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On the performance of a polymer electrolyte membrane electrochemical reactor for electrosynthesis of carboxylic acids in alkaline media

机译:高分子电解质膜电化学反应器在碱性介质中电解合成羧酸的性能研究

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摘要

A novel polymer electrolyte membrane electrochemical reactor (PEMER) configuration has been employed for the direct electrooxidation of propargyl alcohol (PGA), a model primary alcohol, towards its carboxylic acid derivatives in alkaline medium. The PEMER configuration comprised of an anode and cathode based on nanoparticulate Ni and Pt electrocatalysts, respectively, supported on carbonaceous substrates. The electrooxidation of PGA was performed in 1.0 M NaOH, where a cathode based on a gas diffusion electrode was manufactured for the reduction of oxygen in alkaline conditions. The performance of a novel alkaline anion-exchange membrane based on Chitosan (CS) and Poly(vinyl) alcohol (PVA) in a 50:50 composition ratio doped with a 5 wt.% of poly (4-vinylpyridine) organic ionomer cross-linked, methyl chloride quaternary salt resin (4VP) was assessed as solid polymer electrolyte. The influence of 4VP anionic ionomer loading of 7, 12 and 20 wt.% incorporated into the electrocatalytic layers was examined by SEM and cyclic voltammetry (CV) upon the optimisation of the electroactive area, the mechanical stability and cohesion of the catalytic ink onto the carbonaceous substrate for both electrodes. The performance of the 4VP/CS:PVA membrane was compared with the commercial alkaline anion-exchange membrane FAA -a membrane generally used in direct alcohol alkaline fuel cells- in terms of polarisation plots in alkaline conditions. Furthermore, preparative electrolyses of the electrooxidation of PGA was performed under alkaline conditions of 1 M NaOH at constant current density of 20 mA cm-2 using a PEMER configuration to provide proof of the principle of the feasibility of the electrooxidation of other alcohols in alkaline media. PGA conversion to Z isomers of 3-(2-propynoxy)-2-propenoic acid (Z-PPA) was circa 0.77, with average current efficiency of 0.32. Alkaline stability of the membranes within the PEMER configuration was finally evaluated after the electrooxidation of PGA.
机译:一种新型的聚合物电解质膜电化学反应器(PEMER)结构已被用于在碱性介质中将炔丙醇(PGA)(一种模型伯醇)直接向其羧酸衍生物进行电氧化。 PEMER配置包括分别基于负载在碳质基材上的基于纳米颗粒Ni和Pt电催化剂的阳极和阴极。 PGA的电氧化是在1.0 M NaOH中进行的,其中制造了基于气体扩散电极的阴极以在碱性条件下还原氧气。一种基于壳聚糖(CS)和聚乙烯醇(PVA)的新型碱性阴离子交换膜的性能,其组成比为50:50,掺杂有5 wt。%的聚(4-乙烯基吡啶)有机离聚物。连接的氯甲烷季盐树脂(4VP)被评估为固体聚合物电解质。通过SEM和循环伏安法(CV)考察了4VP阴离子离聚物负载量分别为7、12和20 wt。%掺入电催化层中对优化电活性面积,机械稳定性和催化油墨在碳纳米管上的内聚力的影响。两个电极的碳质基材。就碱性条件下的极化图而言,将4VP / CS:PVA膜的性能与市售碱性阴离子交换膜FAA(通常用于直接酒精碱性燃料电池的膜)进行了比较。此外,使用PEMER配置在1 M NaOH的碱性条件下以20 mA cm-2的恒定电流进行PGA电氧化的制备性电解,以证明在碱性介质中其他醇进行电氧化的可行性的原理证明。 。从PGA到3-(2-丙炔氧基)-2-丙酸(Z-PPA)的Z异构体的转化率约为0.77,平均电流效率为0.32。在PGA电氧化后,最终评估了PEMER构型中膜的碱性稳定性。

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