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Mathematical model for carbon dioxide evolution from the thermophilic composting of synthetic food wastes made of dog food

机译:由狗食制成的合成食品废料的高温堆肥产生二氧化碳的数学模型

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摘要

The impacts of the aeration and the agitation on the composting process of synthetic food wastes made of dog food were studied in a laboratory-scale reactor. Two major peaks of CO_2 evolution rate were observed. Each peak represented an independent stage of composting associated with the activities of thermophilic bacteria. CO_2 evolutions known to correlate well with microbial activities and reactor temperatures were fitted successfully to a modified Gompertz equation, which incorporated three biokinetic parameters, namely, CO_2 evolution potential, specific CO_2 evolution rate, and lag phase time. No parameters that describe the impact of operating variables are involved. The model is only valid for the specified experimental conditions and may look different with others. The effects of operating parameters such as aeration and agitation were studied statistically with multivariate regression technique. Contour plots were constructed using regression equations for the examination of the dependence of CO_2 evolution potentials on aeration and agitation. In the first stage, a maximum CO_2 evolution potential was found when the aeration rate and the agitation parameter were set at 1.75 1/kg solids-min and 0.35, respectively. In the second stage, a maximum existed when the aeration rate and the agitation parameter were set at 1.8 1/kg solids-min and 0.5, respectively. The methods presented here can also be applied for the optimization of large-scale composting facilities that are operated differently and take longer time.
机译:在实验室规模的反应器中研究了曝气和搅拌对狗食合成食品废料堆肥过程的影响。观察到两个主要的CO_2释放速率峰值。每个峰代表与嗜热细菌活性相关的堆肥的独立阶段。成功地将已知与微生物活动和反应器温度密切相关的CO_2演变拟合到改良的Gompertz方程,该方程包含三个生物动力学参数,即CO_2的发展潜力,特定的CO_2的发展速度和滞后时间。没有涉及描述操作变量影响的参数。该模型仅对指定的实验条件有效,并且看起来可能与其他模型不同。用多元回归技术统计研究了诸如充气和搅拌等操作参数的影响。使用回归方程构建等高线图,以检查CO_2逸出势对充气和搅拌的依赖性。在第一阶段,当通气速率和搅拌参数分别设置为1.75 1 / kg solid-min和0.35时,发现最大的CO_2释放潜力。在第二阶段中,当通气速率和搅拌参数分别设定为1.8 1 / kg固体-min和0.5时,存在最大值。这里介绍的方法还可以用于优化不同操作方式并花费较长时间的大型堆肥设施。

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