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Electrical conductivity measurements of aqueous and immobilized potassium hydroxide

机译:水性和固定式氢氧化钾的电导率测量

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摘要

It is important to know the conductivity of the electrolyte of an alkaline electrolysis cell at a given temperature and concentration so as to reduce the ohmic loss during electrolysis through optimal cell and system design. The conductivity of aqueous KOH at elevated temperatures and high concentrations was investigated using the van der Pauw method in combination with electrochemical impedance spectroscopy (EIS). Conductivity values as high as 2.7 S cm~(-1) for 35 wt%, 2.9 S cm~(-1) for 45 wt%, and 2.8 S cm~(-1) for 55 wt% concentrated aqueous solutions were measured at 200 ℃. Micro- and nano-porous solid pellets were produced and used to immobilize aqueous KOH solutions. These are intended to operate as ion-conductive diaphragms (electrolytes) in alkaline electrolysis cells, offering high conductivity and corrosion resistance. The conductivity of immobilized KOH has been determined by the same method in the same temperature and concentration range. Conductivity values as high as 0.67 S cm~(-1) for 35 wt%, 0.84 S cm~(-1) for 45 wt%, and 0.73 S cm~(-1) for 55 wt% concentrated immobilized aqueous solutions were determined at 200 ℃. Furthermore, phase transition lines between the aqueous and aqueous + gaseous phase fields of the KOH/H_2O system were calculated as a function of temperature, concentration and pressure in the temperature range of 100-350 ℃, for concentrations of 0-60 wt% and at pressures between 1 and 100 bar.
机译:重要的是要知道碱性电解槽在给定的温度和浓度下的电解质的电导率,以便通过最佳的电解槽和系统设计来减少电解过程中的欧姆损耗。使用van der Pauw方法结合电化学阻抗谱(EIS),研究了高温和高浓度KOH水溶液的电导率。在35 wt%的浓水溶液中测得的电导率值最高为2.7 S cm〜(-1),45 wt%的为2.9 S cm〜(-1),55 wt%的浓水溶液为2.8 S cm〜(-1)。 200℃。制备了微孔和纳米孔固体粒料,并用于固定KOH水溶液。它们旨在用作碱性电解池中的离子导电隔膜(电解质),具有高导电性和耐腐蚀性。通过相同的方法在相同的温度和浓度范围内测定了固定化KOH的电导率。确定了35 wt%的电导率值高达0.67 S cm〜(-1),45 wt%的电导率值高达0.84 S cm〜(-1),55 wt%的固定化水溶液的电导率值高达0.73 S cm〜(-1)在200℃。此外,计算了在KOH / H_2O系统的水相和水相+气相之间的相变线随温度,浓度和压力在100-350℃温度范围内(浓度为0-60 wt%和在1至100巴之间的压力下

著录项

  • 来源
    《International journal of hydrogen energy 》 |2012年第21期| p.16505-16514| 共10页
  • 作者单位

    Fuel Cells and Solid State Chemistry Division, Riso National Laboratory for Sustainable Energy, Technical University of Denmark,Frederiksborgvej 399, P.O. Box 49, DTU, 4000 Roskilde, Denmark;

    Fuel Cells and Solid State Chemistry Division, Riso National Laboratory for Sustainable Energy, Technical University of Denmark,Frederiksborgvej 399, P.O. Box 49, DTU, 4000 Roskilde, Denmark;

    Fuel Cells and Solid State Chemistry Division, Riso National Laboratory for Sustainable Energy, Technical University of Denmark,Frederiksborgvej 399, P.O. Box 49, DTU, 4000 Roskilde, Denmark;

    Fuel Cells and Solid State Chemistry Division, Riso National Laboratory for Sustainable Energy, Technical University of Denmark,Frederiksborgvej 399, P.O. Box 49, DTU, 4000 Roskilde, Denmark;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    potassium hydroxide; conductivity; immobilized electrolyte; high temperature; high pressure; alkaline electrolysis;

    机译:氢氧化钾电导率固定电解质高温;高压力;碱性电解;

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