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Energy Consumption in Large Wastewater Treatment Plants as a Function of Wastewater Strength

机译:大型污水处理厂能耗与废水强度的关系

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摘要

Wastewater treatment (WWT) is an energy-intensive process. Strict standards for discharge often require energy intensive advanced treatment technologies. As a result, the number of plants using advanced treatment has increased (Figure 1).Rising energy costs and concerns about greenhouse gas generation present a major incentive for tracking energy usage of WWT. Energy usage in plant, for instance, typically represents 18 to 30% of the operational budget.Water efficient fixtures are also increasing loadings of organic matter to plants while lowering or maintaining overall liquid flow. The increased loadings have a significant impact on energy consumption.Previous work has focused primarily on aeration consumption for activated sludge rather than a plant as whole. There are very few studies that show energy requirements on a plant-wide scale with the Water Environment Federation (WEF) being one major source.This research presents a general methodology for tracking energy usage in a plant with regards to wastewater strength. It is anticipated that this research will provide a tool for designers and owners who wish to predict their energy impact before construction of a new plant or before implementing a new process on an existing plant.
机译:废水处理(WWT)是一个能源密集型过程。严格的排放标准通常需要消耗大量能源的先进处理技术。结果,采用先进处理的工厂数量增加了(图1)。能源成本上升和对温室气体产生的担忧成为了跟踪WWT能源使用的主要动力。例如,工厂中的能源使用通常占运营预算的18%至30%。节水装置还增加了植物中有机物的负载量,同时降低或保持了整体液体流量。增加的负荷量对能源消耗有重大影响。以前的工作主要集中在活性污泥的曝气消耗上,而不是整个工厂。很少有研究显示整个工厂范围的能源需求,其中水环境联合会(WEF)是主要来源。这项研究提出了一种通用方法来跟踪工厂中有关废水强度的能源使用情况。可以预期,这项研究将为希望在新建工厂之前或对现有工厂实施新工艺之前预测其能源影响的设计师和所有者提供一种工具。

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