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半连续 SBR 系统中食物垃圾的乳酸发酵:进水成分和水力停留时间的影响。

Lactic acid fermentation of food waste in a semicontinuous SBR system: influence of the influent composition and hydraulic retention time.

机构信息

School of Natural Science, Microbiology Department, National University of IrelandGalway, University Road, Galway, Ireland.

Environmental Sciences Department, Instituto Potosino de Investigación Científica y Tecnológica, San Luis Potosí, Mexico.

出版信息

Environ Technol. 2024 Jun;45(15):2993-3003. doi: 10.1080/09593330.2023.2202824. Epub 2023 Jun 11.

Abstract

Fermentation processes have been shown to be a good approach to food waste (FW) management. Among the commodities that can be bioproduced by using FW as an organic substrate and exploiting its biodegradability, there is lactic acid (LA). LA has gained the interest of research because of its role in the production of polylactic acid plastics. In this study, the influence of the HRT (2-5 days) used during the fermentation of the liquid fraction (∼12-13 g COD/L) of FW on LA yield and concentration was investigated. Moreover, the changes in the chemical composition (in terms of carbohydrates and organic metabolites concentration) of the influent occurring in the feeding tank were monitored and its influence on the downstream fermentation process was examined. High instability characterized the reactor run with the optimal production yield obtained on day 129 at an HRT 2 days with 0.81 g COD/g COD. This study shows the importance of the fluctuating composition of FW, a very heterogeneous and biologically active substrate, for the LA fermentation process. The non-steady state fermentation process was directly impacted by the unstable influent and shows that a good FW storage strategy has to be planned to achieve high and constant LA production.

摘要

发酵过程被证明是一种处理食物垃圾(FW)的好方法。在可以使用 FW 作为有机基质并利用其可生物降解性来生物生产的商品中,有一种是乳酸(LA)。由于其在聚乳酸塑料生产中的作用,LA 引起了研究的兴趣。在这项研究中,研究了在 FW 的液体部分(约 12-13 g COD/L)发酵过程中使用的 HRT(2-5 天)对 LA 产量和浓度的影响。此外,还监测了进料罐中出现的进水化学成分(以碳水化合物和有机代谢物浓度表示)的变化,并研究了其对下游发酵过程的影响。高不稳定性是具有最佳生产产量的反应器运行的特征,该产量是在 HRT 为 2 天且 COD/g COD 为 0.81 g COD 的第 129 天获得的。这项研究表明,FW 的波动组成对 LA 发酵过程的重要性,FW 是一种非常不均匀且具有生物活性的基质。非稳态发酵过程直接受到不稳定进水的影响,表明必须制定良好的 FW 储存策略,以实现高且稳定的 LA 生产。

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