New analytical method for measurement of hydrogen partial pressure using a tubular hydrogen pump-gauge

被引:3
|
作者
Kaneko, Hiroyuki [1 ]
Sasaki, Hayato [1 ]
Tada, Eiji [1 ]
Maskell, William C. [2 ]
机构
[1] Akita Univ, Fac Engn & Resource Sci, Akita 0108502, Japan
[2] Sensox Ltd, London Business Innovat Ctr, Enfield EN3 7XU, Middx, England
关键词
proton conductor; hydrogen sensor; hydrogen pump; gas analysis;
D O I
10.1166/sl.2008.028
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A tubular hydrogen pump-gauge was constructed and applied to measure hydrogen partial pressure by using a new analytical equation. The merit of using the equation is that a reference gas with a known hydrogen partial pressure is not necessary; in fact, the method worked well when the reference gas was Ar/H-2/H2O or air/H2O. Sample gases, containing up to 1% by volume hydrogen in argon and including water vapor, were flowed through a non-porous tube of a proton conductor operated at temperatures in the range 700-800 C. Current was passed via one pair of porous platinum electrodes to pump hydrogen electrochemically in or out of the gas flowing in the tube. A second pair of electrodes downstream enabled a Nernst emf to be monitored. Passing a current, 1, resulted in a change in Nernst emf, Delta E. A new theoretical equation predicted a linear relationship between exp(-2F Delta E/RT) and I at constant gas flow rate within the tube, and also between exp(-2F Delta E/RT) and the reciprocal flow rate at constant l. Measurements validated these predictions at hydrogen partial pressures up to 5 x 10(-4) atm.
引用
收藏
页码:246 / 249
页数:4
相关论文
共 50 条
  • [41] Rapid measurement of hydrogen sulphide in human blood plasma using a microfluidic method
    Karunya, R.
    Jayaprakash, K. S.
    Gaikwad, R.
    Sajeesh, P.
    Ramshad, K.
    Muraleedharan, K. M.
    Dixit, M.
    Thangaraj, P. R.
    Sen, A. K.
    SCIENTIFIC REPORTS, 2019, 9 (1)
  • [42] THE CLEARANCE METHOD OF BLOOD-FLOW MEASUREMENT USING ELECTROCHEMICAL HYDROGEN GENERATION
    AGAFONOV, WP
    FIZIOLOGICHESKII ZHURNAL, 1989, 35 (01): : 90 - 93
  • [43] Measurement method for the concentration of hydrogen sulfide in pore water using ultraviolet spectrometry
    Utsumi, Masae
    Nakatani, Naoki
    Iwasa, Natsumi
    Tsukahara, Yohei
    Otsuka, Koji
    OCEANS, 2012 - YEOSU, 2012,
  • [44] Analysis on measurement of hydrogen concentration in air mixture using 3 omega method
    Oh, Dong-Wook
    INTERNATIONAL JOURNAL OF NANOTECHNOLOGY, 2022, 19 (01) : 88 - 93
  • [45] Rapid measurement of hydrogen sulphide in human blood plasma using a microfluidic method
    R. Karunya
    K. S. Jayaprakash
    R. Gaikwad
    P. Sajeesh
    K. Ramshad
    K. M. Muraleedharan
    M. Dixit
    P. R. Thangaraj
    A. K. Sen
    Scientific Reports, 9
  • [46] Measurement of a wide range of hydrogen concentration with rapid response using dual pressure gauges
    Suzuki, A.
    Nonaka, H.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2008, 33 (21) : 6385 - 6392
  • [47] NEW BLOOD PRESSURE MEASUREMENT METHOD USING WAVEFORM FEATURES
    Lan, H.
    AI-Jumaily, A. M.
    INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION - 2012, VOL 2: BIOMEDICAL AND BIOTECHNOLOGY, 2013, : 865 - 867
  • [48] Characterization and Modeling of Photon Absorption for Improved Accuracy and Consistency of Density Measurement Using Nuclear Gauge with Hydrogen Effects
    Chen F.
    He X.
    Wang L.
    Yin H.
    Transportation Infrastructure Geotechnology, 2016, 3 (2) : 37 - 59
  • [49] New production method of hydrogen storage alloy using combustion synthesis
    Akiyama, T
    Isogai, H
    Yagi, J
    HYDROGEN ENERGY PROGRESS XI, VOLS 1-3, 1996, : 2279 - 2283
  • [50] Contact angle measurement for hydrogen/brine/sandstone system using captive-bubble method relevant for underground hydrogen storage
    Hashemi, Leila
    Glerum, Wuis
    Farajzadeh, Rouhi
    Hajibeygi, Hadi
    ADVANCES IN WATER RESOURCES, 2021, 154