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Understanding the mechanisms of thermal disintegrating treatment in the reduction of sludge production

机译:了解热分解处理减少污泥产生的机理

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Among the technologies aimed at reducing sludge production, the combination of thermal 0 treatment at 95 degrees C of sludge and the activated sludge process is a promising route. The feasibility of such a combined process is demonstrated (up to 60% sludge reduction) and the impacts of operating conditions on its efficiency are presented. Major emphasis was put on understanding the complex phenomena occurring within the thermal treatment: release and biodegradability of sludge organic matter, impact on the biological activity (decay, maintenance requirements, etc.). These effects were taken into account for the development of an ASM1-based model. Comparison between the modeling approach and experimental data (continuous and batch) showed that thermal treatment had three major issues partly explaining the reduction of sludge production: (i) a low release of organics; (ii) an immediate and reversible biological inactivation associated with additional maintenance energy requirements; and (iii) a potential inert production.
机译:在旨在减少污泥产生的技术中,在95摄氏度的污泥中进行0热处理与活性污泥工艺相结合是一条有前途的途径。证明了这种组合工艺的可行性(最多可减少60%的污泥),并介绍了操作条件对其效率的影响。主要重点放在了解热处理过程中发生的复杂现象:污泥有机物的释放和生物降解性,对生物活性的影响(衰减,维护要求等)。在开发基于ASM1的模型时已考虑了这些影响。建模方法和实验数据(连续和批量)之间的比较表明,热处理存在三个主要问题,部分解释了污泥产生的减少:(i)有机物释放量低; (ii)与额外的维持能量需求相关的立即且可逆的生物失活; (iii)潜在的惰性生产。

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