Kozmai Anton, Sarapulova Veronika, Sharafan Mikhail, Melkonian Karina, Rusinova Tatiana, Kozmai Yana, Pismenskaya Natalia, Dammak Lasaad, Nikonenko Victor
Membrane Institute, Kuban State University, 149 Stavropolskaya Street, 350040 Krasnodar, Russia.
Central Research Laboratory, Kuban State Medical University, 4 Sedina Street, 350063 Krasnodar, Russia.
Membranes (Basel). 2020 Dec 22;11(1):2. doi: 10.3390/membranes11010002.
The broad possibilities of electrochemical impedance spectroscopy for assessing the capacitance of interphase boundaries; the resistance and thickness of the foulant layer were shown by the example of AMX-Sb membrane contacted with red wine from one side and 0.02 M sodium chloride solution from the other side. This enabled us to determine to what extent foulants affect the electrical resistance of ion-exchange membranes, the ohmic resistance and the thickness of diffusion layers, the intensity of water splitting, and the electroconvection in under- and over-limiting current modes. It was established that short-term (10 h) contact of the AMX-Sb membrane with wine reduces the water-splitting due to the screening of fixed groups on the membrane surface by wine components. On the contrary, biofouling, which develops upon a longer membrane operation, enhances water splitting, due to the formation of a bipolar structure on the AMX-Sb surface. This bipolar structure is composed of a positively charged surface of anion-exchange membrane and negatively charged outer membranes of microorganisms. Using optical microscopy and microbiological analysis, it was found that more intense biofouling is observed on the AMX-Sb surface, that has not been in contacted with wine.
通过以AMX-Sb膜为例,该膜一侧与红酒接触,另一侧与0.02 M氯化钠溶液接触,展示了电化学阻抗谱在评估相间边界电容、污垢层电阻和厚度方面的广泛可能性。这使我们能够确定污垢在何种程度上影响离子交换膜的电阻、欧姆电阻和扩散层厚度、水分解强度以及欠极限和过极限电流模式下的电对流。结果表明,AMX-Sb膜与葡萄酒的短期(10小时)接触会因葡萄酒成分对膜表面固定基团的屏蔽作用而降低水分解。相反,在膜长期运行过程中形成的生物污垢会增强水分解,这是由于在AMX-Sb表面形成了双极结构。这种双极结构由阴离子交换膜的带正电表面和微生物的带负电外膜组成。通过光学显微镜和微生物分析发现,在未与葡萄酒接触的AMX-Sb表面观察到更强烈的生物污垢。