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首页> 外文期刊>Journal of Hazardous Materials >Uptake of phenol from aqueous solutions by adsorption in a Pinus pinaster bark packed bed
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Uptake of phenol from aqueous solutions by adsorption in a Pinus pinaster bark packed bed

机译:通过在Pinus pinaster树皮填充床中吸附从水溶液中吸收苯酚

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The adsorption of phenol from aqueous solutions using a column packed with pre-treated Pinus pinaster bark was studied. The influence of the inlet phenol concentration (0.01 or 0.1 g/L) and the flow rate (6, 15.6 or 30 mL/min) on the breakthrough curves was analysed. An increase in the flow rate, decreased the time necessary to reach the breakthrough point and, for the highest inlet concentration, the dynamic capacity of the bed, from 7.5 to 0.4 min and from 0.38 to 0.15 mg phenol/g o.d. bark, respectively, at 0.1 g/L. The LUB Design Approach was used to determine the equivalent length of unused bed. The lower LUB values, which imply a better utilization of the bark bed, were obtained at the higher flow rate. A model which considered the effect of axial dispersion was successfully used to describe the fixed-bed operation behaviour for the lower flow rates. For the lowest inlet phenol concentration, the axial dispersion coefficient increased significantly when the flow rate increased.
机译:使用装有预处理的Pinus pinaster树皮的柱子研究了水溶液中苯酚的吸附。分析了入口苯酚浓度(0.01或0.1 g / L)和流速(6、15.6或30 mL / min)对穿透曲线的影响。流速的增加减少了达到突破点所需的时间,对于最高的进口浓度,床的动态容量从7.5分钟降至0.4分钟,从苯酚的动态容量从0.38降至0.15 mg / go.d。树皮分别为0.1 g / L。 LUB设计方法用于确定未使用床的等效长度。在较高的流速下可获得较低的LUB值,这意味着可以更好地利用树皮床。一个考虑了轴向扩散影响的模型已成功地用于描述较低流速下的固定床运行行为。对于最低的进口苯酚浓度,当流速增加时,轴向分散系数显着增加。

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