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In Situ Removal Of Copper From Sediments By A Galvanic Cell

机译:电化学池原位去除沉积物中的铜。

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This study dealt with in situ removal of copper from sediments through an electrokinetic (EK) process driven by a galvanic cell. Iron (Fe) and carbon (C) were placed separately and connected with a conductive wire. Polluted sediments were put between them and water was filled above the sediments. The galvanic cell was thus formed due to the different electrode potentials of Fe and C. The cell could remove the pollutants in the sediments by electromigration and/or electroosmosis. Results showed that a weak voltage less than 1 V was formed by the galvanic cell. The voltage decreased with the increase of time. A slight increase of sediment pH from the anode (Fe) to the cathode (C) was observed. The presence of supernatant water inhibited the variation of sediment pH because H~+ and OH~- could diffuse into the water. The removal of copper was affected by the sediment pH and the distribution of electrolyte in sediment and supernatant water. Lower pH led to higher removal efficiency. More electrolyte in the sediment and/or less electrolyte in the supernatant water favored the removal of copper. The major removal mechanism was proposed on the basis of the desorption of copper from sediment to pore solution and the subsequent electromigration of copper from the anode to the cathode. The diffusion of copper from sediment to supernatant water was negligible.
机译:这项研究涉及通过原电池驱动的电动(EK)过程从沉积物中原位去除铜。铁(Fe)和碳(C)分别放置并与导线连接。将受污染的沉积物置于它们之间,并在沉积物上方填充水。由于Fe和C的电极电位不同,因此形成了原电池。该电池可以通过电迁移和/或电渗去除沉积物中的污染物。结果表明,原电池形成了小于1 V的弱电压。电压随着时间的增加而降低。观察到从阳极(Fe)到阴极(C)的沉淀物pH略有增加。上清水的存在抑制了沉积物pH的变化,因为H〜+和OH〜-可以扩散到水中。铜的去除受沉积物pH值以及沉积物和上清水中电解质的分布的影响。较低的pH导致较高的去除效率。沉积物中更多的电解质和/或上清水中的更少的电解质有利于去除铜。提出主要去除机理的依据是铜从沉积物中解吸到孔隙溶液中,随后铜从阳极电迁移到阴极。铜从沉积物到上层水中的扩散可以忽略不计。

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