Baseri Somayeh
Department of Textile Design and Printing, Semnan University, P. O. Box 35131-19111, Semnan, Iran.
Sci Rep. 2025 May 23;15(1):18016. doi: 10.1038/s41598-025-03063-y.
The worldwide agricultural and food industries produce serious environmental pollution problems as well as increased costs of waste disposal. While the agro-food wastes are able to provide valuable resources for the production of bio-materials to promote circularity of the agro-food chain obtaining a better balance between economic, environmental, and social aspects. Today's society is then becoming more and more sensitive to such important issues as resource optimization and ecologically sound waste management strategies for a sustainable future. Bio-finishing of textile materials emerges as an effective solution to management of agro-food wastes and alleviate environmental pollution. In this way, for the first time, a bio-mordant by-product was recovered from the mango seed kernel to replace metallic mordanting agents in the dyeing process of wool with natural dye extracted from the leaves of S. rebaudiana through the two conventional and ultrasound-assisted procedures. The influence of the main process parameters on the dyeing efficiency was evaluated and an efficient mathematical model was developed to provide the best dyeing conditions at minimum materials and energy costs. Results revealed that while the ultrasound method was able to improve extraction efficiency, the bio-materials produced in this study could further display good antioxidant activity, antibacterial performance, and enhanced color fastness. Moreover, the elaborated dyeing process reduced the environmental parameters (BOD and COD). The findings foresee developing a new sustainable process for the resource optimization of mango seed kernel and S. rebaudiana leaves to decrease the agro-food wastes disposal impacts as well as close he loop in the circular bio economy.
全球农业和食品行业产生了严重的环境污染问题,同时废物处理成本也在增加。虽然农业食品废物能够为生物材料的生产提供宝贵资源,以促进农业食品链的循环利用,在经济、环境和社会层面之间实现更好的平衡。当今社会对资源优化和可持续未来的生态友好型废物管理策略等重要问题越来越敏感。纺织材料的生物后整理成为管理农业食品废物和减轻环境污染的有效解决方案。通过这种方式,首次从芒果籽仁中回收了一种生物媒染剂副产品,以取代金属媒染剂,用于用从甜叶菊叶子中提取的天然染料对羊毛进行染色的过程,采用了两种传统方法和超声辅助方法。评估了主要工艺参数对染色效率的影响,并建立了一个有效的数学模型,以在最低的材料和能源成本下提供最佳染色条件。结果表明,虽然超声方法能够提高提取效率,但本研究中生产的生物材料还能进一步展现出良好的抗氧化活性、抗菌性能和更高的色牢度。此外,精心设计的染色过程降低了环境参数(生化需氧量和化学需氧量)。这些发现预示着将开发一种新的可持续工艺,用于芒果籽仁和甜叶菊叶子的资源优化,以减少农业食品废物处理的影响,并在循环生物经济中实现闭环。