Villanueva Maria Pilar, Gioia Claudio, Sisti Laura, Martí Laura, Llorens-Chiralt Raquel, Verstichel Steven, Celli Annamaria
AIMPLAS, Plastics Technological Centre, Gustave Eiffel, 4, 46980 Paterna, Valencia, Spain.
Department of Civil, Chemical, Environmental and Materials Engineering, University of Bologna, Via Terracini 28, 40131 Bologna, Bologna, Italy.
Polymers (Basel). 2022 Jul 15;14(14):2874. doi: 10.3390/polym14142874.
The use of bioplastic mulch in agriculture has increased dramatically in the last years throughout the world. Nowadays, biodegradable materials for mulching films strive to constitute a reliable and more sustainable alternative to classical materials such as polyethylene (PE). The main challenge is to improve their durability in the soil to meet the required service length for crop farming by using benign and sustainable antioxidant systems. Here, we report the design and fabrication of biodegradable materials based on polybutylene (succinate adipate) (PBSA) for mulching applications, incorporating a fully biobased polymeric antioxidant deriving from ferulic acid, which can be extracted from an industrial by-product. Poly-dihydro (ethylene ferulate) (PHEF) from ferulic acid was synthesized by a two-step polymerization process. It is characterized by improved thermal stability in comparison with ferulic acid monomer and therefore suitable for common industrial processing conditions. Different blends of PBSA and PHEF obtained by melt mixing or by reactive extrusion were prepared and analyzed to understand the effect of the presence of PHEF. The results demonstrate that PHEF, when processed by reactive extrusion, presents a remarkable antioxidant effect, even in comparison with commercial additives, preserving a high level of the mechanical properties of the PBSA matrix without affecting the biodegradable character of the blend.
近年来,生物塑料地膜在全球农业中的使用量急剧增加。如今,用于地膜的可生物降解材料正努力成为聚乙烯(PE)等传统材料可靠且更具可持续性的替代品。主要挑战在于通过使用良性且可持续的抗氧化体系来提高其在土壤中的耐久性,以满足作物种植所需的使用期限。在此,我们报告了基于聚丁二酸丁二醇酯-己二酸丁二醇酯(PBSA)的用于地膜应用的可生物降解材料的设计与制备,其中包含一种源自阿魏酸的全生物基聚合物抗氧化剂,阿魏酸可从一种工业副产品中提取。通过两步聚合过程合成了源自阿魏酸的聚二氢(阿魏酸乙烯酯)(PHEF)。与阿魏酸单体相比,它具有更高的热稳定性,因此适用于常见的工业加工条件。制备并分析了通过熔融共混或反应挤出获得的不同PBSA与PHEF共混物,以了解PHEF存在的影响。结果表明,通过反应挤出加工时,PHEF即使与商业添加剂相比也呈现出显著的抗氧化效果,在保持PBSA基体高水平机械性能的同时,不影响共混物的可生物降解特性。