Butylskii Dmitrii, Moroz Ilya, Tsygurina Kseniya, Mareev Semyon
Membrane Institute, Kuban State University, 149 Stavropolskaya st., 350040 Krasnodar, Russia.
Membranes (Basel). 2020 Mar 11;10(3):40. doi: 10.3390/membranes10030040.
Despite the growing interest in pulsed electric field modes in membrane separation processes, there are currently not many works devoted to studying the effect of the surface properties and composition of ion-exchange membranes on their efficiency in these modes. In this paper, we have shown the effect of increasing mass transfer using different kinds of ion-exchange membranes (heterogeneous and homogeneous with smooth, undulated, and rough surfaces) during electrodialysis in the pulsed electric field modes at underlimiting and overlimiting currents. It was found that the maximum increment in the average current is achieved when the average potential corresponds to the right-hand edge of the limiting current plateau of the voltammetric curve, i.e., at the maximum resistance of the system in the DC mode. For the first time, the development of electroconvective vortices was visualized in pulsed electric field modes and it was experimentally shown that even at relatively low frequencies, a non-uniform concentration field is preserved at the time of a pause, which stimulates the rapid development of electroconvection when pulses are switched on again. In the case of relatively high pulse frequencies, the electroconvective vortices formed during a pulse lapse do not completely decay during a pause; they only slightly decrease in size.
尽管人们对膜分离过程中的脉冲电场模式越来越感兴趣,但目前致力于研究离子交换膜的表面性质和组成对其在这些模式下效率影响的工作并不多。在本文中,我们展示了在脉冲电场模式下,在低于极限电流和高于极限电流时,使用不同种类的离子交换膜(具有光滑、起伏和粗糙表面的非均相和均相膜)进行电渗析时传质增加的效果。研究发现,当平均电位对应于伏安曲线极限电流平台的右边缘时,即直流模式下系统电阻最大时,平均电流达到最大增量。首次在脉冲电场模式下观察到电对流涡旋的发展,并且通过实验表明,即使在相对较低的频率下,暂停时仍会保留不均匀的浓度场,这会在再次开启脉冲时刺激电对流的快速发展。在相对较高的脉冲频率下,脉冲间歇期间形成的电对流涡旋在暂停期间不会完全衰减;它们只是尺寸略有减小。