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Prospects for Creating H+- or OH–-Conducting and Hydrogen- or Oxygen-Producing Surfaces in a Reaction Apparatus from Polyvinyl Chloride Materials
Theoretical Foundations of Chemical Engineering ( IF 0.7 ) Pub Date : 2021-07-29 , DOI: 10.1134/s0040579521030234
A. Yu. Tsivadze 1 , A. Ya. Fridman 1 , V. N. Titova 1 , A. A. Yavich 1 , M. P. Shabanov 1
Affiliation  

Abstract

The possibility of chemical encapsulation of surfaces of technological equipment made of PVC materials into porous H+- or OH-conducting and hydrogen- or oxygen-producing layers. They consist of activated carbon grafted with ethanolamine derivatives of PVC and aqua complexes H2SO4, NaOH, or KOH and are bridges between electrolyte solutions in reactive electrochemical matrices. With cathodic polarization, the layer becomes a source of hydrogen, and with anodic polarization, it becomes a source of oxygen. The rate of their release into the reaction masses is determined by the magnitude of the current in the matrix.



中文翻译:

在反应装置中用聚氯乙烯材料制造 H+- 或 OH-- 导电和产氢或产氧表面的前景

摘要

将 PVC 材料制成的技术设备表面化学封装成多孔 H + - 或 OH -导电层和产氢层或产氧层的可能性。它们由接枝有 PVC 乙醇胺衍生物的活性炭和水络合物 H 2 SO 4、NaOH 或 KOH 组成,是反应性电化学基质中电解质溶液之间的桥梁。在阴极极化时,该层成为氢源,而在阳极极化时,它成为氧源。它们释放到反应物质中的速率由基质中的电流大小决定。

更新日期:2021-07-30
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