Cement kiln dust (CKD)-filter sand permeable reactive barrier for the removal of Cu(II) and Zn(II) from simulated acidic groundwater.

J Hazard Mater

Department of Civil Engineering, Faculty of Engineering, University of Kufa, An Najaf, Iraq. Electronic address:

Published: October 2015

AI Article Synopsis

  • The study examined how effective cement kiln dust (CKD) mixed with filter sand is at removing copper and zinc contaminants from water over a 99-day period.
  • The right weight ratios (10:90 and 20:80) of CKD to filter sand were found to maintain good reactivity and hydraulic conductivity, thus supporting groundwater flow.
  • The results suggested that thicker barriers work better and that the CKD's effectiveness decreases as its percentage in the mixture increases.

Article Abstract

The hydraulic conductivity and breakthrough curves of copper and zinc contaminants were measured in a set of continuous column experiments for 99 days using cement kiln dust (CKD)-filter sand as the permeable reactive barrier. The results of these experiments proved that the weight ratios of the cement kiln dust-filter sand (10:90 and 20:80) are adequate in preventing the loss of reactivity and hydraulic conductivity and, in turn, avoiding reduction in the groundwater flow. These results reveal a decrease in the hydraulic conductivity, which can be attributed to an accumulation of most of the quantity of the contaminant masses in the first sections of the column bed. Breakthrough curves for the description of the temporal contaminant transport within the barrier were found to be more representative by the Belter-Cussler-Hu and Yan models based on the coefficient of determination and Nash-Sutcliffe efficiency. The longevity of the barrier was simulated for the field scale, based on the laboratory column tests and the values verified that cement kiln dust can be effectively used in the future, as the reactive material in permeable reactive barrier technology. These results signify that the longevity of the barrier is directly proportional to its thickness and inversely to the percentage of the CKD used.

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Source
http://dx.doi.org/10.1016/j.jhazmat.2015.04.061DOI Listing

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