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Vertical flow constructed wetland for textile effluent treatment

机译:垂直流人工湿地用于纺织品废水处理

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A pulse feed vertical flow constructed wetland (VFCW) proved to be efficient in the treatment of a textile effluent being able to buffer, dilute and treat an Acid Orange (AO7) accidental discharge. The influence of the flooding level (FL) and pulse feed (PF) duration on the removal efficiencies of a VFCW was examined. Average AO7 removal efficiencies of 70% were achieved for an AO7 Inlet concentration of 700 mg l-1 applied during 15 min cycle-1 (every three hours) at a hydraulic load of 13 l m-2 cycle-1 and an FL of 21%. The VFCW was modelled by analogy with a combination of ideal reactors. The simplest combination that best reproduced the experimental results was an association of 2 reactors in series plus 1 reactor accounting the dead volumes. The model parameters helped to understand the hydrological and kinetic processes occurring in VFCW. Through the model simulation it was shown that 3 VFCW in series were enough to efficiently treat an organic mass load of 76 gAO7 m-2 day-1 in 9 hours and fulfil the discharge legislation. In this work it was possible to establish that the overall degradation kinetics was of first order.
机译:事实证明,脉冲进给垂直流人工湿地(VFCW)在处理纺织废水时能够有效地缓冲,稀释和处理酸性橙(AO7)意外排放。研究了淹没水位(FL)和脉冲进给(PF)持续时间对VFCW去除效率的影响。在13 l m-2 cycle-1的液压负载和FL为21的情况下,在15分钟的cycle-1(每三小时)施加700 mg l-1的AO7入口浓度达到700%的平均AO7去除效率为70% %。 VFCW通过模拟与理想反应堆的组合进行建模。最能重现实验结果的最简单组合是2个串联反应堆的组合加上1个反应堆的死体积。模型参数有助于了解VFCW中发生的水文和动力学过程。通过模型仿真表明,串联3个VFCW足以在9小时内有效处理76 gAO7 m-2 day-1的有机质量负荷并满足排放法规。在这项工作中,可以确定整体降解动力学是一级的。

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