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Real-Time Aeration Efficiency Monitoring in the Activated Sludge Process and Methods to Reduce Energy Consumption and Operating Costs

机译:活性污泥工艺中的实时曝气效率监测以及降低能耗和运营成本的方法

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Aeration is the most energy intensive unit operation in municipal wastewater treatment, and fine-pore diffusers have been widely used to minimize power consumption. Unfortunately, fine-pore diffusers suffer from fouling and scaling problems, which cause a rapid decline in aeration performance and significant increase in power consumption. Diffusers must be cleaned periodically to reduce energy costs. The cleaning frequency of diffusers is site-specific and its effectiveness can be evaluated with oxygen transfer efficiency (OTE) testing. Off-gas testing is the best technique for measuring OTE in real-time. Fine-pore diffusers have low a factors that are further reduced at high loading rate. A time-series of off-gas measurements were conducted to demonstrate the value of real-time OTE data for developing energy-conserving operating strategies. The observations confirm the inverse correlation between OTE and airflow rate as well as the economic benefits of diffuser cleaning. In addition, mathematic models were applied to simulate the transient oxygen uptake rate (OUR) and show the impact of varying load on OTE and aeration cost, especially when faced with time-of-day power rates. Regular diffuser cleaning can reduce average power costs by 18% and various equalization alternatives can reduce power costs by 6 to 16%.
机译:曝气是市政废水处理中能耗最高的单元操作,细孔扩散器已被广泛使用以最大程度地减少能耗。不幸的是,细孔扩散器遭受结垢和结垢问题的困扰,这会导致曝气性能迅速下降并且功耗显着增加。扩散器必须定期清洁以降低能源成本。扩散器的清洁频率是针对特定地点的,其有效性可以通过氧气传输效率(OTE)测试进行评估。废气测试是实时测量OTE的最佳技术。细孔扩散器的系数低,在高加载速率下会进一步减小。进行了时间序列的废气测量,以证明实时OTE数据对于制定节能运行策略的价值。这些观察结果证实了OTE与气流速率之间的负相关关系以及扩散器清洁的经济效益。此外,还应用数学模型来模拟瞬时氧气吸收率(OUR),并显示了变化的负载对OTE和曝气成本的影响,尤其是在面对一天中的电费时。定期进行扩压器清洁可将平均电力成本降低18%,各种均衡方案可将电力成本降低6%至16%。

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