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Methane production and hydrolysis kinetics in the Anaerobic degradation of wastewater screenings

机译:废水筛选厌氧降解过程中甲烷的产生和水解动力学

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摘要

Anaerobic biodegradability and hydrolysis rates of wastewater screenings were determined using the biochemical methane potential test at 37 °C. The extent and rate of screenings conversion to methane of this complex and particulate substrate were investigated and since two stages of hydrolysis were identified, corresponding to the different types of materials in screenings, a linear and non-linear model was used. No accumulation of intermediary products was observed and so it was possible to use the methane production rate and a linear model to estimate the hydrolysis rate in the first phase of hydrolysis. The measured values of 0.061-0.127 d-1 are in the range reported for other comparable organic wastes. It was also observed that the inoculum-to-substrate ratio has a large impact on methane production rate of screenings. The difference in biodegradation rates from the materials in screenings and the overall hydrolysis could be represented by the modified Gompertz non-linear model which was able to describe the methane production rate of screenings with a high confidence. Screenings were found to have 52% biodegradability on average and this shows the potential for volatile solids destruction. A two-stage process with an improved hydrolysis rate is proposed to ensure that the full potential of the material is exploited.
机译:废水筛选的厌氧生物降解性和水解速率是使用37°C的生化甲烷潜力测试确定的。研究了该复合物和颗粒底物的筛选转化为甲烷的程度和速率,由于确定了水解的两个阶段,对应于筛选中不同类型的材料,使用了线性和非线性模型。没有观察到中间产物的积累,因此可以使用甲烷产生速率和线性模型来估计水解第一阶段的水解速率。 0.061-0.127 d-1的测量值在报告的其他可比有机废物范围内。还观察到,接种物与底物的比率对筛选的甲烷产生速率有很大的影响。筛选中材料的生物降解速率与整体水解之间的差异可以通过改进的Gompertz非线性模型来表示,该模型能够高度可靠地描述筛选中的甲烷生成速率。发现筛分平均具有52%的生物降解性,这表明了挥发性固体被破坏的可能性。提出了具有提高的水解速率的两阶段方法,以确保充分利用材料的潜力。

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