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Velocity gradient as a tool to characterise the link between mixing and biogas production in anaerobic waste digesters

机译:速度梯度可作为表征厌氧消化池中混合与沼气生产之间关系的工具

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摘要

Whilst the importance of mixing in anaerobic digesters to enhance process performance and gas production is well recognised, the specific effects of mixing regime on biogas production are not clear. Here, the velocity gradient is used to demonstrate the importance of minimally mixed zones in a digester, with computational fluid dynamics (CFD) models indicating that 20-85% of a laboratoryscale digester experiences local velocity gradients of less than 10 s-1, dependent on mixing speed. Experimental results indicate that there is a threshold above which increased mixing speed (and hence velocity gradient) becomes counter-productive and biogas production falls. The effects of minimal mixing on digester microbiology are considered with the creation or destruction of localised pockets of high acetate concentration providing a possible explanation for the velocity gradient threshold. The identification of this threshold represents a valuable contribution to the understanding of the effects of mixing on gas production in anaerobic digesters.
机译:尽管已经认识到在厌氧消化池中混合对于提高工艺性能和产气的重要性,但是尚不清楚混合方式对沼气生产的具体影响。在此,速度梯度用于说明消化池中最小混合区域的重要性,计算流体力学(CFD)模型表明,实验室规模的消化池中20-85%的局部速度梯度小于10 s-1,具体取决于在搅拌速度上。实验结果表明,存在一个阈值,超过该阈值,混合速度(因此速度梯度)的增加将适得其反,沼气产量下降。考虑到最小混合对消化器微生物的影响,高乙酸盐浓度的局部囊袋的产生或破坏为速度梯度阈值提供了可能的解释。此阈值的确定代表了对厌氧消化池中混合气产生的影响的理解的宝贵贡献。

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