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利用济州假丝酵母进行生物刺激增强聚己二酸/对苯二甲酸丁二醇酯的生物降解以有效减少塑料垃圾

Enhancing biodegradation of PBAT through bio-stimulation using Pseudozyma jejuensis for effective plastic waste reduction.

作者信息

Jang Yewon, Kim Minseo, Kim Yeji, Yu Jaeyoung, Kim Sung-Kon, Han Jeehoon, Kim Yang-Hoon, Min Jiho

机构信息

School of Semiconductor and Chemical Engineering, Jeonbuk National University, 567 Baekje-daero, deokjin-gu, Jeonju-si, Jeollabuk-do, 54896, Republic of Korea.

Department of Chemical Engineering, Pohang University of Science and Technology, Pohang, 37673, Republic of Korea.

出版信息

Chemosphere. 2023 Nov;340:139867. doi: 10.1016/j.chemosphere.2023.139867. Epub 2023 Aug 17.

Abstract

Polybutylene adipate-co-terephthalate (PBAT) is a flexible and biodegradable material that finds applications in mulching film and the food packaging industry. In this study, we aimed to address the global plastic waste problem by developing an improved biodegradation system for PBAT. Our focus was on utilizing the biodegradation capabilities of Pseudozyma jejuensis, a microorganism known for its ability to decompose Polycaprolactam (PCL). Through bio-stimulation, we aimed to enhance the growth mechanism of P. jejuensis and optimize PBAT biodegradation. Our results demonstrated significant structural changes in the PBAT film, as revealed by FT-IR analysis. Moreover, FE-SEM imaging exhibited evident surface erosion and pitting, indicating physical alterations due to biodegradation. These findings provide strong evidence for the efficiency of our developed biodegradation system. To fully harness the potential of this system and enable its practical implementation, further research is warranted to optimize and scale up the process. Our work contributes to the ongoing efforts to combat the global plastic waste crisis, offering a valuable solution for the efficient biodegradation of PBAT.

摘要

聚己二酸-对苯二甲酸丁二醇酯(PBAT)是一种可用于地膜和食品包装行业的柔性可生物降解材料。在本研究中,我们旨在通过开发一种改进的PBAT生物降解系统来解决全球塑料垃圾问题。我们的重点是利用济州假丝酵母的生物降解能力,该微生物以其分解聚己内酰胺(PCL)的能力而闻名。通过生物刺激,我们旨在增强济州假丝酵母的生长机制并优化PBAT生物降解。我们的结果表明,FT-IR分析显示PBAT薄膜发生了显著的结构变化。此外,FE-SEM成像显示出明显的表面侵蚀和麻点,表明生物降解导致了物理变化。这些发现为我们开发的生物降解系统的效率提供了有力证据。为了充分发挥该系统的潜力并使其实际应用成为可能,有必要进行进一步的研究以优化和扩大该过程。我们的工作为应对全球塑料垃圾危机的持续努力做出了贡献,为PBAT的高效生物降解提供了一个有价值的解决方案。

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