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An integrated model of substrate clogging in vertical flow constructed wetlands

机译:垂直流人工湿地中基质堵塞的综合模型

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摘要

This paper presents an integrated model of substrate clogging in a vertical flow constructed wetland (VFCW). The model simulates the reduction of pore space in the wetland substrate due to combined influences of various physical, biogeochemical and plant-related processes. A series of experiments based on laboratory-scale VFCWs were conducted to examine and measure key parameters related to clogging of the wetland substrate during operation under different conditions. The model was then validated using data collected from the experiments. The results showed that the model was able to replicate the clogging phenomenon as observed in the experiments, in particular, the characteristic clogging time. The model also predicted well individual contributions to clogging by accumulated inert suspended solids, microbial biomass and plant root materials during the wetland operation. Although the validation was based on the laboratory data, the results indicated that the model describes well the processes underlying the clogging and has the potential to become a tool for assessing the performance of prototype CWs in relation to clogging at both the design and operation stages.
机译:本文提出了在垂直流动人工湿地(VFCW)中基质堵塞的集成模型。该模型模拟由于各种物理,生物地球化学和植物相关过程的综合影响而导致的湿地基质中孔隙空间的减少。进行了一系列基于实验室规模VFCW的实验,以检查和测量与在不同条件下运行期间湿地基质堵塞相关的关键参数。然后使用从实验中收集的数据对模型进行验证。结果表明,该模型能够复制实验中观察到的堵塞现象,特别是特征性堵塞时间。该模型还预测了在湿地操作过程中,由于积聚的惰性悬浮固体,微生物生物量和植物根系物质而对堵塞造成的良好贡献。尽管验证是基于实验室数据进行的,但结果表明该模型很好地描述了堵塞的过程,并且有可能成为评估原型CW在设计和操作阶段与堵塞相关性能的工具。

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