首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Investigation of food waste valorization through sequential lactic acid fermentative production and anaerobic digestion of fermentation residues
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Investigation of food waste valorization through sequential lactic acid fermentative production and anaerobic digestion of fermentation residues

机译:通过连续乳酸发酵生产和发酵残留物的厌氧消化研究食品废物储存

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This work concerns the investigation of the sequential production of lactic acid (LA) and biogas from food waste (FW). LA was produced from FW using a Streptococcus sp. strain via simultaneous saccharification and fermentation (SSF) and separate enzymatic hydrolysis and fermentation (SHF). Via SHF a yield of 0.33 g(LA)/gFW (productivity 3.38 g(LA)/L.h) and via SSF 0.29 g(LA)/g(FW) (productivity 2.08 g(LA)/L.h) was obtained. Fermentation residues and FW underwent anaerobic digestion (3 wt% TS). Biogas yields were 0.71, 0.74 and 0.90 Nm(3)/kg(VS) for FW and residues from SSF and SHF respectively. The innovation of the approach is considering the conversion of FW into two different products through a biorefinery concept, therefore making economically feasible LA production and valorising its fermentative residues. Finally, a mass balance of three different outlines with the aim to assess the amount of LA and biogas that may be generated within different scenarios is presented. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项工作涉及从食物废物(FW)中乳酸(La)和沼气顺序生产的调查。使用链球菌SP从FW生产。通过同时糖化和发酵(SSF)和分离酶水解和发酵(SHF)菌株。通过SHF产生0.33g(LA)/ GFW(生产率3.38g(La)/l.h)和通过SSF 0.29g(La)/ g(FW)(生产率2.08g(La)/l.h)。发酵残留物和FW接受厌氧消化(3wt%TS)。 FW和来自SSF和SHF的FW和残基的FW和残基的沼气产量分别为0.71,0.74和0.90nm(3)/ kg(vs)。该方法的创新是考虑通过生物遗工概念将FW转化为两种不同的产品,因此经济上可行的La生产和令可估算其发酵残留物。最后,提出了三种不同轮廓的质量平衡,其目的是评估可能在不同场景中产生的LA和沼气量。 (c)2017 Elsevier Ltd.保留所有权利。

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