首页> 外文会议>Water Environment Federation annual technical exhibition and conference >PILOT-SCALE PERFORMANCE OF THE MBBR PROCESS AT THE CROW CREEK WWTP, CHEYENNE, WYOMING
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PILOT-SCALE PERFORMANCE OF THE MBBR PROCESS AT THE CROW CREEK WWTP, CHEYENNE, WYOMING

机译:MBBR过程的飞行员规模表现在乌鸦溪WWTP,Cheyenne,Wyoming

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The Cheyenne Board of Public Utilities (BOPU) needs to meet new ammonia limits and address the likely need for nitrogen and phosphorus removal within the next 10 to 15 years at their Crow Creek wastewater treatment plant (WWTP). Meeting the new ammonia limits and positioning for future nutrient removal presents a special challenge since the BOPU desires to minimize staffing levels at the Crow Creek WWTP. Historically, just one operator has been assigned to this facility. The Crow Creek WWTP’s existing trickling filter (TF) system was determined to be not well-suited to meet effluent ammonia limits during the winter months, nor for positioning the WWTP for meeting nutrient limits in the future. Results of a process evaluation determined that the best overall approach for Crow Creek was to abandon the TFs and construct a single-pass, multi-stage moving bed biofilm reactor (MBBR) system~? to reduce biochemical oxygen demand (BOD), ammonia (NH_4- N), and total inorganic nitrogen (TIN). Phosphorus removal will be added in the future via addition of a tertiary treatment step such as metal-salt addition followed by sand filtration. Full-scale MBBR facilities in a multi-stage configuration similar to that designed for Crow Creek WWTP have been effective in treating municipal wastewater in Europe. However both the BOPU and Black & Veatch (B&V) felt that a site-specific pilot study was warranted. Accordingly, an onsite pilot study was conducted for five months to confirm that the sizing parameters and conditions used for the initial design were sufficient to meet effluent NH4-N and TIN removal objectives. This paper presents the project background and pilot study methodology, the results and findings gleaned from the study, and the adjustments made to the final design as a result of the pilot work.
机译:Cheyenne公用事业(Bopu)委员会(Bopu)需要满足新的氨限制,并解决在其乌鸦溪废水处理厂(WWTP)内未来10至15年内的氮素和磷去除的可能需要。满足新的氨限制和定位以获得未来的营养成果,因为Bopu希望最大限度地减少乌鸦溪WWTP的人员配置水平以来,这是一个特别的挑战。从历史上看,只有一个运营商已被分配给这个设施。 Crow Creek WWTP现有的涓流滤波器(TF)系统被确定在冬季期间满足污水氨限制,也不用于将未来满足营养限制的威胁氨限制。过程评估结果确定,乌鸦溪的最佳总体方法是放弃TFS并构建一个单遍,多级移动床Biofilm反应器(MBBR)系统〜?减少生化氧需求(BOD),氨(NH_4-N)和总无机氮(锡)。将通过加入叔处理步骤(例如金属盐加成,然后进行砂过滤,将来加入磷去除。在多级配置中的全规模MBBR设施类似于为乌鸦溪WWTP设计的多级配置,在处理欧洲的市政废水方面都是有效的。然而,Bopu和Black&Veatch(B&V)都认为有一个特定于特别的试点研究。因此,进行了5个月的现场试验研究以确认用于初始设计的施胶参数和条件足以满足污水NH4-N和锡腐蚀目标。本文提出了项目背景和试点研究方法,从研究中收集的结果和结果,以及由于飞行员工作而对最终设计进行的调整。

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