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The impact of contactor scale on a ferric nanoparticle adsorbent process for the removal of phosphorus from municipal wastewater

机译:接触器垢对铁纳米颗粒吸附剂工艺去除市政废水中磷的影响

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摘要

The impact of contactor scale on the efficacy of a ferric nanoparticle embedded media for phosphorus removal was investigated. Experiments were conducted on columns with diameters between 15 and 500 mm, operated at a fixed empty bed contact time of 4 min and an aspect ratio of bed depth to column diameter of 2:1 to ensure self similarity. The columns contained a ferric nanoparticle embedded media, and treated water containing 4 mg P L~(-1) to simulate applications of full load removal. The treatable flow before breakthrough, the shape of the mass transfer zone and the capacity were all seen to vary with the column diameter used. A logarithmic relationship was observed between column diameter and adsorption capacity such that the capacity increased from 3.4 to 6.3 mg Pg_(media)~(-1) as the column diameter increased from 15 to 500 mm. Overall the results highlight the importance of considering the scale at which the capacity is measured when assessing the economic suitability of the embedded nanoparticle resin.
机译:研究了接触器垢对铁纳米颗粒嵌入式介质除磷效率的影响。在直径为15至500 mm的色谱柱上进行实验,以固定的空床接触时间4分钟和床深与色谱柱直径的纵横比为2:1进行操作以确保自相似性。色谱柱包含铁纳米粒子嵌入的介质和含有4 mg P L〜(-1)的处理水,以模拟全负荷去除的应用。穿透前的可处理流量,传质区的形状和容量均随所用色谱柱直径而变化。观察到柱直径与吸附容量之间的对数关系,从而随着柱直径从15 mm增加到500 mm,容量从3.4 mg Pg_(media)〜(-1)增加。总体而言,结果突出了评估嵌入式纳米颗粒树脂的经济适用性时考虑容量测量规模的重要性。

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