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废弃活性污泥的好氧堆肥:微生物反应和氧气消耗的动力学分析

Aerobic composting of waste activated sludge: kinetic analysis for microbiological reaction and oxygen consumption.

作者信息

Yamada Y, Kawase Y

机构信息

Research Center for Biochemical and Environmental Engineering, Department of Applied Chemistry, Toyo University, Kawagoe, Saitama, 350-8585, Japan.

出版信息

Waste Manag. 2006;26(1):49-61. doi: 10.1016/j.wasman.2005.03.012. Epub 2005 Jun 22.

Abstract

In order to examine the optimal design and operating parameters, kinetics for microbiological reaction and oxygen consumption in composting of waste activated sludge were quantitatively examined. A series of experiments was conducted to discuss the optimal operating parameters for aerobic composting of waste activated sludge obtained from Kawagoe City Wastewater Treatment Plant (Saitama, Japan) using 4 and 20 L laboratory scale bioreactors. Aeration rate, compositions of compost mixture and height of compost pile were investigated as main design and operating parameters. The optimal aerobic composting of waste activated sludge was found at the aeration rate of 2.0 L/min/kg (initial composting mixture dry weight). A compost pile up to 0.5 m could be operated effectively. A simple model for composting of waste activated sludge in a composting reactor was developed by assuming that a solid phase of compost mixture is well mixed and the kinetics for microbiological reaction is represented by a Monod-type equation. The model predictions could fit the experimental data for decomposition of waste activated sludge with an average deviation of 2.14%. Oxygen consumption during composting was also examined using a simplified model in which the oxygen consumption was represented by a Monod-type equation and the axial distribution of oxygen concentration in the composting pile was described by a plug-flow model. The predictions could satisfactorily simulate the experiment results for the average maximum oxygen consumption rate during aerobic composting with an average deviation of 7.4%.

摘要

为了研究最佳设计和运行参数,对废弃活性污泥堆肥过程中的微生物反应动力学和氧气消耗进行了定量研究。使用4升和20升的实验室规模生物反应器,进行了一系列实验,以探讨日本埼玉县川越市污水处理厂产生的废弃活性污泥好氧堆肥的最佳运行参数。研究了曝气速率、堆肥混合物组成和堆肥高度作为主要设计和运行参数。发现废弃活性污泥的最佳好氧堆肥条件为曝气速率2.0升/分钟/千克(初始堆肥混合物干重)。高达0.5米的堆肥可以有效运行。通过假设堆肥混合物的固相充分混合且微生物反应动力学由莫诺德型方程表示,建立了堆肥反应器中废弃活性污泥堆肥的简单模型。该模型预测结果与废弃活性污泥分解的实验数据拟合良好,平均偏差为2.14%。还使用简化模型研究了堆肥过程中的氧气消耗,其中氧气消耗由莫诺德型方程表示,堆肥堆中氧气浓度的轴向分布由活塞流模型描述。这些预测能够令人满意地模拟好氧堆肥过程中平均最大氧气消耗速率的实验结果,平均偏差为7.4%。

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