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Effects of stabilization and sludge properties in a combined process of anaerobic digestion and thermophilic aerobic digestion

机译:厌氧消化与高温好氧消化联合过程中稳定度和污泥性质的影响

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摘要

A novel process of combining mesophilic (<35 degrees C) anaerobic digestion with the thermophilic (55 degrees C) aerobic digestion process (AN-TAD) was designed to stabilize sludge and economize aeration energy. Effects of stabilization and sludge properties for AN-TAD process were evaluated by batch experiments during a 25d digestion period. The sludges digested by AN-TAD process achieved the requirements for Class-A sludge standard. The sludge at total solid (TS) 5.4% had the highest value of decay coefficient K-d(55) at 0.1851d(-1) among the three TS contents according to the first-order kinetics equation. Oxidation reduction potential at below 0mV remained for sludges at TSs of 6.5%, 5.4%, and 4.6% for at least 15d because of initial hydrolytic-acidification. Concentrations of nitrogen and phosphorus in sludges at TSs of 6.5%, 5.4%, and 4.6% gradually increased up to the highest values in the supernatant during the initial 13d, causing low utilized value in land application as a fertilizer. Prolonging the retention time for more than 15d was considered because soluble phosphorus precipitated in the solid phase. High content of soluble organic matters of the soluble chemical oxygen demand, protein, and polysaccharide in the supernatant caused deterioration in sludge dewaterability rates.
机译:设计了一种将中温(<35摄氏度)厌氧消化与嗜热(55摄氏度)好氧消化(AN-TAD)相结合的新工艺,以稳定污泥并节省曝气能量。在25d的消化期间,通过分批实验评估了AN-TAD工艺的稳定性和污泥特性的影响。经AN-TAD工艺消化的污泥达到A类污泥标准要求。根据一级动力学方程,在三种固含量(TS)中,总固含量(TS)为5.4%的污泥的衰减系数K-d(55)最高,为0.1851d(-1)。由于最初的水解酸化作用,污泥在TS分别为6.5%,5.4%和4.6%的情况下,在0mV以下仍具有氧化还原电位。在TS的6.5%,5.4%和4.6%时,污泥中的氮和磷浓度逐渐增加,直到最初的13d达到上清液的最高值,导致土地作为肥料的利用价值较低。考虑到将保留时间延长至15d以上,因为可溶性磷在固相中沉淀。上清液中可溶性化学需氧量,蛋白质和多糖的可溶性有机物含量高,导致污泥脱水率降低。

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