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Microalgae as biological treatment for municipal wastewater - effects on the sludge handling in a treatment plant

机译:微藻作为城市废水的生物处理 - 对治疗厂的污泥处理的影响

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A mix of microalgae and bacteria was cultivated on pre-sedimented municipal wastewater in a continuous operated microalgae-activated sludge process. The excess material from the process was co-digested with primary sludge in mesophilic and thermophilic conditions in semi-continuous mode (5 L digesters). Two reference digesters (5 L digesters) fed with waste-activated sludge (WAS) and primary sludge were operated in parallel. The methane yield was slightly reduced (approximate to 10%) when the microalgal-bacterial substrate was used in place of the WAS in thermophilic conditions, but remained approximately similar in mesophilic conditions. The uptake of heavy metals was higher with the microalgal-bacterial substrate in comparison to the WAS, which resulted in higher levels of heavy metals in the digestates. The addition of microalgal-bacterial substrate enhanced the dewaterability in thermophilic conditions. Finally, excess heat can be recovered in both mesophilic and thermophilic conditions.
机译:在连续的微藻活化污泥过程中,在沉淀的城市废水上培养了微藻和细菌的混合物。该方法的过量材料在半连续模式(5L消化器)中嗜苯胺和嗜热条件下的初级污泥共消化。用废物活性污泥(As)和初级污泥喂养的两种参考文摘剂(5L劣化剂)并联操作。当使用微基团底物代替在嗜热条件下时,甲烷产率略微减少(近似为10%),但在嗜培素条件下保持近似相似。与诸多的微藻 - 细菌基质相比,重金属的吸收较高,这在消化物中导致较高水平的重金属。添加微藻底物质增强了嗜热条件下的脱水性。最后,在嗜培素和嗜热条件下可以回收过量的热量。

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