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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Simulation of water removal process and optimization of aeration strategy in sewage sludge composting
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Simulation of water removal process and optimization of aeration strategy in sewage sludge composting

机译:污泥堆肥过程除水过程模拟及曝气策略优化

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摘要

Reducing moisture in sewage sludge is one of the main goals of sewage sludge composting and biodrying. A mathematical model was used to simulate the performance of water removal under different aeration strategies. Additionally, the correlations between temperature, moisture content (MC), volatile solids (VS), oxygen content (OC), and ambient air temperature and aeration strategies were predicted. The mathematical model was verified based on coefficients of correlation between the measured and predicted results of over 0.80 for OC, MC, and VS, and 0.72 for temperature. The results of the simulation showed that water reduction was enhanced when the average aeration rate (AR) increased to 15.37 m~3 min~(-1) (6/34 min/min, AR: 102.46 m~3 min~(-1)), above which no further increase was observed. Furthermore, more water was removed under a higher on/off time of 7/33 (min/min, AR: 87.34 m~3 min~(-1)), and when ambient air temperature was higher.
机译:减少污水污泥中的水分是污水污泥堆肥和生物干燥的主要目标之一。使用数学模型来模拟在不同曝气策略下的除水性能。此外,还预测了温度,水分含量(MC),挥发性固体(VS),氧含量(OC)和环境空气温度与曝气策略之间的相关性。基于测得的和预测的结果之间的相关系数,对OC,MC和VS的相关系数为0.80,对温度为0.72的数学系数进行了验证。仿真结果表明,当平均曝气速率(AR)增加到15.37 m〜3 min〜(-1)(6/34 min / min,AR:102.46 m〜3 min〜(-1)时,节水效果得到增强。 )),但未观察到进一步的增加。此外,在较高的开/关时间(min / min,AR:87.34 m〜3 min〜(-1))下,并且在环境空气温度较高时,可以去除更多的水。

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