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Enhancement of the conventional anaerobic digestion of sludge: Comparison of four different strategies

机译:常规污泥厌氧消化的增强:四种不同策略的比较

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Anaerobic digestion (AD) is the preferred option to stabilize sludge. However, the rate limiting step of solids hydrolysis makes it worth modifing the conventional mesophilic AD in order to increase the performance of the digester. The main strategies are to introduce a hydrolysis pre-treatment, or to modify the digestion temperature. Among the different pre-treatment alternatives, the thermal hydrolysis (TH) at 170°C for 30 min, and the ultrasounds pre-treatment (US) at 30 kJ/kg TS were selected for the research, while for the non-conventional anaerobic digestion, the thermophilic (TAD) and the two-stage temperature phased AD (TPAD) were considered. Four pilot plants were operated, with the same configuration and size of anaerobic digester (200 L, continuously fed). The biogas results show a general increase compared to the conventional digestion, being the highest production per unit of digester for the process combining the thermal pre-treatment and AD (1.4 L _(biogas)/L_(digester)·day compared to the value of 0.26 obtained in conventional digesters). The dewaterability of the digestate became enhanced for processes TH+ AD and TPAD when compared with the conventional digestate, while it became worse for processes US+ AD and TAD. In all the research lines, the viscosity in the digester was smaller compared to the conventional (which is a key factor for process performance and economics), and both thermal pre-treatment and thermophilic digestion (TAD and TPAD) assure a pathogen free digestate.
机译:厌氧消化(AD)是稳定污泥的首选方法。但是,固体水解的限速步骤使其值得修改常规的嗜温性AD,以提高消化器的性能。主要策略是引入水解预处理或改变消化温度。在不同的预处理方法中,选择170°C下30分钟的热水解(TH)和30 kJ / kg TS的超声预处理(US)进行研究,而非常规厌氧处理消化过程中,考虑了嗜热(TAD)和两阶段温度相控AD(TPAD)。运行了四个中试工厂,它们具有相同配置和大小的厌氧消化池(200升,连续进料)。沼气结果表明,与常规消化法相比,沼气量总体增加,是热预处理和AD相结合的过程中每台沼气池的最高产量(与之相比,为1.4 L _(沼气)/ L_(消化器)·天)常规蒸煮器中获得的0.26)。与常规消化液相比,TH + AD和TPAD工艺的消化物的脱水性得到了增强,而US + AD和TAD工艺的消化物的脱水性却变差了。在所有研究领域中,消化池的粘度均比常规消化池低(这是工艺性能和经济性的关键因素),并且热预处理和嗜热消化(TAD和TPAD)均可确保无病原体消化。

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