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Two-phase mesophilic anaerobic co-digestion of food waste and sewage sludge: effect of hydraulic retention time

机译:食品废物和污水污泥的两相嗜培素厌氧共消化:液压保留时间的影响

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The impact of hydraulic retention time (HRT) on two-phase mesophilic (35°C) anaerobic co-digestion of food waste and sewage sludge was studied under mixing ratio of 1:1 on the TS basis. Laboratory-scale, two-phase anaerobic digestion systems were employed with each system consisting of an acidogenic reactor and a methanogenic reactor linked in series. For the acidogenic phase, an increase of volatile fatty acid (VFA) concentration was observed as HRT increased from 1d to 5d and the HRT of 5d was recommended for significantly higher VFA production and less propionate percentage, which could provide stable and favourable substrates for the methane reactor. Under acidogenic HRT of 5d, 20d was proved to be the optimum HRT for methanogenic phase with the methane content, methane production rate, methane yield and two-phase VS removal rate reached 71%, 0.7L/(L·d), 0.69L/gVS_(removed) and 64.7%, respectively. Results verified that the constraints of conventional anaerobic digestion for food waste or sewage sludge separately could be overcome by synergistic effect of co-digestion strategy and two-phase treatment.
机译:液压保留时间(HRT)对两相嗜嗜酸性(35℃)的厌氧共同消化食品废物和污水污泥的影响是在TS基础上的1:1的混合比下进行的。实验室规模,双相厌氧消化系统用酸性反应器和串联连接的甲状腺反应器组成的每个系统。对于酸性阶段,随着HRT从1D至5D增加而观察到挥发性脂肪酸(VFA)浓度的增加,推荐5D的HRT,以显着提高VFA生产和更少的丙酸盐百分比,可以为此提供稳定和有利的基材甲烷反应器。在5D的酸性HRT下,20D被证明是甲烷含量的最佳HRT,甲烷产率,甲烷产率和两相vs去除率达到71%,0.7L /(L·D),0.69L / gvs_分别分别为64.7%。结果证明,通过共消化策略和两相治疗的协同作用,可以克服常规厌氧消化对食物废物或污水污泥的限制。

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