Merino Danila
Basque Center for Macromolecular Design and Engineering (POLYMAT), University of the Basque Country (UPV/EHU), Avenida de Tolosa 72, 20018 Donostia-San Sebastian, Spain.
ACS Mater Au. 2024 Jul 12;4(5):450-458. doi: 10.1021/acsmaterialsau.4c00031. eCollection 2024 Sep 11.
In the 21st century, global agriculture confronts the urgent challenge of increasing food production by 70% by 2050 while simultaneously addressing environmental and health concerns. Plastics, integral to agricultural innovation, present sustainability challenges due to their non-biodegradable nature and contribution to pollution. This perspective examines the transition to bioplastics, emphasizing their bio-based origin and their crucial characteristic of being readily biodegradable in the soil. Key bioplastics such as poly(lactic acid) (PLA), polyhydroxyalkanoates (PHAs), and biomass-derived polymers are discussed, particularly regarding the microplastic generation in soil resulting from their use in specific applications like mulch films, delivery systems, and soil conditioners. Embracing bioplastics signifies a significant step forward in achieving sustainable agriculture and addressing plastic waste. However, it is highlighted that while some bioplastics can be recovered and recycled, special applications where the plastic is in intimate contact with soil pose challenges for recovery. In these cases, that represent more than the 50% of plastics used in agriculture, meticulous design for biodegradation in soil synchronized with agricultural cycles is necessary. This approach ensures minimal environmental impact and promotes a circular approach to plastic use in agriculture.
在21世纪,全球农业面临着一项紧迫的挑战:到2050年将粮食产量提高70%,同时还要应对环境和健康问题。塑料是农业创新不可或缺的一部分,但由于其不可生物降解的性质以及对污染的影响,带来了可持续性挑战。本文探讨了向生物塑料的转变,强调了它们基于生物的来源以及在土壤中易于生物降解的关键特性。讨论了关键的生物塑料,如聚乳酸(PLA)、聚羟基脂肪酸酯(PHA)和生物质衍生聚合物,特别关注了它们在诸如地膜、输送系统和土壤改良剂等特定应用中使用后在土壤中产生微塑料的情况。采用生物塑料标志着在实现可持续农业和解决塑料废物问题方面向前迈出了重要一步。然而,需要强调的是,虽然一些生物塑料可以回收利用,但塑料与土壤密切接触的特殊应用给回收带来了挑战。在这些占农业用塑料半数以上的情况下,必须精心设计使其在土壤中与农业周期同步进行生物降解。这种方法可确保对环境的影响最小,并促进农业中塑料使用的循环模式。