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首页> 外文期刊>Journal of Bioprocessing & Biotechniques >Microbial Lipid Accumulation Capability of Activated Sludge Feeding on Short Chain Fatty Acids as Carbon Sources through Fed-Batch Cultivation
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Microbial Lipid Accumulation Capability of Activated Sludge Feeding on Short Chain Fatty Acids as Carbon Sources through Fed-Batch Cultivation

机译:补料分批培养以短链脂肪酸为碳源的活性污泥的微生物脂质积累能力

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摘要

The potential of activated sludge microbial lipid technology as a sustainable energy platform has been recognized in the past years, but it has been challenged by the cost of carbon sources. This study hypothesized that Short Chain Fatty Acids (SCFAs) that can be derived from organic wastes can be alternative carbon sources. Therefore, this work evaluated the capability of activated sludge microbial consortia to accumulate microbial lipid by fed-batch feeding of SCFAs acetic acid, propionic acid, and butyric acid that were fed every 12 h period in 5 liter bioreactors. Activated sludge microbial consortia can accumulate microbial lipid by feeding on acetic acid. Acetic acid at 1.5 g/L loading per feeding enhanced the lipid content of activated sludge up to around 20% (w/w) dry biomass. This is comparable to that of oleaginous microorganisms. The feeding of nitrogen source (ammonium) at molar C/N of 70 only at the start resulted in significant lipid accumulation as compared to that from feeding of nitrogen for every feeding of the carbon source (acid-substrates). Fatty Acid Methyl Esters (FAMEs) profiles of the extracted lipids changed during cultivation. A biodiesel volumetric yield increase of 325% (w/w) from initial culture was achieved. This microbial lipid enhancement was confirmed using fluorescence microscopy imaging of neutral lipids, which also showed that the neutral lipid-containing cells are in the size range of yeasts. This work proved the hypothesis that activated sludge microbial consortia can accumulate microbial lipid by feeding on SCFAs.
机译:过去几年中,活性污泥微生物脂质技术作为可持续能源平台的潜力已得到认可,但一直受到碳源成本的挑战。这项研究假设可以从有机废物中提取的短链脂肪酸(SCFA)可以作为替代碳源。因此,这项工作通过在5升生物反应器中每隔12小时进料一次的SCFAs乙酸,丙酸和丁酸的分批补料进料,评估了活性污泥微生物聚生体积累微生物脂质的能力。活性污泥微生物联合体可以通过摄食乙酸来积累微生物脂质。每次进料量为1.5 g / L的乙酸可将活性污泥的脂质含量提高至约20%(w / w)干燥生物量。这与油质微生物相当。与碳源(酸底物)的每一次进料氮的供给相比,仅在开始时以摩尔C / N为70的氮源(铵)的进给导致了明显的脂质积聚。提取的脂质的脂肪酸甲基酯(FAME)分布在培养过程中发生了变化。从初始培养开始,生物柴油的体积产率提高了325%(w / w)。使用中性脂质的荧光显微镜成像证实了这种微生物脂质的增强,这也表明含有中性脂质的细胞在酵母的大小范围内。这项工作证明了这样的假说,即活性污泥微生物聚生体可以通过以SCFA为食来积累微生物脂质。

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