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非无菌条件下pH值和温度对垃圾L-乳酸分批发酵产物及细菌群落的影响

Effects of pH and temperature on products and bacterial community in L-lactate batch fermentation of garbage under unsterile condition.

作者信息

Akao S, Tsuno H, Horie T, Mori S

机构信息

Department of Social Systems Engineering, Faculty of Engineering, Tottori University, 4-101, KoyamaMinami, Tottori 680-8552, Japan.

出版信息

Water Res. 2007 Jun;41(12):2636-42. doi: 10.1016/j.watres.2007.02.032. Epub 2007 Apr 12.

Abstract

Acidogenesis fermentation of artificial garbage without sterile condition was conducted in batch mode to investigate effects of cultivation pH (5.5, 6.0, 6.5) and temperature (45, 50, 55 degrees C). Bacteria exiting natively in the garbage were utilized in this study; in turn, no specific seed was inoculated. The results indicated that only one set of operational conditions (pH 5.5 and 55 degrees C) led to L-lactate fermentation. Obtained yield of lactate based on initial carbohydrate was around 0.5 and optical purity of L-lactate was around 99%. In this study, three typical cases, which were L-lactate, racemic lactate and butyrate fermentation, were observed depended on sets of cultivation pH and temperature. Microbial structures of typical cases were also identified with using 16S rDNA libraries. The analysis indicated that Bacillus coagulans produced L-lactate. Lactobacillus amylolyticus, which produces racemic lactate, and Clostridium thermopalmarium, which produces butyrate, were also detected on each typical sample. L. amylolyticus and C. thermopalmarium would be eliminated by setting cultivation temperature of 55 degrees C and above, and pH 5.5 and below, respectively. From a series of this study, operational conditions of pH 5.5 and temperature of 55 degrees C would be potentially suitable for L-lactate fermentation of garbage with view of efficiency and stability of its production.

摘要

在非无菌条件下以批次模式对人工垃圾进行产酸发酵,以研究培养pH值(5.5、6.0、6.5)和温度(45、50、55℃)的影响。本研究利用垃圾中天然存在的细菌,未接种特定种子。结果表明,只有一组操作条件(pH 5.5和55℃)导致L-乳酸发酵。基于初始碳水化合物的乳酸产量约为0.5,L-乳酸的光学纯度约为99%。在本研究中,根据培养pH值和温度的组合,观察到了三种典型情况,即L-乳酸、外消旋乳酸和丁酸发酵。还使用16S rDNA文库鉴定了典型情况的微生物结构。分析表明,凝结芽孢杆菌产生L-乳酸。在每个典型样品中还检测到了产生外消旋乳酸的解淀粉乳杆菌和产生丁酸的嗜热栖热梭菌。分别将培养温度设定在55℃及以上和pH值设定在5.5及以下,可消除解淀粉乳杆菌和嗜热栖热梭菌。从这一系列研究来看,从生产效率和稳定性的角度考虑,pH 5.5和温度55℃的操作条件可能适合垃圾的L-乳酸发酵。

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