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循环经济中用于微生物生产绿色塑料的生物炼制废物概述

An Overview of Biorefinery Waste for Microbial Production of Green Plastic in a Circular Economy.

作者信息

Gudapati Geethika, Veluru Sridevi, Bora Tanmayi, Tukaram Bai M, Dwarapureddy Anupama Kavya Priya, Reddi Giri Prasad, Hamzah Husam Talib

机构信息

Department of Chemical Engineering, Junction, AU North Campus, Andhra University North Campus, Andhra University, Visakhapatnam, 530003 Andhra Pradesh, India.

出版信息

Food Technol Biotechnol. 2025 Jun;63(2):220-237. doi: 10.17113/ftb.63.02.25.8966.

Abstract

An increasing amount of plastics is being used due to the growing population. Plastic waste pollution has become a major problem, especially in the marine environment, due to the increasing global demand for plastic materials. Bioplastics produced from waste in biorefineries offer a sustainable alternative to traditional plastics by recycling materials that are normally thrown away in the food, farming and manufacturing industries. This technology tackles both the plastic waste crisis and the inefficient use of biomass. By recycling biorefinery waste into bioplastics, the impact on the environment can be reduced, waste minimised and less fossil fuel consumed. Improving material qualities, reducing production costs and optimising the efficiency and scalability of these processes are all ongoing challenges. This review focuses on waste biorefineries for bioplastic synthesis as a sustainable approach to the circular bioeconomy. It also provides a better understanding of environmental sustainability, societal well-being and technological advances in the utilisation of various biorefineries as different substrates and methods for bioplastic synthesis.

摘要

由于人口增长,塑料的使用量日益增加。由于全球对塑料材料的需求不断增加,塑料垃圾污染已成为一个主要问题,尤其是在海洋环境中。生物精炼厂利用废弃物生产的生物塑料通过回收食品、农业和制造业中通常被丢弃的材料,为传统塑料提供了一种可持续的替代品。这项技术既能解决塑料垃圾危机,又能解决生物质利用效率低下的问题。通过将生物精炼厂的废弃物回收制成生物塑料,可以减少对环境的影响,将废弃物减至最少,并减少化石燃料的消耗。提高材料质量、降低生产成本以及优化这些工艺的效率和可扩展性都是目前面临的挑战。本综述重点关注用于生物塑料合成的废弃物生物精炼厂,将其作为循环生物经济的一种可持续方法。它还能让人更好地理解环境可持续性、社会福祉以及利用各种生物精炼厂作为生物塑料合成的不同底物和方法方面的技术进步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1872/12270599/aac651efd5a1/FTB-63-220-f3.jpg

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