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生物废弃物到生物塑料(聚羟基烷酸酯):转化技术、策略、挑战和展望。

Biowaste-to-bioplastic (polyhydroxyalkanoates): Conversion technologies, strategies, challenges, and perspective.

机构信息

Department of Biological Engineering, College of Engineering, Konkuk University, Seoul 05029, Republic of Korea; Institute for Ubiquitous Information Technology and Application, Konkuk University, Seoul 05029, Republic of Korea.

Department of Biotechnology, Shivaji University, Vidyanagar Kolhapur 416004, Maharashtra, India.

出版信息

Bioresour Technol. 2021 Apr;326:124733. doi: 10.1016/j.biortech.2021.124733. Epub 2021 Jan 19.

Abstract

Biowaste management is a challenging job as it is high in nutrient content and its disposal in open may cause a serious environmental and health risk. Traditional technologies such as landfill, bio-composting, and incineration are used for biowaste management. To gain revenue from biowaste researchers around the world focusing on the integration of biowaste management with other commercial products such as volatile fatty acids (VFA), biohydrogen, and bioplastic (polyhydroxyalkanoates (PHA)), etc. PHA production from various biowastes such as lignocellulosic biomass, municipal waste, waste cooking oils, biodiesel industry waste, and syngas has been reported successfully. Various nutrient factors i.e., carbon and nitrogen source concentration and availability of dissolved oxygen are crucial factors for PHA production. This review is an attempt to summarize the recent advancements in PHA production from various biowaste, its downstream processing, and other challenges that need to overcome making bioplastic an alternate for synthetic plastic.

摘要

生物废物管理是一项具有挑战性的工作,因为它的营养成分含量高,如果在开放环境中处理,可能会对环境和健康造成严重风险。传统的生物废物管理技术包括填埋、生物堆肥和焚烧等。为了从生物废物中获得收益,世界各地的研究人员专注于将生物废物管理与其他商业产品(如挥发性脂肪酸(VFA)、生物氢和生物塑料(聚羟基烷酸酯(PHA))等)相结合。已经成功报道了从各种生物废物(如木质纤维素生物质、城市废物、废食用油、生物柴油工业废物和合成气)中生产 PHA。各种营养因素,即碳源和氮源浓度以及溶解氧的可用性,是 PHA 生产的关键因素。本综述试图总结从各种生物废物中生产 PHA 的最新进展、其下游加工以及其他需要克服的挑战,使生物塑料成为合成塑料的替代品。

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