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Effects of disintegration on anaerobic degradation of sewage excess sludge in downflow stationary fixed film digesters

机译:崩解对下流式固定膜消化池污水剩余污泥厌氧降解的影响

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The effects of mechanical disintegration on anaerobic digestibility of sewge excess sludge in downflow stationary fixed film (DSFF) digesters were investigated on laboratory scale. Mechanical pretreatment using a high pressure homogenizer led to significantly enhanced concentrations of soluble proteins and carbohydrates in the feed sludge. Using DSFF digesters with two different tubular plastic media as support material it was shown that a stable digestion process could be achieved at hydraulic retention times (HRT) down to 5 days. Compared to conventional digesters at 10 d and 15 d HRT respectively, the degradation of volatile solids was enhanced up to 25percent, also resulting in a higher specific biogas production. Further investigations on degradation of soluble proteins and carbohydrates showed that a slowly degradable fraction of carbohydrates was released via disintegration. Using the distribution of chain length and the concentrations of volatile fatty acids as process parameters, the dependability on the HRT and the degree of disintegration (the release of soluble COD) predominated the effects of specific surface area of the support media.
机译:在实验室规模下研究了机械崩解对向下流动固定膜(DSFF)消化池中的污水中过量污泥厌氧消化率的影响。使用高压均质器的机械预处理可显着提高进料污泥中可溶性蛋白质和碳水化合物的浓度。使用具有两种不同管状塑料介质的DSFF蒸煮器作为支撑材料,表明可以在低至5天的水力停留时间(HRT)下实现稳定的蒸煮过程。与分别在HRT放置10 d和15 d的传统蒸煮器相比,挥发性固体的降解率提高了25%,还导致更高的比沼气产量。对可溶性蛋白质和碳水化合物降解的进一步研究表明,通过崩解释放了缓慢降解的碳水化合物部分。使用链长的分布和挥发性脂肪酸的浓度作为工艺参数,对HRT的依赖性和崩解程度(可溶性COD的释放)主要决定了支持介质比表面积的影响。

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