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Minimisation of excess sludge production in a WWTP by coupling thermal hydrolysis and rapid anaerobic digestion

机译:通过热水解和快速厌氧消化相结合,使污水处理厂中多余的污泥产生最小化

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In many cases, reducing sludge production could be the solution for wastewater treatment plants (WWTP) that here difficulty evacuating the residuals of wastewater treatment. The aim of this study was to 0 test the possibility of minimising the excess sludge production by coupling a thermal hydrolysis stage and an anaerobic digestion with a very short HRT. The tests were carried out on a 2,500 p.e. pilot plant installed on a recycling loop between the clarifier and the actived sludge basin. The line equipped with the full scale pilot plant produced 38% TSS less than the control line during a 10 week period. Moreover, the rapid anaerobic digestion removed, on average, more than 50% of the total COD load with a hydraulic retention time (HRT) of 3 days. Lastly, the dryness of the remaining excess sludge, sanitised by the thermal hydrolysis, was more than 35% with an industrial centrifuge. This combination of thermal hydrolysis and rapid anaerobic digestion equally permits a significant gain of compactness compared to traditional anaerobic digesters.
机译:在许多情况下,减少污泥的产量可能是废水处理厂(WWTP)的解决方案,在这里污水处理厂的残留物难以排出。这项研究的目的是通过将热水解阶段和厌氧消化与非常短的HRT结合使用,来测试将剩余污泥产生最小化的可能性为0。测试在2500 p.e.试验装置安装在澄清池和活性污泥池之间的循环回路上。配备了全面试验工厂的生产线在10周的时间内生产的TSS比对照生产线少38%。此外,快速的厌氧消化平均可去除35%的水力停留时间(HRT)超过总COD负荷的50%以上。最后,用工业离心机经热水解消毒后剩余的剩余污泥的干燥度超过35%。与传统的厌氧消化器相比,热水解和快速厌氧消化的结合同样可以显着提高紧凑性。

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