Mallegni Norma, Gigante Vito, Verstichel Steven, Sandroni Marco, Malik Neetu, Cappello Miriam, Rossi Damiano, Filippi Sara, Lazzeri Andrea, Seggiani Maurizia, Cinelli Patrizia
Department of Civil and Industrial Engineering, University of Pisa, Largo Lucio Lazzarino 1, 56122 Pisa, Italy.
Normec OWS, Pantserschipstraat 163, 9000 Ghent, Belgium.
Polymers (Basel). 2025 Mar 30;17(7):943. doi: 10.3390/polym17070943.
In this work, by-products from insect farming valorisation are proposed as filler in biocomposite production, with relevant biodegradation in compost and valuable thermal and mechanical properties. Thus, we report on the preparation, properties, and biodegradability in compost of composites based on Poly(butylene succinate-co-adipate) (PBSA) and Poly(3-hydroxybutyrate-3-hydroxyvalerate) (PHB-HV) (70/30% by weight as a polymeric matrix, with filler from insect exoskeleton (I) up to 15% by weight in the 85% by weight of polymeric matrix. The insect biomass was a by-product obtained from grinding the insect's post-protein extraction dry exoskeleton. The composites were produced by melt extrusion and characterised in terms of processability, thermal stability, morphology, and mechanical properties to select formulations optimised for injection moulding processing. The optimised composites (PBSA/PHB-HV) with 15% by weight of filler were used to produce pots by injection moulding on an industrial scale extruder. Selected formulations were tested for biodegradability in compost, which evidenced the relevance of insect exoskeleton filler for meeting the requirements for the disintegration of rigid items. This paper presents a sustainable option for valorising the insect exoskeleton residue that remained after protein extraction for animal feed production and reducing the production cost of PBSA/PHB-HV-based composites without compromising the mechanical properties for application as rigid items in agriculture, all while promoting biodegradability in industrial compost.
在这项工作中,昆虫养殖增值产生的副产品被提议作为生物复合材料生产中的填料,其在堆肥中具有相关的生物降解性以及有价值的热性能和机械性能。因此,我们报告了基于聚(丁二酸丁二醇酯 - 共 - 己二酸酯)(PBSA)和聚(3 - 羟基丁酸酯 - 3 - 羟基戊酸酯)(PHB - HV)(按重量计70/30%作为聚合物基体)的复合材料在堆肥中的制备、性能和生物降解性,其中填料为昆虫外骨骼(I),在85%重量的聚合物基体中含量高达15%重量。昆虫生物质是通过研磨昆虫蛋白质提取后的干燥外骨骼获得的副产品。复合材料通过熔融挤出制备,并在加工性能、热稳定性、形态和机械性能方面进行了表征,以选择针对注塑加工优化的配方。含15%重量填料的优化复合材料(PBSA/PHB - HV)用于在工业规模的挤出机上通过注塑生产花盆。所选配方在堆肥中进行了生物降解性测试,这证明了昆虫外骨骼填料对于满足刚性物品崩解要求的相关性。本文提出了一种可持续的选择,既能使动物饲料生产中蛋白质提取后剩余的昆虫外骨骼残渣增值,又能降低基于PBSA/PHB - HV的复合材料的生产成本,同时不损害其作为农业刚性物品应用的机械性能,并在工业堆肥中促进生物降解性。