Interrupted electroosmotic dewatering of clay suspensions

H.R. Rabie, A.S. Mujumdar, M.E. Weber
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引用次数: 63

Abstract

A new method of electroosomotic dewatering with interrupted DC voltage or current was demonstrated. In this method the electrodes are short circuited during the periods of power interruption. Suspensions of Bentonite, kaolin and red clay were dewatered by electroosmotic dewatering using interruption with a short circuit, interruption with an open circuit and continuous DC. The suspension was held in a vertical 5-cm diameter column between two platinum-coated, titanium mesh electrodes, an upper anode, and a lower cathode. In the interrupted regimes the off-time ranged from 0.5–20 s with the on-time fixed at 30 s. The interrupted process with a short circuit was also applied at the end of a DC run when dewatering had stopped. Interruption with a short circuit applied during a 0.5 s off-time removed 20–40% more water than DC or interruption with an open circuit for equal energy consumption. Interruption with a short circuit at the end of a DC run removed additional water, but the total removal was less than if interruption with a short circuit were applied from the beginning.

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粘土悬浮液的间断电渗透脱水
提出了一种利用中断直流电压或电流进行电体脱水的新方法。在这种方法中,电极在电源中断期间短路。采用短路中断、开路中断和连续直流三种方式对膨润土、高岭土和红粘土悬浮液进行电渗透脱水。悬浮液被放置在直径5厘米的垂直柱中,柱间是两个镀铂的钛网电极,一个上阳极,一个下阴极。在中断状态下,停机时间为0.5-20秒,而正常时间为30秒。当脱水停止时,在直流运行结束时也应用了短路中断过程。在0.5 s的断开时间内进行短路中断比直流或在相同的能量消耗下进行开路中断多除去20-40%的水。在直流运行结束时进行短路中断可以去除额外的水,但总去除量少于从一开始就进行短路中断。
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