Akinsemolu Adenike A, Idowu Adetola M, Onyeaka Helen N
School of Chemical Engineering, University of Birmingham, Birmingham B15 2TT, UK.
The Green Institute, Ondo 351101, Nigeria.
Polymers (Basel). 2024 Sep 30;16(19):2770. doi: 10.3390/polym16192770.
Plastic pollution is a major driver of climate change that is associated with biodiversity loss, greenhouse gas emissions, and negative soil, plant, animal, and human health. One of the solutions that has been proposed and is currently reducing the adverse effects of plastic on the planet is the replacement of synthetic plastics with biopolymers. The biodegradable polymers have been adapted for most of the applications of synthetic plastic. However, their use and disposal present some sustainability challenges. Recycling emerges as an effective way of promoting the sustainability of biopolymer use. In this article, we review recycling as a viable solution to improve the sustainability of biopolymers, emphasizing the current types and technologies employed in biopolymer recycling and the challenges faced in their adoption. Our exploration of the future directions in the conversion of biopolymers into new polymers for reuse establishes a connection between established continuous technological innovation, integration into circular economy models, and the establishment and strengthening of collaborations among key stakeholders in relevant industries as necessary steps for the adoption, full utilization, and improvement of recycling technologies for biopolymers. By connecting these factors, this study lays a foundation for the establishment of a roadmap for improved biopolymer recycling technologies and processes that promote the sustainability of synthetic plastic alternatives.
塑料污染是气候变化的主要驱动因素,与生物多样性丧失、温室气体排放以及对土壤、植物、动物和人类健康的负面影响相关。已提出并正在减少塑料对地球不利影响的解决方案之一是用生物聚合物替代合成塑料。可生物降解聚合物已适用于合成塑料的大多数应用。然而,它们的使用和处置带来了一些可持续性挑战。回收成为促进生物聚合物使用可持续性的有效方式。在本文中,我们将回收视为提高生物聚合物可持续性的可行解决方案进行综述,强调生物聚合物回收中目前使用的类型和技术以及采用这些技术所面临的挑战。我们对将生物聚合物转化为新聚合物以供再利用的未来方向的探索,确立了成熟的持续技术创新、融入循环经济模式以及在相关行业关键利益相关者之间建立和加强合作之间的联系,这些是采用、充分利用和改进生物聚合物回收技术的必要步骤。通过将这些因素联系起来,本研究为制定改进生物聚合物回收技术和工艺的路线图奠定了基础,这些技术和工艺将促进合成塑料替代品的可持续性。