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Strategies for changing temperature from mesophilic to thermophilic conditions in anaerobic CSTR reactors treating sewage sludge

机译:在处理污水污泥的厌氧CSTR反应器中将温度从中温条件改变为高温条件的策略

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Thermophilic anaerobic digestion presents an advantageous way for stabilization of sludge from wastewater treatment plants. Two different strategies for changing operational process temperature from mesophilic (37℃) to thermophilic (55℃) were tested using two continuous flow stirred tank reactors operated at constant organic loading rate of 1.38.g VS/l reactor/day and hydraulic retention time of 20 days. In reactor A, the temperature was increased step-wise: 37℃ → 42℃ → 47℃ → 51℃ → 55?. While in reactor B, the temperature was changed in one-step, from 37℃ to the desired temperature of 55℃, The results showed that the overall adaptation of the process for the step-wise temperature increment took 70 days in total and a new change was applied when the process was stabilized as indicated by stable methane production and low volatile fatty acids concentrations. Although the one-step temperature increase caused a severe disturbance in all the process parameters, the system reached a new stable operation after only 30 days indicating that this strategy is the best in changing from mesophilic to thermophilic operation in anaerobic digestion plants.
机译:高温厌氧消化提供了一种稳定废水处理厂污泥的有利方法。使用两个连续流搅拌釜反应器测试了两种不同的将操作过程温度从中温(37℃)改变为嗜热(55℃)的策略,这些反应器在恒定有机负荷率为1.38.g VS / l反应器/天和水力停留时间为1.38.g VS / l的条件下运行。 20天。在反应器A中,温度逐步升高:37℃→42℃→47℃→51℃→55℃。在反应器B中,将温度从37℃一步更改为所需的55℃,结果表明该过程对逐步升温的总体适应过程总共花费了70天,稳定的甲烷生产和较低的挥发性脂肪酸浓度表明工艺稳定后,可进行更改。尽管一步升高的温度会严重影响所有工艺参数,但该系统仅在30天后就达到了新的稳定运行状态,这表明该策略是厌氧消化厂从中温操作改为高温操作的最佳方法。

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