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Improving Anaerobic And Aerobic Degradation By Ultrasonic Disintegration Of Biomass

机译:超声分解生物质改善厌氧和好氧降解

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Biological cell lysis is known to be the rate-limiting step of anaerobic biosolids degradation. Due to the slow pace by which this reaction occurs, it is necessary to equip treatment plants with large digesters or alternatively incorporate technological aids. High-power ultrasound used to disintegrate bacterial cells has been utilized as a pre-treatment process prior to anaerobic digestion. Through this application, as seen on pilot- and full-scales, it is possible to attain up to 30% more biogas, an increase in VS-destruction of up to 30% and a reduced sludge mass for disposal. Utilizing ultrasound technology in aerobic applications is a new and innovative approach. Improved denitrification through a more readily available internal carbon source, and less excess sludge mass can be traced to the positive effects that sonication of sludge has on the overall biological wastewater treatment process. Reference full-scale installations suggest that the technology is both technically feasible and economically sound.
机译:已知生物细胞裂解是厌氧生物固体降解的限速步骤。由于该反应发生的速度缓慢,因此有必要为处理厂配备大型沼气池,或者采用其他技术辅助手段。用于分解细菌细胞的高功率超声波已被用作厌氧消化之前的预处理过程。通过此应用,从中试和全规模来看,有可能获得多达30%的沼气,VS破坏增加最多30%以及减少的污泥处置量。在有氧应用中使用超声技术是一种新的创新方法。可以通过更容易获得的内部碳源改善反硝化作用,并减少更少的过量污泥质量,这可以归因于污泥超声处理对整个生物废水处理过程的积极影响。参考全面安装表明该技术在技术上既可行又在经济上合理。

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