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生物废料的生物工程化以回收生物产品和生物能源:迈向可持续零废物环境的循环经济方法。

Bioengineering of biowaste to recover bioproducts and bioenergy: A circular economy approach towards sustainable zero-waste environment.

作者信息

Kumar Vinay, Vangnai Alisa S, Sharma Neha, Kaur Komalpreet, Chakraborty Pritha, Umesh Mridul, Singhal Barkha, Utreja Divya, Carrasco Edgar Uquiche, Andler Rodrigo, Awasthi Mukesh Kumar, Taherzadeh Mohammad J

机构信息

Ecotoxicity and Bioconversion Laboratory, Department of Community Medicine, Saveetha Medical College and Hospital, Saveetha Institute of Medical and Technical Sciences (SIMATS), Chennai, Thandalam, 602105, India.

Center of Excellence in Biocatalyst and Sustainable Biotechnology, Department of Biochemistry, Faculty of Science, Chulalongkorn University, Bangkok, 10330, Thailand.

出版信息

Chemosphere. 2023 Apr;319:138005. doi: 10.1016/j.chemosphere.2023.138005. Epub 2023 Jan 30.

Abstract

The inevitable need for waste valorisation and management has revolutionized the way in which the waste is visualised as a potential biorefinery for various product development rather than offensive trash. Biowaste has emerged as a potential feedstock to produce several value-added products. Bioenergy generation is one of the potential applications originating from the valorisation of biowaste. Bioenergy production requires analysis and optimization of various parameters such as biowaste composition and conversion potential to develop innovative and sustainable technologies for most effective utilization of biowaste with enhanced bioenergy production. In this context, feedstocks, such as food, agriculture, beverage, and municipal solid waste act as promising resources to produce renewable energy. Similarly, the concept of microbial fuel cells employing biowaste has clearly gained research focus in the past few decades. Despite of these potential benefits, the area of bioenergy generation still is in infancy and requires more interdisciplinary research to be sustainable alternatives. This review is aimed at analysing the bioconversion potential of biowaste to renewable energy. The possibility of valorising underutilized biowaste substrates is elaborately presented. In addition, the application and efficiency of microbial fuel cells in utilizing biowaste are described in detail taking into consideration of its great scope. Furthermore, the review addresses the significance bioreactor development for energy production along with major challenges and future prospects in bioenergy production. Based on this review it can be concluded that bioenergy production utilizing biowaste can clearly open new avenues in the field of waste valorisation and energy research. Systematic and strategic developments considering the techno economic feasibilities of this excellent energy generation process will make them a true sustainable alternative for conventional energy sources.

摘要

对废物进行增值利用和管理的必然需求,彻底改变了人们对废物的看法,不再将其视为令人厌恶的垃圾,而是视作用于各种产品开发的潜在生物炼制厂。生物废物已成为生产多种增值产品的潜在原料。生物能源生产是生物废物增值利用的潜在应用之一。生物能源生产需要分析和优化各种参数,如生物废物组成和转化潜力,以开发创新且可持续的技术,从而最有效地利用生物废物并提高生物能源产量。在这种背景下,食品、农业、饮料和城市固体废物等原料成为生产可再生能源的有前景的资源。同样,在过去几十年里,采用生物废物的微生物燃料电池概念显然已成为研究热点。尽管有这些潜在益处,但生物能源生产领域仍处于起步阶段,需要更多跨学科研究才能成为可持续的替代方案。本综述旨在分析生物废物转化为可再生能源的潜力。详细介绍了将未充分利用的生物废物底物进行增值利用的可能性。此外,考虑到微生物燃料电池的广阔应用前景,详细描述了其在利用生物废物方面的应用和效率。此外,本综述还探讨了用于能源生产的生物反应器开发的重要性,以及生物能源生产中的主要挑战和未来前景。基于本综述可以得出结论,利用生物废物生产生物能源显然可以为废物增值利用和能源研究领域开辟新途径。考虑到这一卓越能源生产过程的技术经济可行性而进行的系统和战略发展,将使其成为传统能源真正的可持续替代方案。

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