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Methodology for in situ column testing to improve accuracy during design and specification of aeration systems

机译:现场色谱柱测试方法,以提高曝气系统设计和规格说明的准确性

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摘要

When designing wastewater aeration systems, fine-pore diffusers are typically selected for their potential energy efficiency. Because aeration is one of the most energy-intensive unit operations during treatment, the accurate quantification of aeration performance parameters is crucial to minimize the process energy footprint. Oxygen transfer efficiency in process water is the key design parameter; however, performance indicators that account for fouling and increased pressure drop with time must be considered. Both fouling and pressure drop increase cause an increase in blower power requirements. This paper presents a new approach to improve this design procedure, without altering the technical structure of the classical approach. Although the administrative and bidding milestones are underway (i.e., in the first few months of the project), an independent aeration team can test candidate diffusers suitable for design in an in situ aeration column. Subsequently, an extended fouling test in the plant's wastewater can be carried out within the design timing, providing the designers with site-specific aeration performance data. This methodology improves the accuracy of the design process and increases overall energy savings.
机译:在设计废水曝气系统时,通常会根据其潜在的能源效率选择细孔扩散器。由于曝气是处理过程中能耗最高的单元操作之一,因此准确量化曝气性能参数对于最小化过程的能源足迹至关重要。工艺用水中的氧气传输效率是关键设计参数。但是,必须考虑造成结垢和压力下降随时间增加的性能指标。结垢和压降的增加都导致鼓风机功率需求的增加。本文提出了一种新的方法来改进此设计过程,而又不改变经典方法的技术结构。尽管正在进行管理和招标的里程碑(即在项目的前几个月),但独立的曝气小组可以在现场曝气柱中测试适合设计的扩散器。随后,可以在设计时机内对工厂废水进行扩展的结垢测试,为设计人员提供特定地点的曝气性能数据。这种方法提高了设计过程的准确性,并增加了总体能源节省。

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