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Direct Conversion of Food Waste Extract into Caproate: Metagenomics Assessment of Chain Elongation Process

机译:食品废物提取物的直接转化为丙酮酸盐:链伸伸长过程的缩放性评估

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摘要

In a circular economy strategy, waste resources can be used for the biological production of high added-value substances, such as medium chain fatty acids (MCFAs), thus minimising waste and favouring a sustainable process. This study investigates single-stage fermentation processes for the production of MCFAs in a semi-continuous reactor treating the extract of real food waste (FW), without the addition of external electron donors. Two sequential acidogenic fermentation tests were carried out at an organic loading rate (OLR) of 5 and 15 gCOD L−1d−1 with a hydraulic retention time of 4 days and pH controlled at 6 ± 0.2. The highest level of caproate (4.8 g L−1) was observed at OLR of 15 gCOD L−1d−1 with a microbiome mainly composed by lactate-producing Actinomyces, Atopobium, and Olsenella species and caproate-producing Pseudoramibacter. Metagenomic analysis revealed the presence of key enzymes for the production of lactate, such as lactate dehydrogenase and pyruvate ferredoxin oxidoreductase, as well as several enzymes involved in the reverse β-oxidation pathway, thus suggesting the occurrence of a lactate-based chain elongation process.
机译:在循环经济战略中,废弃物资源可用于高增价物质的生物生产,如中链脂肪酸(MCFAs),从而最大限度地减少浪费并有利于可持续的过程。本研究研究了单阶段发酵过程,用于在半连续反应器中生产MCFA,治疗真实食物废物(FW)提取物,而无需添加外部电子供体。在5和15GCOD L-1D-1的有机加载速率(OLR)的有机加载速率(OLR)下进行两个序贯酸性发酵试验,液压保留时间为4天,pH值在6±0.2。在15个GCOD L-1D-1的OLR中观察到最高水平的葡萄干(4.8g L-1),其微生物组主要由乳酸盐产生的放射素瘤,oFobium和Olsenella物种和产生冠状物的伪敏孔组成。 Metagenomic分析表明,存在用于生产乳酸的关键酶,例如乳酸脱氢酶和丙酮酸福兰酮氧化酶,以及参与反向β-氧化途径的几种酶,从而表明乳酸基链伸长率的发生。

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