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Effect of primary sludge to waste activated sludge mixing ratio on anaerobic digester performance

机译:初级污泥与废活性污泥混合比对厌氧消化池性能的影响

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In this research, the effect of mixing ratio between primary sludge (PS) and waste activated sludge (WAS) on anaerobic digester performance was investigated. PS to WAS ratios of 65% PS/35% WAS v/v, 50% PS/50% WAS v/v, 35% PS/65% WAS v/v were assessed for a sludge retention time of 23 d at mesophilic temperature of 36.5 degrees C. The sludge with the mixing ratio of 65/35 v/v produced the highest amount of methane for 500 mL digester volume considered in the study. This particular mixing ratio is similar to the large scale operational condition in Beenyup Wastewater Treatment Plant, Western Australia. The kinetics of the digestion process was faster for this mixing ratio. In addition, methane to carbon dioxide ratio for this mixing ratio of 65/35 v/v was found to be the highest (2.5-3.1). Sludge biodegradability in terms of reduction of total chemical oxygen demand was 46.6%, 53.7% and 72.3% and volatile solid removal was 32.6%, 25.8% and 34% for mixing ratios of (65/35, 50/50, 35/65) v/v, respectively. The sludge sample with greater proportion of WAS showed better dewaterability. In general, mixed sludge with higher proportion of PS has better effects on overall digester performance.
机译:在这项研究中,研究了初级污泥(PS)和废活性污泥(WAS)之间的混合比例对厌氧消化池性能的影响。评估了在中温温度下污泥保留时间为23 d的PS与WAS比率分别为65%PS / 35%WAS v / v,50%PS / 50%WAS v / v,35%PS / 65%WAS v / v混合比为65/35 v / v的污泥在研究中考虑的500 mL消化器容积中产生了最高量的甲烷。这种特定的混合比例类似于西澳大利亚州的Beyyup废水处理厂的大规模运行条件。对于该混合比例,消化过程的动力学更快。另外,发现该混合比为65/35 v / v的甲烷与二氧化碳之比最高(2.5-3.1)。在混合比例为(65 / 35、50 / 50、35 / 65)的情况下,就减少总化学需氧量而言,污泥的生物降解性分别为46.6%,53.7%和72.3%,挥发性固体去除率为32.6%,25.8%和34%。 v / v。 WAS含量较高的污泥样品具有较好的脱水性。通常,PS含量较高的混合污泥对沼气池整体性能有较好的影响。

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