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首页> 外文期刊>Journal of the Chinese Institute of Engineers >THE ADSORPTION OF EDTA-CHELATED COPPER ION IN AQUEOUS SOLUTION BY AN ACTIVATED CARBON ADSORPTION COLUMN
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THE ADSORPTION OF EDTA-CHELATED COPPER ION IN AQUEOUS SOLUTION BY AN ACTIVATED CARBON ADSORPTION COLUMN

机译:活性炭吸附柱对水溶液中乙二胺四价螯合铜离子的吸附

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摘要

A series of column adsorption experiments on the adsorption of EDTA-chelated copper by activated carbon were conducted to obtain more applicable design data. The efficiency of utilization of activated carbon bed improves with increasing empty bed contact time (EBCT). But the absorption capacity of activated carbon usually increases with decreasing EBCT value. Two different adsorption models, the Bed-Depth-Service-Time (BDST) model and Homogeneous Surface Diffusion Model (HSDM), are used to simulate the experimental data. The adsorption behavior of Cu-EDTA in an activated column can be described by the BDST model, but the fitted rate constant of adsorption (k) decreases with increasing EBCT, thus, it is necessary to modify the BDST model to further estimate the exhaust time of activated carbon under various conditions. The fitted results of the HSDM model indicate higher deviations to the experimental results, possibly because the adsorption rate is mainly determined by the surface reaction step.
机译:进行了一系列用活性炭吸附EDTA螯合铜的柱吸附实验,以获取更多适用的设计数据。活性炭床的利用效率随空床接触时间(EBCT)的增加而提高。但是,活性炭的吸收能力通常随着EBCT值的降低而增加。两种不同的吸附模型,床深度服务时间(BDST)模型和均相表面扩散模型(HSDM),用于模拟实验数据。 BDST模型可以描述活化柱中Cu-EDTA的吸附行为,但随着EBCT的增加,吸附的拟合速率常数(k)减小,因此有必要对BDST模型进行修改以进一步估算排气时间在各种条件下的活性炭。 HSDM模型的拟合结果表明与实验结果的偏差更大,可能是因为吸附速率主要由表面反应步骤决定。

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