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Co-digestion of concentrated black water and kitchen refuse in an accumulation system within the DESAR (decentralized sanitation and reuse) concept

机译:在DESAR(分散式卫生和再利用)概念下的收集系统中共同消化浓黑水和厨房垃圾

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Co-digestion of concentrated black water and kitchen refuse within the DESAR concept was the objective of this pilot research. The digestion took place in two, non-mixed accumulation reactors (AC1 and AC2) inoculated with digested primary sludge from a WWTP at a temperature of 20degreesC for a period of around 150 days. Reactor AC1 was fed with a mixture of faeces, urine and kitchen refuse in the equivalent amount that one individual generates per day. The AC2 was fed with a mixture of faeces and kitchen refuse in the equivalent amount that two individuals produce per day. Some contribution of urine to AC2 was not to be avoided. Detailed characterisation of waste(water) was performed. The performance of the stratified reactor was followed by monitoring the reactor content for several reactors' heights as well as being based on the biogas production. In general the system exposed good process stability. The methanisation of 34 and 61% was obtained for AC1 and AC2 respectively. The biogas yield was 26.5 and 50.8 L/p/d for the respective reactors. Proper choice of inoculum as well as good buffering capacity did not lead to accumulation of VFA and an inhibitive effect due to relatively high ammonium concentration. The chosen process is a promising technology showing good process stability especially for high strength influent. [References: 7]
机译:DESAR概念中浓黑水和厨房垃圾的共同消化是该试验研究的目标。消化过程是在两个非混合式蓄积反应器(AC1和AC2)中进行的,该反应器在20℃的温度下接种了来自WWTP的消化后的初级污泥,历时约150天。向反应堆AC1注入粪便,尿液和厨房垃圾的混合物,其量相当于一个人每天产生的量。 AC2充满了粪便和厨房垃圾的混合物,其数量相当于每天两个人生产的数量。尿液对AC2的某些贡献是无法避免的。进行了废水(水)的详细表征。分层反应器的性能通过监测反应器中几个反应器高度的含量以及基于沼气的产量来进行。通常,该系统具有良好的过程稳定性。 AC1和AC2的甲烷化率分别为34%和61%。各个反应器的沼气产量分别为26.5和50.8 L / p / d。由于铵浓度较高,正确选择接种物以及良好的缓冲能力不会导致VFA的积累和抑制作用。选择的工艺是有前途的技术,显示出良好的工艺稳定性,尤其是对于高强度进水。 [参考:7]

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