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Effects of bioaugmentation by an anaerobic lipolytic bacterium on anaerobic digestion of lipid-rich waste

机译:厌氧脂解细菌的生物强化作用对富脂废物厌氧消化的影响

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摘要

The effect of bioaugmentation with an anaerobic lipolytic bacterial strain on the anaerobic digestion of restaurant lipid-rich waste was studied in batch experiments with a model waste containing 10% lipids (triolein) under two sets of experimental conditions: (A) methanogenic conditions, and (B) initially acidogenic conditions in the presence of only the lipolytic strain biomass (4 days), followed by methanogenic conditions. The bioaugmenting lipolytic strain, Clostridium lundense (DSM 17049T), was isolated from bovine rumen. The highest lipolytic activity was detected at the beginning of the experiments. A higher methane production rate, 27.7 cm3 CH4(STP) g-1 VSadded day-1 (VS, volatile solids) was observed in experiment A with the presence of the bioaugmenting lipolytic strain under methanogenic conditions. The highest initial oleate concentration, 99% of the total oleate contained in the substrate, was observed in the experiments with the bioaugmenting lipolytic strain under treatment A conditions; the levels of palmitate and stearate were also higher until day 15, indicating that the bioaugmentation strategy improved the hydrolysis of the lipid fraction. In general, the results indicated that degradation of the long chain fatty acids (LCFAs) controlled the digestion process.
机译:在两组实验条件下,使用含10%脂质(三油精)的模型废物进行分批实验,研究了厌氧脂肪分解细菌菌株生物强化对饭店富含脂质的废物进行厌氧消化的影响:(A)产甲烷条件,和(B)最初仅在脂解菌株生物质存在下的产酸条件(4天),然后是产甲烷条件。从牛瘤胃中分离出具有生物增强作用的脂解菌株伦氏梭状芽胞杆菌(DSM 17049T)。在实验开始时检测到最高的脂解活性。在实验A中观察到较高的甲烷生成速率,即在第1天添加了27.7 cm3 CH4(STP)g-1 VS(VS,挥发性固体),并且在产甲烷条件下存在生物增强的脂解菌株。在处理A条件下用生物增强脂解菌株进行的实验中观察到最高的初始油酸酯浓度,即底物中所含的总油酸酯的99%。直到第15天,棕榈酸酯和硬脂酸酯的水平也较高,表明生物增强策略改善了脂质级分的水解。通常,结果表明长链脂肪酸(LCFA)的降解控制了消化过程。

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