Zhang Rongrong, Jia Shuya, Li Jun, Xu Yong, Chen Hsinghung, Zhang Xiaolei
The Institute for Sustainable Development, Macau University of Science and Technology, Macau 999078, China.
Department of Chemical and Process Engineering, University of Strathclyde, Glasgow G1 1XJ, U.K.
ACS Sustain Chem Eng. 2025 Jul 15;13(29):11226-11237. doi: 10.1021/acssuschemeng.5c01154. eCollection 2025 Jul 28.
As the global demand for polylactic acid (PLA), a biodegradable plastic, continues to increase, both its production and consumption have been increasing steadily each year. This growth poses challenges for managing PLA waste disposal, highlighting the need for innovative solutions. In this study, techno-economic simulations were performed to recycle waste PLA using three distinct processes across seven different scenarios. These processes not only address waste management issues but also promote a transition from a linear to a circular plastic economy. The findings demonstrate that, compared to conventional industrial processes, the proposed recycling method using a TiO/SiO catalyst has significantly increased PLA yield by 59.87% while reducing costs by 22.87%. The primary factor driving this improved yield is the choice of catalyst, which plays a critical role in determining the activity and selectivity of the direct conversion of methyl lactate to lactide in the gas phase. This research provides a sustainable and economically viable solution for recycling PLA waste, aligning with the growing demand for environmentally friendly alternatives in the plastics industry. The findings are essential for advancing the development of a circular plastics economy and emphasize the importance of catalyst optimization in improving the efficiency and sustainability of PLA recycling processes.
随着全球对生物可降解塑料聚乳酸(PLA)的需求持续增长,其产量和消费量每年都在稳步增加。这种增长给聚乳酸废料处理管理带来了挑战,凸显了对创新解决方案的需求。在本研究中,进行了技术经济模拟,以在七种不同场景下使用三种不同工艺回收聚乳酸废料。这些工艺不仅解决了废料管理问题,还推动了从线性塑料经济向循环塑料经济的转变。研究结果表明,与传统工业工艺相比,使用TiO/SiO催化剂的拟议回收方法使聚乳酸产量显著提高了59.87%,同时成本降低了22.87%。推动产量提高的主要因素是催化剂的选择,它在决定气相中乳酸甲酯直接转化为丙交酯的活性和选择性方面起着关键作用。这项研究为回收聚乳酸废料提供了一种可持续且经济可行的解决方案,符合塑料行业对环保替代品日益增长的需求。这些发现对于推进循环塑料经济的发展至关重要,并强调了催化剂优化在提高聚乳酸回收工艺效率和可持续性方面的重要性。