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首页> 外文期刊>Journal of Environmental Management >Simulation of batch-operated experimental wetland mesocosms in AQUASIM biofilm reactor compartment
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Simulation of batch-operated experimental wetland mesocosms in AQUASIM biofilm reactor compartment

机译:AQUASIM生物膜反应器隔室中分批操作的实验性湿地环境的模拟

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摘要

In this study, a mathematical biofilm reactor model based on the structure of the Constructed Wetland Model No.1 (CWM1) coupled to AQUASIM's biofilm reactor compartment has been used to reproduce the sequence of transformation and degradation of organic matter, nitrogen and sulphur observed in a set of constructed wetland mesocosms and to elucidate the development over time of microbial species as well as the biofilm thickness of a multispecies bacterial biofilm in a subsurface constructed wetland. Experimental data from 16 wetland mesocosms operated under greenhouse conditions, planted with three different plant species (Typha latifolia, Carex rostrata, Schoenoplectus acutus) and an unplanted control were used in the calibration of this mechanistic model. Within the mesocosms, a thin (predominantly anaerobic) biofilm was simulated with an initial thickness of 49 μm (average) and in which no concentration gradients developed. The biofilm density and area, and the distribution of the microbial species within the biofilm were evaluated to be the most sensitive biofilm properties; while the substrate diffusion limitations were not significantly sensitive to influence the bulk volume concentrations. The simulated biofilm density ranging between 105,000 and 153,000 gCOD/m~3 in the mesocosms was observed to vary with temperature, the presence as well as the species of macrophyte. The biofilm modeling was found to be a better tool than the suspended bacterial modeling approach to show the influence of the rhizosphere configuration on the performance of the constructed wetlands.
机译:在这项研究中,基于与AQUASIM的生物膜反应器隔室耦合的1号人工湿地模型(CWM1)的结构,建立了一个生物膜反应器数学模型,用于重现有机物,氮和硫的转化和降解顺序。一组人工湿地中观世界,以阐明随着时间的推移,地下人工湿地中微生物物种的发展以及多种细菌生物膜的生物膜厚度。该机制模型的校准使用了来自16种在温室条件下运行的湿地中观的实验数据,其中种植了三种不同的植物物种(香蒲(Typha latifolia),轮枝草(Carex rostrata),无穗假单胞菌(Schoenoplectus acutus))和未种植的对照。在中膜的内部,模拟了一个薄的(主要是厌氧的)生物膜,其初始厚度为49μm(平均),并且没有形成浓度梯度。生物膜密度和面积以及生物膜内微生物种类的分布被评估为最敏感的生物膜特性;而底物扩散限制对影响体积浓度不是很敏感。在中膜中,模拟的生物膜密度在105,000至153,000 gCOD / m〜3之间,随温度,大型植物的存在和种类而变化。与悬浮细菌建模方法相比,生物膜建模是一种更好的工具,可以显示根际结构对人工湿地性能的影响。

著录项

  • 来源
    《Journal of Environmental Management》 |2014年第15期|100-108|共9页
  • 作者单位

    UNESCO-IHE Institute for Water Education, P.O Box 3015, 2601 DA Delft, The Netherlands ,Department of Civil and Structural Engineering, Masinde Muliro University of Science and Technology, P.O. Box 190_50100, Kakamega, Kenya;

    Department of Industrial Biological Sciences, Ghent University Campus, Kortrijk, Graaf Karel de Goedelaan 5, 8500 Kortrijk, Belgium;

    Department of Civil Engineering and the Center for Biofilm Engineering, Montana State University, Bozeman, MT 59717, USA;

    UNESCO-IHE Institute for Water Education, P.O Box 3015, 2601 DA Delft, The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biofilm; CWM1; AQUASIM; Constructed wetland mesocosms; Multispecies; Simulation;

    机译:生物膜CWM1;AQUASIM;人工湿地中观世界;多物种;模拟;

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