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Performance and microbial evaluation of an artificial wetland treatment system for simulation model development.

机译:用于仿真模型开发的人工湿地处理系统的性能和微生物评估。

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摘要

The current research was undertaken to evaluate the performance of a top loading vertical flow submerged bed treatment system (TLVFSBTS) treating primary sewage effluent. Both pollutant elimination and microbial processes were measured. The wetland system is located just west of the Hudson River in upstate New York. The system consists of four 232-m2 wetland cells, currently operating in series. Two cells are planted with Phalaris arundineacea and two with Phragmites communis. The data collected were used to evaluate an existing mechanistic compartmental simulation model and to develop an new simulation model for TLVFSBTS wetlands.; Treating CBOD5 to permit levels ( 4 mg L-1) was not difficult to accomplish and occurred in the first wetland cell during much of the study period. At no time during the 17-month evaluation period did measurable CBOD5 leave the wetland, although lack of carbon source (CBOD5) for microorganisms in subsequent wetland cells (cells 3 and 4) may have been a limitation for denitrification. Ammonium oxidation in the first wetland cell was greater than in the second wetland cell (70.8% and 39.2%, respectively). Nitrite accumulation in the first wetland cell (2.204 mg L-1 maximum value) appeared to be seasonal, and not directly related to nitrite oxidation. Both nitrite and nitrate leave the wetland system at levels below primary drinking water standards (1 and 10 mg L-1), respectively. The ammonium concentration leaving the system was at or below permit level (2.2 mg L-1) during much of the study period.; Nitrification potential and denitrification enzyme activity in the wetland system, especially the first wetland cell, exceeded published values for natural wetlands, tropical soils, and both marine and freshwater sediments. These findings, however, demonstrate the ability of TLVFSBTS wetlands to remove the various nitrogen constituents once the microbial population becomes acclimated to the influent wastewater.; The original simulation model evaluated was determined to be inappropriate for TLVFSBTS wetlands. A new TLVFSBTS model was developed, parts of which worked quite well. A computational problem with the chosen simulation software, however, made it impossible to determine the applicability of the current model. Future work will continue to pursue development of the current model, perhaps with different software.
机译:进行了当前的研究,以评估用于处理主要污水的顶部负载垂直流浸没床处理系统(TLVFSBTS)的性能。同时测量了污染物消除和微生物过程。湿地系统位于纽约州北部哈得逊河以西。该系统由四个串联的232平方米湿地单元组成。两个细胞分别种植了紫ala,两个则种植了芦苇。收集的数据用于评估现有的机械隔室模拟模型,并为TLVFSBTS湿地开发新的模拟模型。将CBOD5处理至允许水平(<4 mg L-1)并不困难,并且在研究期间的大部分时间里都发生在第一个湿地细胞中。在17个月的评估期内,没有任何可测量的CBOD5离开湿地,尽管随后的湿地单元(单元3和4)中微生物缺乏碳源(CBOD5)可能会限制反硝化作用。第一个湿地单元中的铵氧化大于第二个湿地单元中的铵氧化(分别为70.8%和39.2%)。亚硝酸盐在第一个湿地细胞中的积累(最大值为2.204 mg L-1)似乎是季节性的,与亚硝酸盐的氧化没有直接关系。亚硝酸盐和硝酸盐都以低于主要饮用水标准(分别为1和10 mg L-1)的水平离开湿地系统。在大部分研究期间,离开系统的铵浓度等于或低于许可水平(2.2 mg L-1)。湿地系统(尤其是第一个湿地单元)中的硝化潜力和反硝化酶活性超过了自然湿地,热带土壤以及海洋和淡水沉积物的公布值。但是,这些发现表明,一旦微生物种群适应了进水废水,TLVFSBTS湿地便能够去除各种氮成分。确定评估的原始模拟模型不适用于TLVFSBTS湿地。开发了一个新的TLVFSBTS模型,其中的某些部分运行良好。但是,所选仿真软件存在计算问题,因此无法确定当前模型的适用性。未来的工作将继续追求当前模型的开发,也许使用不同的软件。

著录项

  • 作者

    Spokas, Lesley A.;

  • 作者单位

    University of Massachusetts Amherst.$bPlant & Soil Sciences.;

  • 授予单位 University of Massachusetts Amherst.$bPlant & Soil Sciences.;
  • 学科 Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 148 p.
  • 总页数 148
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境污染及其防治;
  • 关键词

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