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Application of an Innovative Ultrasound Disintegrator for Sewage Sludge Conditioning Before Methane Fermentation

机译:创新的超声波分解器在甲烷发酵前处理污水污泥中的应用

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Ultrasonic disintegration is one of the most interesting technologies among all known and described technologies for sewage sludge pre-treatment before the process of methane fermentation. This study was aimed at determining the effects of an innovative ultrasonic string disintegrator used for sewage sludge pre-treatment on the effectiveness of methane fermentation process. In this experiment, we used a device for disintegration of organic substrates, including sewage sludge, with the use ultrasonic waves. Its technical solution is protected by a patent no. P. 391477 – Device for destruction of tissue and cell structures of organic substrate. The volume of biogas produced ranged from 0.194±0.089 dm3/g o.d.m. at loading of 5.0 g o.d.m./dm3 and power of 50 W to 0.315±0.087 dm3/g o.d.m. at loading of 4.0 g o.d.m./dm3 and ultrasounds power of 125 W. The study demonstrated a positive effect of sewage sludge sonication on the percentage content of methane in biogas. Sewage sludge exposure to 125 W ultrasounds increased methane content in biogas to 68.3±2.5 % at tank loading of 3.0 g o.d.m./dm3.
机译:在甲烷发酵过程之前,超声波分解是所有已知和描述的污水污泥预处理技术中最有趣的技术之一。这项研究旨在确定用于污水污泥预处理的新型超声波串式粉碎机对甲烷发酵过程有效性的影响。在本实验中,我们使用超声波对有机污泥(包括污水污泥)进行分解的装置。其技术解决方案受专利号No. P. 391477 –破坏有机基质组织和细胞结构的装置。产生的沼气量为0.194±0.089 dm3 / go.d.m。负荷为5.0 g o.d.m./dm3时,功率为50 W至0.315±0.087 dm3 / g o.d.m.负荷为4.0 g o.d.m./dm3时,超声功率为125W。该研究表明,污水污泥超声处理对沼气中甲烷的百分比具有积极作用。在3.0 g o.d.m./dm3的水箱负荷下,污水污泥暴露于125 W超声波会使沼气中的甲烷含量增加到68.3±2.5%。

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