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一种新型级联生物炼制方法,通过热预处理集成将食品废物转化为有价值的化学品和沼气。

A novel cascade biorefinery approach to transform food waste into valuable chemicals and biogas through thermal pretreatment integration.

机构信息

National Research Council of Italy, Water Research Institute, CNR-IRSA, Area della Ricerca RM1, Via Salaria km 29.300, Monterotondo, Rome 00015, Italy.

National Research Council of Italy, Water Research Institute, CNR-IRSA, Area della Ricerca RM1, Via Salaria km 29.300, Monterotondo, Rome 00015, Italy.

出版信息

Bioresour Technol. 2021 Oct;338:125517. doi: 10.1016/j.biortech.2021.125517. Epub 2021 Jul 7.

Abstract

A novel biorefinery platform integrating thermal pretreatment and solid-liquid separation unit is here proposed to fully exploit food waste (FW) potential for production of valuable chemicals and energy through semi-continuous anaerobic bioconversion. The liquid fraction deriving from raw or pretreated FW, was fermented into volatile fatty acids (VFAs, from acetic to caproic acid) while the residual fraction was converted into biomethane. Thermal pretreatment effectively extracted a portion of the macromolecular organics, especially starch, to the liquid phase, promoting acidogenic fermentation and chain elongation pathways (0.43 gVFA gVS and 0.58 gVFA gVS with raw and pretreated extract, respectively). In parallel, anaerobic digestion of solid residue in 10 L reactors showed process stability and higher conversion rate for the pretreated residue (0.31 against 0.26 NmCH kgVS). The mass-transfer balance coupled with the economic assessment, calculated in terms of direct gross added value, indicated promising revenues by integrating the thermal upstream treatment.

摘要

本文提出了一种新型的生物炼制平台,集成了热预处理和固液分离单元,旨在通过半连续厌氧生物转化充分利用食物垃圾(FW)的潜力,生产有价值的化学品和能源。从原始或预处理的 FW 中得到的液体部分被发酵成挥发性脂肪酸(VFAs,从乙酸到己酸),而剩余部分则转化为生物甲烷。热预处理有效地将一部分大分子有机物,特别是淀粉,提取到液相中,促进产酸发酵和链延伸途径(用原始和预处理的提取物分别为 0.43 gVFA gVS 和 0.58 gVFA gVS)。同时,在 10 L 反应器中对固体残渣进行厌氧消化显示出预处理残渣具有更高的稳定性和转化率(0.31 对 0.26 NmCH kgVS)。通过直接总附加值计算的传质平衡和经济评估表明,通过整合热上游处理可以获得有前景的收益。

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