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Exploring aeration-associated energy savings at a conventional water reclamation plant

机译:探索传统水填海工厂的曝气相关的节能

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Aeration accounts for a large fraction of energy consumption at conventional water reclamation plants (WRPs). Older plants were designed when control techniques were relatively primitive and energy consumption was less of a concern. As a result, although process operations at older WRPs can satisfy effluent permit requirements, they can operate with excess aeration. In this study, we developed a wastewater process model to evaluate possible aeration savings at the Metropolitan Water Reclamation District of Greater Chicago Calumet WRP, one of the oldest plants in Chicago. Based on subsets of influent characteristics, we identified eight steady-state scenarios. We also identified transient scenarios that included high probability perturbations and more challenging but lower probability conditions. Results indicate that the Calumet WRP frequently operates with excess aeration. Effluent dissolved oxygen is the limiting parameter with respect to aeration saving and permit requirements. In a typical storm event, aeration could be reduced by up to 50%; even under low probability challenging perturbations, aeration can be decreased by 35% from current average levels and all permit requirements can be satisfied. Annual cost savings from cutting the aeration by 35% could be more than $1.2 million.
机译:曝气占传统水填海植物(WRP)的大部分能耗。当控制技术相对原始的时,设计了较旧的植物,并且能量消耗不太关注。结果,虽然较旧的WRPS的过程操作可以满足流出的许可要求,但它们可以以超出曝气的方式运行。在这项研究中,我们开发了一种废水过程模型,以评估大芝加哥大都会州大都市水回收区的曝气储蓄,芝加哥最古老的植物之一。基于影响特征的子集,我们确定了八种稳态情景。我们还确定了包括高概率扰动和更具挑战性的瞬态情景,但概率较低。结果表明,Calumet WRP经常以过度的通风运行。流出物溶解氧是相对于曝气节省和允许要求的限制参数。在典型的风暴事件中,曝气可以减少50%;即使在低概率挑战性扰动下,曝气也可以从当前平均水平降低35%,并且可以满足所有许可要求。削减曝气量35%的年度成本可能超过120万美元。

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