过氧酸电化学合成中电解液组成的确定

Serhii Alexandrovich Vodolazhenko, Svitlana Germanivna Deribo, Tetiana Vasylivna Shkolnikova, Issam Hussein Chahine
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引用次数: 0

摘要

乳酸(PLA)是一种具有广谱抗菌活性的强消毒剂。由于缺乏聚乳酸合成的电化学技术,它的广泛使用受到阻碍,这将使开发用于生产消毒剂的局部电化学发生器成为可能。参考文献和专业科学出版物中都没有关于СН3СH(OH)С(=О)ОН«СН3СH(OH)С(=О)ООН体系标准电位的信息。研究表明,聚乳酸的电化学合成将与氧释放和过氧化氢的生成过程相结合。为了抑制副作用,在0.5 mol dm-3 H2SO4乳酸溶液中加入添加剂。硫酸盐离子的吸附导致一定比例的水分子在相界之间的边界外位移。在过氧化氢化合物的电化学合成电位处,阳极电流密度几乎增加了2倍。已经发现,乳酸分子被整合到近电极层的结构中,羧基指向阳极表面。当电位大于1.70 ~ 1.75 V时,电流-电压曲线的变化表明了过氧化化合物形成的联合过程,并明显抑制了Pt/PtO2阳极上的氧反应。在这些条件下,由于H2O2的形成和破坏,氧气会释放出来。电流-电压曲线正向和反向运行的电位差表明乳酸对阳极表面吸附过程有显著影响。所得结果证实了Pt/PtO2阳极的选择与电化学合成聚乳酸的相关性。确定了电化学合成聚乳酸的电解液的性质:2 mol dm-3乳酸,0.5 mol dm-3硫酸。
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SUBSTANTIATION OF THE ELECTROLYTE COMPOSITION IN THE ELECTROCHEMICAL SYNTHESIS OF PEROXYLIC ACID
lactic acid (PLA) is a strong disinfectant with a wide spectrum of antimicrobial activity. Its widespread use is hampered by the lack of an electrochemical technology for PLA synthesis, which will make it possible to develop local electrochemical generators for the production of disinfectants. There is no information about the standard potential of the СН3СH(OH)С(=О)ОН « СН3СH(OH)С(=О)ООН system, both in reference literature and professional scientific publications. It has been shown that the electrochemical synthesis of PLA will be combined with the processes of oxygen release and the formation of hydrogen peroxide. To inhibit side processes, an additive to a solution of lactic acid 0.5 mol dm-3 H2SO4 was used. The adsorption of sulfate ions leads to the displacement of a certain proportion of water molecules outside the boundaries between the phase boundaries. An almost 2-fold increase in the anodic current density was also noted at the potentials of electrochemical synthesis of peroxide compounds. It has-been found that a lactic acid molecule is integrated into the structure of the near-electrode layer with a carboxyl group directed towards the anode surface. The inflection of the current-voltage curve, at potentials more positive than 1.70...1.75 V, indicates the course of the combined processes of the formation of peroxide compounds, proceeding with a significant inhibition of the oxygen reaction at the Pt/PtO2 anode. The release of oxygen under these conditions occurs due to the formation and destruction of H2O2. The potential difference between the forward and reverse runs of the current-voltage curve indicates a significant effect of lactic acid on the adsorption processes on the anode surface. The results obtained confirmed the relevant the choice of the Pt/PtO2 anode for the electrochemical synthesis of PLA. The characteristics of the electrolyte for the electrochemical synthesis of PLA has been defined: 2 mol dm-3 of lactic acid, 0.5 mol dm-3 of sulfuric acid.
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