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Electro-osmotic Treatment of Dredged Sediment by Different Power Supply Modes: Energy Consumption and Electro-osmotic Transport Volume

机译:不同供电方式对疏ged泥沙的电渗处理:能耗和电渗输运量

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摘要

Laboratory model tests were conducted in constant-voltage mode and constant-current mode for the one-dimensional electro-osmotic treatment of dredged sediment, with an approximately consistent initial electric power. The voltage, current, drainage rate, electro-osmotic transport volume, and energy consumption coefficient during the electro-osmotic process were measured and calculated. After treatment, the final soil moisture at designated positions in the test samples was measured to investigate the effects of different power supply modes. Further, the divergent phenomena observed with constant voltage and constant current were discussed. Based on an analysis of the measured energy consumption coefficients with time, we obtained a linear relationship between the applied/equivalent voltage and energy consumption coefficient. Furthermore, the electro-osmotic processes are divided into four stages by equal drainage quantity to obtain the energy consumption and electro-osmotic transport volume under different working conditions. The results reveal that the energy consumption of electro-osmosis is mainly determined by the applied voltage or the equivalent voltage for dredged sediment, while the value of electro-osmotic transport volume depends mainly on the change in soil water content rather than power supply modes. The drainage rate in constant-current mode was observed to be relatively steady, maintaining an approximately constant rate until the soil moisture was dramatically reduced. In other words, constant-current mode shows the advantages of being powerful and persistent in electro-osmotic treatment.
机译:在恒定电压模式和恒定电流模式下进行了实验室模型测试,用于一维电渗处理疏sediment的沉积物,并具有大致一致的初始电功率。测量并计算电渗过程中的电压,电流,排水率,电渗输运量和能耗系数。处理后,测量测试样品中指定位置的最终土壤水分,以研究不同电源模式的影响。此外,讨论了在恒定电压和恒定电流下观察到的发散现象。基于对所测得的能耗系数随时间的分析,我们获得了施加/等效电压与能耗系数之间的线性关系。此外,将电渗过程按相等的排水量分为四个阶段,以获得不同工况下的能耗和电渗输运量。结果表明,电渗的能量消耗主要取决于所施加的电压或挖出的沉积物的等效电压,而电渗输运量的值主要取决于土壤含水量的变化,而不是供电方式。观察到恒流模式下的排水速率相对稳定,保持大致恒定的速率,直到土壤水分大大减少为止。换句话说,恒流模式显示出在电渗治疗中强大而持久的优势。

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