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Application of hexagonal two dimensional electrokinetic system on the nickel contaminated sediment and modelling the transport behavior of nickel during electrokinetic treatment

机译:六角二维电动系统在电动处理过程中镍污染沉积物的应用

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摘要

The possibility of applying hexagonal two dimensional (2-D) electrokinetic ex-situ system on the sediment contaminated with nickel (Ni) has been tested. Three experiments have been performed in order to determine the effect of the continued lack of electricity during the night as well as the effect of electric current oscillations during the use of solar panels. The efficiency of the treatment has been monitored by changing pseudo-total concentration of Ni on defined locations in electrokinetic cell. At the end of the treatment pollution assessment has been evaluated based on the pseudo-total concentration of Ni in sediment and in the leached water. Also, we implemented a modified mathematical model to simulate transport of nickel during electrokinetic remediation of nickel contaminated sediment with the goal to anticipate the time required for the removal of Ni. The results indicate very high efficiency of Ni removal during all three experiments. It can be explained by the fractions present, which can migrate more easily and those are subjected to the processes of electric migration, electric osmosis but also diffusion. In the interest of reducing the energy consumption together with the cost of re mediation of the contaminated medium, the treatment in which solar-green energy has been applied, may be considered as the suitable solution for remediation of the sediment selected. The implemented mathematical model has indicated great congruence with the results of the experiment and can predict the time necessary for electrokinetic remediation of the nickel contaminated sediment.
机译:已经测试了在用镍(Ni)污染的沉积物上施加六边形二维(2-D)电动前原位系统的可能性。已经进行了三个实验,以确定夜间持续缺乏电力的效果以及在使用太阳能电池板期间的电流振荡的影响。通过在电动电动细胞中的定义位置的伪总浓度改变Ni的伪总浓度来监测治疗的效率。在治疗结束时,通过沉积物和浸出水中的Ni伪总浓度评估了污染评估。此外,我们实施了一种改进的数学模型,以模拟镍污染沉积物的电动修复期间镍的运输,以期望去除Ni所需的时间。结果表明,在所有三个实验中表明Ni去除的高效率。它可以通过存在的级分来解释,其可以更容易地迁移,并且这些迁移的迁移过程,电渗透,而且扩散。为了将能量消耗与污染介质的中介成本一起降低,可以认为太阳绿能的处理可以被认为是选择所选择的沉积物的合适溶液。实施的数学模型表明了实验结果的良好同时,可以预测镍受污染沉积物的电动修复所需的时间。

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