期刊文献+

Performance of Amperometric and Potentiometric Hydrogen Sensors 被引量:1

Performance of Amperometric and Potentiometric Hydrogen Sensors
原文传递
导出
摘要 The principle, design, construction and performance of the amperometric and potentiometric sensors for measuring the permeation rate of hydrogen through the wall of metal equipment were investigated in order to develop a new type of hydrogen sensor with high accuracy. The transient curves of hydrogen permeation under a given charging condition were employed to evaluate the performance of two types of hydrogen sensors. The relative deviation of the hydrogen concentration detected with two types of sensors under the same condition varied from 3.0% to 13%. The accuracy, response time, reproducibility, and installation were discussed and compared. Response time of the potentiometric sensor (E-sensor) was shorter than that of the amperometric sensor (I-sensor). Both types of sensors exhibited good reproducibility. Development of I-sensor composed of a kind of proton conductor adhesives or non-fluid electrolytes which contain two functions of high electrical conductivity and a strong adhesion will be a promising prospect in order to measure hydrogen permeation at high temperature. The principle, design, construction and performance of the amperometric and potentiometric sensors for measuring the permeation rate of hydrogen through the wall of metal equipment were investigated in order to develop a new type of hydrogen sensor with high accuracy. The transient curves of hydrogen permeation under a given charging condition were employed to evaluate the performance of two types of hydrogen sensors. The relative deviation of the hydrogen concentration detected with two types of sensors under the same condition varied from 3.0% to 13%. The accuracy, response time, reproducibility, and installation were discussed and compared. Response time of the potentiometric sensor (E-sensor) was shorter than that of the amperometric sensor (I-sensor). Both types of sensors exhibited good reproducibility. Development of I-sensor composed of a kind of proton conductor adhesives or non-fluid electrolytes which contain two functions of high electrical conductivity and a strong adhesion will be a promising prospect in order to measure hydrogen permeation at high temperature.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2014年第11期1160-1165,共6页 材料科学技术(英文版)
基金 supported by National Natural Science Foundation of China (No.21176061) China and Science and Technology Planning Project (2013FJ3023) of Hunan Province in China
关键词 Hydrogen sensor Hydrogen diffusion Hydrogen embrittlement NICKEL Hydrogen sensor Hydrogen diffusion Hydrogen embrittlement Nickel
  • 相关文献

参考文献45

  • 1R.A. Oriani, J.P. Hirth, M. Smialowski, Hydrogen Degradation of Ferrous Alloys, Noyes Publications, Park Ridge, NJ, 1985.
  • 2O.D. Smiyan, G.M. Grigorenko, A.B. Vainman, Int. J. Hydrogen Energy 27 (2002) 801--802.
  • 3E. Akiyama, K. Matsukado, M. Wang, Corros. Sci. 52 (2010) 2758-2765.
  • 4H.C. Ng, R.C. Newman, Corros. Sei. 47 (2005) 1197--1210.
  • 5D.R. Fincher, A.C. Nestle, J.J. Man', Mater. Perform. 15 (1976) 34-40.
  • 6A.E. Regazzoni, E. Matijevie, Corrosion 38 (1982) 212--218.
  • 7P.H. Pumphrey, Corrosion 36 (1980) 537--543.
  • 8T. Yajima, K. Koide, H. Takai, Solid State Ionics 79 (1995) 333-337.
  • 9H.B. Freeman, Hydrogen Monitoring Apparatus, US Patent, No. 5392661, 1995.
  • 10M.A.V. Devanathan, Z. Stachurski, W. Beck, J. Electrochem. Soc. 8 (1963) 886-890.

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部