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Full-scale Up-FloRTM stormwater filter field performance verification tests.

机译:全面的Up-FloRTM雨水过滤器现场性能验证测试。

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摘要

The Up-FloRTM Filter is an innovative high-rate, small footprint, stormwater treatment device based on upward filtration technology. It was originally developed by environmental engineers at the University of Alabama with grant support from the U.S. EPA-funded Small Business Innovative Research (SBIR) Program and commercialized by Hydro International. Prior data was collected and the performance was evaluated under different conditions and scales during SBIR phase I and phase II testing, pilot-scale field testing, full-scale one module testing, and full-scale six module testing. These data verified the expected Up-FloRTM Filter treatability for solids, inorganic nutrients, bacteria, and metals in stormwater runoff.;The primary objective of this research was to extend the field performance verification tests of a full-scale six-module Up-FloRTM Filter using the Hydro International CPZ Mix(TM) that were initially conducted by Dr. Noboru Togawa. Hydraulic performance observations through a one-year monitoring period indicated that about 74% of the total flow was completely treated with no bypass. The maximum bypass observed was about 50% under the most intense rains having about 5 in/hr peak rain intensities. The bypassed flows received partial treatment through sedimentation in the filter's sump and floatable control by the siphon bypass. The effluent samples collected blended flows and therefore consider the combined effect of complete treatment and the partial treatment of the bypassed flows. The maximum treatment flow rate (before any bypassing) was about 150 GPM (25 GPM per module) for the first 9 months of the monitoring period (totaling about 34 inches of rainfall) and then dropped to about 50 GPM for the duration of the monitoring period. Therefore, the media bags should be replaced after about 30 inches of rainfall.;The flow-weighted TSS removals (for all 50 storms) were about 88%, with an average effluent concentration of about 21 mg/L. The influent median particle size was about 300 microm, with a median specific gravity of about 3.0 g/cc, while the effluent median particle size was about 40 um, with a median specific gravity of about 1.6 g/cc. Particles up to about 3 microm had removals of about 35%, increasing to about 70% for particles in the range of 3 to 120 microm, and more than 90% for larger particles. High reductions (58 to 100%) were observed for total Cr, Cu, Pb, and Zn. Moderate reductions (about 50%) were observed for E. coli and enterococci, while low reductions (22 to 34%) were observed for P and N compounds.
机译:Up-FloRTM过滤器是基于向上过滤技术的创新型高速率,占地面积小,雨水处理设备。它最初由阿拉巴马大学的环境工程师开发,并获得了美国环保署资助的小型企业创新研究(SBIR)计划的资助,并由Hydro International进行了商业化。在SBIR第一阶段和第二阶段测试,中试规模的现场测试,满量程的一个模块测试和满量程的六个模块测试期间,收集了先前的数据并在不同条件和规模下评估了性能。这些数据验证了Up-FloRTM过滤器对雨水径流中的固体,无机养分,细菌和金属的预期可处理性;这项研究的主要目的是扩展全尺寸六模块Up-FloRTM的现场性能验证测试使用最初由Togawa Noboru Togawa博士进行的Hydro International CPZ Mix™进行过滤。在为期一年的监测期内对水力性能的观察表明,约有74%的总流量在没有旁路的情况下得到了完全处理。在峰值雨强度约为5英寸/小时的最强雨中,观察到的最大旁路约为50%。旁路的水流通过过滤器池中的沉淀和虹吸旁路的浮动控制得到了部分处理。废水样品收集混合流,因此要考虑对旁路流进行完全处理和部分处理的综合效果。在监测期间的前9个月(在总共约34英寸的降雨中),最大处理流量(在没有旁路之前)约为150 GPM(每个模块25 GPM),然后在监测期间降至约50 GPM期。因此,应在大约30英寸的降雨后更换介质袋。流量加权的TSS清除量(针对所有50次暴风雨)约为88%,平均污水浓度约为21 mg / L。流入的中值粒径为约300微米,中值比重为约3.0g / cc,而流出的中值粒径为约40μm,中值比重为约1.6g / cc。高达约3微米的颗粒的去除率约为35%,对于3到120微米范围内的颗粒,去除率提高到约70%,对于较大的颗粒,去除率超过90%。 Cr,Cu,Pb和Zn的总还原率很高(58%至100%)。大肠杆菌和肠球菌的中度减少量(约50%),而P和N化合物的中度减少量(22至34%)。

著录项

  • 作者

    Cai, Yezhao.;

  • 作者单位

    The University of Alabama.;

  • 授予单位 The University of Alabama.;
  • 学科 Environmental engineering.;Water resources management.
  • 学位 M.S.
  • 年度 2013
  • 页码 714 p.
  • 总页数 714
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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