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Escherichia coli inactivation kinetics in anaerobic digestion of dairy manure under moderate, mesophilic and thermophilic temperatures

机译:在中等,中温和嗜热温度下厌氧消化奶牛粪便中大肠杆菌的失活动力学

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摘要

Batch anaerobic digestion experiments using dairy manure as feedstocks were performed at moderate (25°C), mesophilic (37°C), and thermophilic (52.5°C) temperatures to understand E. coli, an indicator organism for pathogens, inactivation in dairy manure. Incubation periods at 25, 37, and 52.5°C, were 61, 41, and 28 days respectively. Results were used to develop models for predicting E. coli inactivation and survival in anaerobic digestion. For modeling we used the decay of E. coli at each temperature to calculate the first-order inactivation rate coefficients, and these rates were used to formulate the time - temperature - E. coli survival relationships. We found the inactivation rate coefficient at 52.5°C was 17 and 15 times larger than the inactivation rate coefficients at 25 and 37°C, respectively. Decimal reduction times (D10 ; time to achieve one log removal) at 25, 37, and 52.5°C, were 9 -10, 7 - 8 days, and u3c 1 day, respectively. The Arrhenius correlation between inactivation rate coefficients and temperatures over the range 25 -52.5°C was developed to understand the impacts of temperature on E. coli inactivation rate. Using this correlation, the time - temperature - E. coli survival relationships were derived. Besides E. coli inactivation, impacts of temperature on biogas production, methane content, pH change, ORP, and solid reduction were also studied. At higher temperatures, biogas production and methane content was greater than that at low temperatures. While at thermophilic temperature pH was increased, at mesophilic and moderate temperatures pH were reduced over the incubation period. These results can be used to understand pathogen inactivation during anaerobic digestion of dairy manure, and impacts of temperatures on performance of anaerobic digesters treating dairy manure.
机译:在中等温度(25°C),嗜温性(37°C)和嗜热性(52.5°C)的温度下,使用奶牛粪便作为原料进行分批厌氧消化实验,以了解大肠杆菌(病原体的指示生物)在奶牛粪便中的失活。在25、37和52.5°C下的孵育时间分别为61、41和28天。结果用于建立预测厌氧消化中大肠杆菌失活和存活的模型。为了进行建模,我们使用大肠杆菌在每个温度下的衰减来计算一阶灭活速率系数,并将这些速率用于表示时间-温度-大肠杆菌存活率的关系。我们发现,在52.5°C下的失活速率系数分别是在25°C和37°C下的失活速率系数的17倍和15倍。在25、37和52.5°C下的十进制减少时间(D10;达到去除一个日志的时间)分别为9 -10、7-8天和1天。研究了失活速率系数与温度在25 -52.5°C范围之间的Arrhenius相关性,以了解温度对大肠杆菌失活速率的影响。利用该相关性,得出时间-温度-大肠杆菌存活关系。除大肠杆菌灭活外,还研究了温度对沼气生产,甲烷含量,pH变化,ORP和固体还原的影响。在较高温度下,沼气产量和甲烷含量要高于低温下。在嗜热温度下,pH升高,而在中温和中等温度下,pH降低。这些结果可用于了解奶牛粪厌氧消化过程中的病原体失活,以及温度对厌氧消化池处理奶牛粪的性能的影响。

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