Bio-conversion of organic wastes towards polyhydroxyalkanoates

Zhe-Yi Kuang , Hao Yang , Shi-Wei Shen , Yi-Na Lin , Shu-Wen Sun , Markus Neureiter , Hai-Tao Yue , Jian-Wen Ye
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Abstract

The bio-manufacturing of products with substantial commercial value, particularly polyhydroxyalkanoates (PHA), using cost-effective carbon sources through microorganisms, has garnered heightened attention from both the scientific community and industry over the past few decades. Opting for industrial PHA production from various organic wastes, spanning industrial, agricultural, municipal, and food-based sources, emerges as a wiser choice. This strategy not only eases the burden of recycling organic waste and curbs environmental pollution but also trims down PHA production costs, rendering these materials more competitive in commercial markets. In addition, PHAs are a family of renewable, environmentally friendly, fully biodegradable and biocompatible polyesters with a multitude of applications. This review provides an overview of recent developments in PHA production from organic wastes. It covers the optimization of diverse metabolic pathways for producing various types of PHA from organic waste sources, pre-treatment and downstream processing for PHA using unrelated organic wastes, and challenges in industrial production of PHA using unrelated organic waste feedstocks and the challenges faced in industrial PHA production from organic wastes, along with potential solutions. Lastly, this study suggests underlying research endeavors aimed at further enhancing of the feasibility of industrial PHA production from organic wastes as an alternative to current petroleum-based plastics in the near future.

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将有机废物生物转化为聚羟基烷酸酯
过去几十年来,通过微生物利用具有成本效益的碳源生物制造具有重大商业价值的产品,特别是聚羟基烷酸酯(PHA),受到了科学界和工业界的高度关注。选择从工业、农业、市政和食品等各种有机废物中生产工业 PHA 是一个更明智的选择。这一战略不仅减轻了回收有机废物的负担,遏制了环境污染,还降低了 PHA 的生产成本,使这些材料在商业市场上更具竞争力。此外,PHA 是一系列可再生、环保、可完全生物降解且具有生物相容性的聚酯,具有多种用途。本综述概述了利用有机废物生产 PHA 的最新进展。它涵盖了从有机废物来源生产各种类型 PHA 的各种代谢途径的优化、利用无关有机废物进行 PHA 的预处理和下游加工、利用无关有机废物原料进行 PHA 工业生产所面临的挑战、利用有机废物进行 PHA 工业生产所面临的挑战以及潜在的解决方案。最后,本研究建议开展相关研究工作,以进一步提高利用有机废物工业化生产 PHA 的可行性,从而在不久的将来替代目前的石油基塑料。
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1.70
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