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聚焦挥发性脂肪酸增值的下一代甲烷化工艺的综合生物炼制:批判性回顾。

Integrated Biorefinery for a Next-Generation Methanization Process Focusing on Volatile Fatty Acid Valorization: A Critical Review.

机构信息

Université de Technologie de Compiègne, ESCOM, TIMR (Integrated Transformations of Renewable Matter), Centre de Recherche Royallieu-CS 60319, 60203 Compiègne Cedex, France.

出版信息

Molecules. 2024 May 24;29(11):2477. doi: 10.3390/molecules29112477.

Abstract

This review addresses the critical issue of a rapidly increasing worldwide waste stream and the need for sustainable management. The paper proposes an integrated transformation toward a next-generation methanization process, which leads not only to treating waste but also to converting it into higher value compounds and greener energy. Although the current and commonly used anaerobic digestion process is useful for biogas production, it presents limitations of resource exploitation and some negative environmental impacts. Focusing on the acidogenic stage in waste stream processing, the paper discusses the recent strategies to enhance the recovery of volatile fatty acids (VFAs). These acids serve as precursors for synthesizing a variety of biochemicals and biofuels, offering higher value products than solely energy recovery and soil fertilizers. Additionally, the importance of recycling the fermentation residues back into the biorefinery process is highlighted. This recycling not only generates additional VFAs but also contributes to generating clean energy, thereby enhancing the overall sustainability and efficiency of the waste management system. Moreover, the review discusses the necessity to integrate life cycle assessment (LCA) and techno-economic analysis (TEA) to evaluate the environmental impacts, sustainability, and processing costs of the proposed biorefinery.

摘要

这篇综述探讨了全球废物量迅速增加和可持续管理的迫切需求这一关键问题。本文提出了向新一代甲烷化工艺的综合转型,这不仅可以处理废物,还可以将其转化为更有价值的化合物和更绿色的能源。虽然当前常用的厌氧消化工艺有助于沼气生产,但它存在资源利用的局限性和一些负面的环境影响。本文聚焦于废物处理中的产酸阶段,讨论了最近增强挥发性脂肪酸(VFAs)回收的策略。这些酸可以作为合成各种生物化学物质和生物燃料的前体,提供比单纯能源回收和土壤肥料更高价值的产品。此外,还强调了将发酵残留物循环回生物炼制过程的重要性。这种回收不仅可以产生额外的 VFAs,还可以有助于产生清洁能源,从而提高废物管理系统的整体可持续性和效率。此外,本文还讨论了将生命周期评估(LCA)和技术经济分析(TEA)集成到生物炼制的必要性,以评估所提议的生物炼制的环境影响、可持续性和处理成本。

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