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级联策略,充分利用 Garganega 白葡萄渣,提取生物活性物质和生物基材料。

Cascade strategies for the full valorisation of Garganega white grape pomace towards bioactive extracts and bio-based materials.

机构信息

Department of Biological, Geological and Environmental Sciences, University of Bologna, Bologna, Italy.

Department of Civil, Chemical, Environmental and Materials Engineering, University of Bologna, Bologna, Italy.

出版信息

PLoS One. 2020 Sep 18;15(9):e0239629. doi: 10.1371/journal.pone.0239629. eCollection 2020.

Abstract

Agro-waste reduction and reuse are among the current main social challenges. In this perspective, the present research was aimed at the complete valorisation of Garganega grape pomace by recovering bioactive phenol extracts and by testing the solid fibre extract residues in composite formulation for packaging applications. The pomace was derived from white wine production, therefore, respect to red pomace, it was promptly removed from must after pressing, and its exploitation can be particularly interesting and valuable as still rich in active compounds. Phenol extracts were obtained both via solvent-based and pressurised liquid extractions and their phytochemical compositions were compared in terms of total amount of phenols, flavonoids, flavanols, anthocyanins, hydroxycinnamic acids, and reducing sugars. Antioxidant activity and detailed phenol profiles were also achieved. The highest phenol yield was obtained via solvent-based extraction with 75% acetone (v/v), solid/liquid ratio 1:5, 2h incubation at 50°C (77.9 gGAeq/kgDW). The fibrous solid residue of the extraction was characterized via thermogravimetric analysis and used for composite preparation by melt mixing with the renewable and biodegradable PHBV polymer through a green approach (solvent-less process). The composites resulted thermally stable at high temperatures, showing initial degradation processes only at temperatures higher than 250°C. Differential scanning calorimetry analyses were carried out to study melting and crystallization phenomena, while mechanical properties were investigated by tensile tests. The materials finally showed properties similar to those of the matrix. The bio-composites can be considered as an alternative to plain PHBV, since they are less expensive and eco-friendlier thanks to a reduced polymeric content, and they could represent a suitable way for full agro-waste exploitation.

摘要

农业废弃物的减少和再利用是当前的主要社会挑战之一。从这个角度出发,本研究旨在充分利用 Garganega 葡萄渣,回收生物活性酚类提取物,并测试固体纤维提取物残渣在包装应用中的复合材料配方中的性能。该渣源自白葡萄酒生产,因此与红渣相比,它在压榨后立即从葡萄汁中去除,其利用可能特别有趣和有价值,因为它仍然富含活性化合物。酚类提取物是通过溶剂萃取和加压液体萃取获得的,并从总酚含量、类黄酮、黄烷醇、花青素、羟基肉桂酸和还原糖的角度比较了它们的植物化学成分。还测定了抗氧化活性和详细的酚类图谱。通过 75%(v/v)丙酮溶剂萃取、固液比 1:5、50°C 孵育 2 小时(77.9 gGAeq/kgDW)获得了最高的酚类产率。萃取后的纤维固体残渣通过热重分析进行了表征,并通过熔融混合可再生和可生物降解的 PHBV 聚合物以绿色方法(无溶剂过程)用于复合材料的制备。复合材料在高温下表现出热稳定性,仅在温度高于 250°C 时才显示初始降解过程。差示扫描量热法分析用于研究熔融和结晶现象,而拉伸试验用于研究力学性能。最终的材料表现出与基质相似的性能。生物复合材料可以被认为是纯 PHBV 的替代品,因为它们的成本更低,对环境更友好,因为它们的聚合物含量减少,并且它们可以代表充分利用农业废弃物的一种合适方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72d9/7500587/8155ded554af/pone.0239629.g001.jpg

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