Bourmaud Alain, Konschak Kolja, Buffet Coralie, Calatraba Méline, Rudolph Anton Loïc, Kervoëlen Antoine, Gautherot Basile, Bonnin Estelle, Beaugrand Johnny
Université de Bretagne Sud, IRDL UMR CNRS 6027, 56100 Lorient, France.
INRAE, UR BIA Biopolymères Interactions Assemblages, Rue de la Géraudière, 44316 Nantes, France.
Polymers (Basel). 2023 Feb 7;15(4):820. doi: 10.3390/polym15040820.
This study focuses on the use of tomato ( L.) by-product biomass from industrial plants as reinforcement for designing a range of new degradable and biobased thermoplastic materials. As a novel technique, this fully circular approach enables a promising up-cycling of tomato wastes. After an in-depth morphological study of the degree of reinforcement through SEM and dynamic analysis, mechanical characterization was carried out. Our mechanical results demonstrate that this circular approach is of interest for composite applications. Despite their moderate aspect ratio values (between 1.5 and 2), the tomato by-product-reinforced materials can mechanically compete with existing formulations; PBS-Tomato fiber, for example, exhibits mechanical performance very close to that of PP-flax, especially regarding strength (+11%) and elongation at break (+6%). According to the matrix and particle morphology, a large range of products-biobased and/or degradable, depending on the targeted application-can be designed from tomato cultivation by-products.
本研究聚焦于将工业工厂产生的番茄(L.)副产物生物质用作增强材料,以设计一系列新型可降解且基于生物的热塑性材料。作为一种新颖的技术,这种完全循环利用的方法为番茄废弃物带来了前景广阔的升级再造。在通过扫描电子显微镜(SEM)和动态分析对增强程度进行深入的形态学研究之后,开展了力学表征。我们的力学结果表明,这种循环利用方法对于复合材料应用具有吸引力。尽管番茄副产物增强材料的长径比值适中(介于1.5和2之间),但其在力学性能上能够与现有配方相竞争;例如,聚丁二酸丁二醇酯-番茄纤维复合材料的力学性能与聚丙烯-亚麻复合材料非常接近,尤其是在强度方面(提高了11%)和断裂伸长率方面(提高了6%)。根据基体和颗粒形态,可依据目标应用,利用番茄种植副产物设计出种类繁多的基于生物和/或可降解的产品。