.54 MPa and 10.78 ± 3.19%, respectively). In contrast, naturally occurring sugars in the apple pomace showed stronger plasticizing effect in the films and resulted in a fluffier and connected structure with significantly higher elongation (37.39 ± 10.38% and 55.41 ± 5.38%, respectively). Benefiting from the self-binding capacity of polysaccharides, fiberboards were prepared by compression molding at 100 °C using glycerol or naturally occurring sugars, such as plasticizer. The obtained fiberboards exhibited tensile strength of 3.02–5.79 MPa and elongation of 0.93%–1.56%. Possible applications for apple pomace biomaterials are edible/disposable tableware or food packaging.
机译:每年都有大量的苹果渣产生,但是如何处置仍然具有挑战性。这项研究通过引入一种新的,环保的方法来解决这个问题,该方法用于从苹果渣中生产可持续的生物材料,其中包含55.47%的游离糖和水不溶性成分,其中包含29.42±0.44%的半纤维素,38.99±0.42%的纤维素和22.94 ±0.12%木质素。溶液浇铸和压塑分别用于形成生物基薄膜和3D对象(即纤维板)。使用甘油作为增塑剂可得到具有高拉伸强度和低伸长率(分别为16.49±2.54 MPa和10.78±3.19%)的高致密性薄膜。相比之下,苹果渣中的天然糖在薄膜中表现出更强的增塑作用,并导致蓬松和相连的结构,伸长率明显更高(分别为37.39±10.38%和55.41±5.38%)。得益于多糖的自结合能力,纤维板通过使用甘油或天然存在的糖类(例如增塑剂)在100°C下压缩成型来制备。所得纤维板的抗张强度为3.02-5.79 MPa,伸长率为0.93%-1.56%。苹果渣生物材料的可能应用是可食用/一次性餐具或食品包装。

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