Harnisch Falk, Warmbier Robert, Schneider Ralf, Schröder Uwe
University of Greifswald, Institute of Biochemistry, Felix-Hausdorff-Strasse 4, Greifswald, Germany.
Bioelectrochemistry. 2009 Jun;75(2):136-41. doi: 10.1016/j.bioelechem.2009.03.001. Epub 2009 Mar 17.
An explicit numerical model for the charge balancing ion transfer across monopolar ion exchange membranes under conditions of bioelectrochemical systems is presented. Diffusion and migration equations have been solved according to the Nernst-Planck Equation and the resulting ion concentrations, pH values and the resistance values of the membrane for different conditions were computed. The modeling results underline the principle limitations of the application of ion exchange membranes in biological fuel cells and electrolyzers, caused by the inherent occurrence of a pH-gradient between anode and cathode compartment, and an increased ohmic membrane resistance at decreasing electrolyte concentrations. Finally, the physical and numerical limitations of the model are discussed.
提出了一种用于生物电化学系统条件下单极离子交换膜电荷平衡离子转移的显式数值模型。根据能斯特 - 普朗克方程求解了扩散和迁移方程,并计算了不同条件下的离子浓度、pH值和膜电阻值。建模结果强调了离子交换膜在生物燃料电池和电解槽中应用的主要限制,这些限制是由阳极和阴极室之间固有存在的pH梯度以及电解质浓度降低时膜欧姆电阻增加所导致的。最后,讨论了该模型的物理和数值限制。