Sun Li, Müller Bettina, Westerholm Maria, Schnürer Anna
Uppsala Biocenter, Department of Microbiology, Swedish University of Agricultural Sciences, Box 7025, SE 750 07 Uppsala, Sweden.
J Biotechnol. 2014 Feb 10;171:39-44. doi: 10.1016/j.jbiotec.2013.11.016. Epub 2013 Dec 13.
The extent of syntrophic acetate oxidation (SAO) and the levels of known SAO bacteria and acetate- and hydrogen-consuming methanogens were determined in sludge from 13 commercial biogas production plants. Results from these measurements were statistically related to the prevailing operating conditions, through partial least squares (PLS) analysis. This revealed that high abundance of microorganisms involved in SAO was positively correlated with relatively low abundance of aceticlastic methanogens and high concentrations of free ammonia (>160 mg/L) and volatile fatty acids (VFA). Temperature was identified as another influencing factor for the population structure of the syntrophic acetate oxidising bacteria (SAOB). Overall, there was a high abundance of SAOB in the different digesters despite differences in their operating parameters, indicating that SAOB are an enduring and important component of biogas-producing consortia.
在13家商业沼气生产厂的污泥中,测定了互营乙酸氧化(SAO)的程度以及已知的SAO细菌、消耗乙酸和氢气的产甲烷菌的水平。通过偏最小二乘法(PLS)分析,这些测量结果与当时的运行条件存在统计学关联。这表明,参与SAO的微生物丰度较高与乙酸裂解产甲烷菌的相对丰度较低以及游离氨(>160 mg/L)和挥发性脂肪酸(VFA)的高浓度呈正相关。温度被确定为互营乙酸氧化细菌(SAOB)种群结构的另一个影响因素。总体而言,尽管不同消化器的运行参数存在差异,但其中SAOB的丰度都很高,这表明SAOB是产沼气菌群中持久且重要的组成部分。
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