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Ecological analysis of the bacterial system in a full-scale egg-shaped digester treating sewage sludge

机译:大型卵形消化池处理污泥的细菌系统生态分析

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A full-scale investigation was conducted to evaluate the treatment performance and the bacterial system in an egg-shaped digester treating sewage sludge. The experiment was continued over one year to measure the methanogenic activities using various substrates and the population levels of various trophic groups of methanogenic bacteria, as well as the degradation of each component of organic matters. A total of 10 full-scale egg-shaped sludge digesters fed with concentrated sludge were investigated in this study. At a retention time of 30 days and mesophilic condition of 36 degrees C, the average reduction efficiencies of carbohydrates, proteins and lipids, which are the three main components in raw sludge, were 74.2%, 55.2% and 42.2%, respectively. As a result, the removal efficiencies of volatile solids (VS) and total CODcr reached 54.2% and 60%, respectively, and 1 m(3) influent concentrated sludge produced 23.3 m(3) digestion gas in which methane content was about 60%. The comparison between the specific methanogenic activity and the actual specific methane production rate in the digester suggestes that the retention time of the digester could be reduced from 30 days to 15 days without affecting their performance. In addition, both the hydrogen and acetate-consuming methanogenic bacteria were enumerated on the order of 10(7) MPN/ml.
机译:进行了全面调查,以评估处理污水污泥的蛋形消化池的处理性能和细菌系统。这项实验持续了一年,以测量使用各种底物和各种营养族产甲烷细菌的种群水平以及有机物各成分的降解的产甲烷活性。本研究共研究了10个以浓污泥为食的全尺寸蛋形污泥消化池。在30天的保留时间和36摄氏度的中温条件下,碳水化合物,蛋白质和脂质的平均还原效率是原料污泥中的三个主要成分,分别为74.2%,55.2%和42.2%。结果,挥发性固体(VS)和总CODcr的去除效率分别达到54.2%和60%,并且1 m(3)流入的浓缩污泥产生23.3 m(3)的消化气,其中甲烷含量约为60% 。沼气池中甲烷的比产甲烷活性与实际比甲烷生产速率之间的比较表明,沼气池的保留时间可以从30天减少到15天,而不会影响沼气池的性能。此外,氢气和消耗乙酸盐的产甲烷细菌的数量级均为10(7)MPN / ml。

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