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微藻生物质的厌氧消化用于生物能源生产、去除营养物质和微囊藻毒素:现状。

Anaerobic digestion of microalgal biomass for bioenergy production, removal of nutrients and microcystin: current status.

机构信息

Hunan Provincial Key Laboratory of Clinical Epidemiology, Xiangya School of Public Health, Central South University, Changsha, Hunan, China.

Hunan Province Key Laboratory of Typical Environmental Pollution and Health Hazards, School of Public Health, University of South China, Hengyang, China.

出版信息

J Appl Microbiol. 2021 Oct;131(4):1639-1651. doi: 10.1111/jam.15000. Epub 2021 Feb 19.

Abstract

Using renewable microalgal biomass as active feedstocks for biofuels and bioproducts is explored to substitute petroleum-based fuels and chemicals. In the last few years, the importance of microalgae biomass has been realized as a renewable feedstock due to several positive attributes associated with it. Biorefinery via anaerobic digestion (AD) of microalgal biomass is a promising and sustainable method to produce value-added chemicals, edible products and biofuels. Microalgal biomass pretreatment is a significant process to enhance methane production by AD. Findings on the AD microbial community's variety and organization can give novel in turn on digester steadiness and presentation. This review presents a vital study of the existing facts on the AD microbial community and AD production. Co-digestion of microalgal biomass with different co-substrates was used in AD to enhance biogas production, and the process was economically viable with improved biodegradability. Microcystins, which are produced by toxic cyanobacterial blooms, create a severe hazard to environmental health. Anaerobic biodegradation is an effective method to degrade the microcystins and convert into nontoxic products. However, for the cost-effective conversion of biomass to energy and other beneficial byproducts, additional highly developed research is still required for large-scale AD of microalgal biomass.

摘要

利用可再生微藻生物质作为生物燃料和生物制品的活性原料,以替代石油基燃料和化学品。在过去的几年中,由于微藻生物质具有几个积极的特性,因此已认识到它作为可再生原料的重要性。通过厌氧消化 (AD) 对微藻生物质进行生物炼制是生产增值化学品、可食用产品和生物燃料的一种很有前途和可持续的方法。微藻生物质预处理是提高 AD 产甲烷的重要过程。关于 AD 微生物群落多样性和组织的研究结果可以为消化器的稳定性和性能提供新的见解。本综述对 AD 微生物群落和 AD 生产的现有事实进行了重要研究。在 AD 中,使用不同共底物与微藻生物质共消化以提高沼气产量,该过程具有经济可行性,且生物降解性得到提高。由有毒蓝藻水华产生的微囊藻毒素对环境健康构成严重威胁。厌氧生物降解是降解微囊藻毒素并将其转化为无毒产物的有效方法。然而,为了实现将生物质高效转化为能源和其他有益副产品,仍需要对微藻生物质的大规模 AD 进行更多的高度发达的研究。

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