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PERFORMANCE OF STEP-FEED ACTIVATED SLUDGE SYSTEMS WITH ANOXIC SELECTORS

机译:具有缺氧选择器的步进活性污泥系统的性能

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In 1997 the City of Boise, Idaho completed an extensive plant upgrade program at their Lander Street Wastewater Treatment Facility (WWTF). The upgrade focused on providing additional wastewater treatment capacity within the existing WWTF boundary; maintaining a high degree of ammonia nitrification; and investing a reasonable amount in capital and operation and maintenance resources. The WWTF bioreactor process was upgraded from a complete-mix air activated sludge process to an anoxic, step-feed, plug-flow air activated sludge process. Of interest, the plant’s bioreactor capacity was increased by over 70 percent using the same aeration basin volume while maintaining nitrification and adding anoxic selectors. This facility has now been operating for over 4 years in this mode, and data are now available to analyze the process under various conditions. This paper will provide a detailed analysis of the most recent 3 years of operation of the Lander Street WWTF. This analysis includes an in depth review of the facility’s ability to meet the initial objectives of removing the traditional pollutants of BOD5 and TSS; as well as its nitrification performance, SVI control, nitrogen and phosphorus removal, and a comparison of the performance of the facility with the design objectives. This paper adds substantial information to the limited database of the anoxic, stepfeed, plug-flow air activated sludge process.
机译:1997年,博伊西市,爱达荷队在其着陆街污水处理设施(WWTF)完成了广泛的工厂升级计划。升级专注于在现有的WWTF边界内提供额外的废水处理能力;保持高度氨硝化;并投资资本和运营和维护资源的合理金额。 WWTF生物反应器方法从完全混合的空气活性污泥过程中升级为缺氧,步进饲料,插塞流动空气活化污泥工艺。感兴趣的是,使用相同的通气盆腔体积在保持硝化和添加缺氧选择器的同时,植物的生物反应器容量增加超过70%。该设施现已在此模式下运行超过4年,现在数据现已用于在各种条件下分析该过程。本文将详细分析兰德街WWTF最近3年的运营。该分析包括深入审查设施,以满足去除BOD5和TSS的传统污染物的初始目标的能力;除了其硝化性能,SVI控制,氮气和磷去除,以及与设计目标的设施性能的比较。本文将大量信息添加到有限的缺氧,步骤,塞流空气活性污泥过程中。

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