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Advanced anaerobic processes to enhance waste activated sludge stabilization

机译:先进的厌氧工艺可增强废物活化污泥的稳定性

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The requirement for enhanced stabilization processes to obtain a more stable, pathogen-free sludge for agricultural use is an increasing challenge to comply with in the waste hierarchy. With this in mind, the Routes European project ('Novel processing routes for effective sewage sludge management') is addressed to assess innovative solutions with the aim of maximizing sludge quality and biological stability. In order to increase anaerobic stabilization performances, the sequential anerobic/aerobic process and the thermophilic digestion process, with or without integration of the thermal hydrolysis pre-treatment, were investigated as regards the effect on sludge stabilization, dewaterability and digestion performances. Thermal pre-treatment improved anaerobic digestion in terms of volatile solids reduction and biogas production, but digestate dewaterability worsened. Fluorescence in situ hybridization (FISH) quantification showed an increase of methanogens consistent with the increase of biogas produced. The aerobic post-treatment after mesophilic digestion had a beneficial effect on dewaterability and stability of the digested sludge even if was with a reduction of the potential energy recovery.
机译:为了获得更稳定,不含病原体的农业污泥,需要加强稳定化工艺,这是在废物分类中要遵守的日益严峻的挑战。考虑到这一点,“欧洲路线”项目(“有效处理污水污泥的新颖处理路线”)旨在评估创新解决方案,以最大程度地提高污泥质量和生物稳定性。为了提高厌氧稳定性能,研究了有氧/好氧顺序过程和嗜热消化过程,无论是否集成了热水解预处理,对污泥稳定,脱水性和消化性能的影响。热预处理在减少挥发性固体和产生沼气方面改善了厌氧消化,但消化物的脱水性恶化。荧光原位杂交(FISH)定量显示产甲烷菌的增加与产生沼气的增加一致。中温消化后的好氧后处理对消化后的污泥的脱水性和稳定性具有有益的影响,即使减少了潜在的能量回收。

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