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The effect of different mesophilic temperatures during anaerobic digestion of sludge on the overall performance of a WWTP in Sweden

机译:厌氧消化过程中不同嗜苯胺的温度对瑞典妇女污水站整体性能的影响

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摘要

This project was initiated to evaluate the effect of alternative process temperatures to 38 degrees C at the anaerobic digestion step in a Swedish wastewater treatment plant (WWTP) treating mixed sludge. The efficiency of the different temperatures was evaluated with respect to biogas production, volume of sludge produced and nutrient content in the reject water to find the optimum temperature for the WWTP as a whole. Three temperatures, 34 degrees C, 38 degrees C and 42 degrees C, were compared in laboratory scale. Increasing the process temperature to 42 degrees C resulted in process instability, reduced methane yield, accumulation of volatile fatty acids and higher treatment costs of the reject water. By decreasing the temperature to 34 degrees C, slightly higher sludge mass was observed and a lower gas production rate, while the specific methane produced remained unchanged compared to 38 degrees C but foaming was observed at several occasions. In summary 38 degrees C was proved to be the most favourable temperature for the anaerobic digestion process treating mixed sludge when the evaluation included effects such as foaming, sludge mass and quality of the reject water.
机译:启动该项目以评估替代过程温度在瑞典废水处理厂(WWTP)处理混合污泥中的厌氧消化步骤中的替代过程温度至38摄氏度。在沼气生产中评价不同温度的效率,抑制水中产生的污泥体积和营养含量,以找到整个WWTP的最佳温度。在实验室规模比较了三个温度,34℃,38℃和42℃。将工艺温度提高至42℃导致过程不稳定,降低甲烷产率,挥发性脂肪酸的积累以及抑制水的较高治疗成本。通过将温度降低至34℃,观察到稍微较高的污泥质量并较低的气体生产速率,而产生的特定甲烷与38℃相比保持不变,但几次观察到发泡。总之,38摄氏度被证明是厌氧消化过程中最有利的温度,当评估包括诸如发泡,污泥质量和拒绝水的质量等效果时,厌氧消化过程处理混合污泥。

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