首页> 外文期刊>Journal of Environmental Science and Health >STELLA software as a tool for modelling phosphorus removal in a constructed wetland employing dewatered alum sludge as main substrate
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STELLA software as a tool for modelling phosphorus removal in a constructed wetland employing dewatered alum sludge as main substrate

机译:STELLA软件作为在以湿矾泥为主要基质的人工湿地中除磷建模的工具

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摘要

A dynamic simulation model was developed for the removal of soluble reactive phosphorus (SRP) from the vertical flow constructed wetlands (VFCW) using a dynamic software program called STELLA (structural thinking, experiential learning laboratory with animation) 9.1.3 to aid in simulating the environmental nature and succession of relationship between interdependent components and processes in the VFCW system. In particular, the VFCW employed dewatered alum sludge as its main substrate to enhance phosphorus (P) immobilization. Although computer modelling of P in treatment wetland has been well studied especially in recent years, there is still a need to develop simple and realistic models that can be used for investigating the dynamics of SRP in VFC Ws. The state variables included in the model are dissolved phosphorus (DISP), plant phosphorus (PLAP), detritus phosphorus (DETP), plant biomass (PLBI) and adsorbed phosphorus (ADSP). The major P transformation processes considered in this study were adsorption, plant and microbial uptake and decomposition. The forcing functions which were considered in the model are temperature, radiation, volume of wastewater, P concentration, contact time, flow rate and the adsorbent (i.e., alum sludge). The model results revealed that up to 72% of the SRP can be removed through adsorption process whereas the uptake by plants is about 20% and the remaining processes such as microbial P utilization and decomposition, accounted for 7% SRP removal based on the mass balance calculations. The results obtained indicate that the model can be used to simulate outflow SRP concentration, and it can also be used to estimate the amount of P removed by individual processes in the VFCW using alum-sludge as a substrate.
机译:开发了一个动态模拟模型,该模型使用称为STELLA(结构思维,带有动画的体验式学习实验室)的动态软件程序从垂直流人工湿地(VFCW)中去除可溶性反应性磷(SFC)9.1.3以帮助模拟VFCW系统中环境的本质以及相互依赖的组件和过程之间的关系的继承。特别是,VFCW使用脱水的铝污泥作为其主要基质,以增强磷(P)的固定性。尽管对处理湿地中P的计算机建模已进行了深入研究,尤其是近年来,但仍需要开发可用于研究VFC Ws中SRP动力学的简单而现实的模型。模型中包含的状态变量是溶解磷(DISP),植物磷(PLAP),碎屑磷(DETP),植物生物量(PLBI)和吸附磷(ADSP)。本研究中考虑的主要P转化过程是吸附,植物和微生物的吸收和分解。模型中考虑的强迫函数是温度,辐射,废水量,磷浓度,接触时间,流速和吸附剂(明矾污泥)。模型结果表明,高达72%的SRP可通过吸附过程去除,而植物的吸收约为20%,其余过程(如微生物P的利用和分解)占质量平衡的7%,SRP去除率计算。获得的结果表明,该模型可用于模拟流出SRP浓度,也可用于估算以铝矾土污泥为底物的VFCW中各个工艺去除的P量。

著录项

  • 来源
    《Journal of Environmental Science and Health》 |2011年第7期|p.751-757|共7页
  • 作者单位

    Centre for Water Resources Research, School of Architecture, Landscape and Civil Engineering, University College Dublin,Belfield, Dublin, Ireland;

    Beijing Municipal Engineering Administration, Jiyou Building, Haidian District, Beijing, P.R. China;

    Centre for Water Resources Research, School of Architecture, Landscape and Civil Engineering, University College Dublin,Belfield, Dublin, Ireland;

    Centre for Water Resources Research, School of Architecture, Landscape and Civil Engineering, University College Dublin,Belfield, Dublin, Ireland,Discipline of Civil Engineering, School of Computing, Science and Engineering, University of Salford, Salford,Greater Manchester, UK;

    Centre for Water Resources Research, School of Architecture, Landscape and Civil Engineering, University College Dublin,Belfield, Dublin, Ireland;

    Institute A, Section of Environmental Chemistry, Copenhagen University, Denmark;

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

    constructed wetland; phosphorus; alum sludge; tidal flow; stella;

    机译:人工湿地;磷;矾泥潮流斯特拉;
  • 入库时间 2022-08-17 13:36:28

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