Tyupova Alona, Harasym Joanna
Department of Biotechnology and Food Analysis, Wroclaw University of Economics and Business, Komandorska 118/120, 53-345 Wroclaw, Poland.
Adaptive Food Systems Accelerator-Science Centre, Wroclaw University of Economics and Business, 53-345 Wroclaw, Poland.
Foods. 2024 Jul 11;13(14):2186. doi: 10.3390/foods13142186.
An energy supply crisis is impacting all the branches, including the agriculture and food industry. The wise and responsible utilization of plant raw materials already cultivated is becoming a must in the country's economy. Not only the waste of the resources included but also the environmental challenge are concerns behind the not exploited food production by-streams and leftovers' valorization. Fruits and vegetables' out of the market quality "beauty" standards are still valuable sources of nutritious compounds. The conversion of raw materials into edible products can be provided by many techniques, with three-dimensional printing being the most individualized one. The main objective of this review was to summarize the existing efforts for the valorization of fruits and vegetable residuals into edible 3D inks and then 3D printed products. The clustering analysis was used for the separation of certain research approaches in fruit and vegetable wastes exploitation for 3D printing inks' formulation. As the multilayer deposit technique is strongly dependent on the printing conditions and 3D ink formulation, therefore the tabularized description was included presenting the nozzle diameter, printing speed and other conditions specified.
能源供应危机正在影响包括农业和食品工业在内的所有行业。在该国经济中,明智且负责任地利用已种植的植物原料已成为必然。未被利用的食品生产副产品和剩余物的增值背后,不仅存在包括资源浪费在内的问题,还涉及环境挑战。不符合市场质量“美观”标准的水果和蔬菜仍是营养化合物的宝贵来源。将原材料转化为可食用产品可以通过多种技术实现,其中三维打印是最具个性化的技术。本综述的主要目的是总结将水果和蔬菜残渣转化为可食用3D墨水并进而制成3D打印产品的现有相关努力。聚类分析用于区分在利用水果和蔬菜废料制备3D打印墨水配方方面的某些研究方法。由于多层沉积技术强烈依赖于打印条件和3D墨水配方,因此还包括了列表说明,列出了喷嘴直径、打印速度及其他指定条件。