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Electrochemical study of different membrane materials for the fabrication of stable, reproducible and reusable reference electrode

机译:用于制备稳定,可再现和可重复使用的参比电极的不同膜材料的电化学研究

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摘要

Fabrication of stable,reproducible and reusable reference electrodes for low energy and high-temperature steam splitting is of great interest for hydrogen fuel production without anthropogenic carbon dioxide(CO2)emission.This study has been conducted for the detection of suitable material for the fabrication of novel reference electrode.In the present scenario,this research is designed to fabricate a novel nickel reference electrode by using operating conditions of eutectic molten hydroxide(NaOH-KOH,49-51 mol%)at temperature 300℃in an ion-conducting membrane of alumina and mullite tube.Afterwards,the designed nickel reference electrode has been examined for its reusability and stability by using electrochemical technique and cyclic voltammetry.Five scans of cyclic voltammetry are performed for both membrane fabricated reference electrode.A slight positive shift in oxidation peaks is observed for mullite membrane electrode(64 mV from scan 1 to 5).The stability measurements are noted by changing the scan rate between 50 and 150 mV s−1.Furthermore,the results show that the Ni/Ni(OH)2 reference electrode covered with a mullite membrane is stable and reusable at 300℃temperature without any deterioration.The stability and reusability of prepared nickel reference electrode covered by mullite tube in the eutectic molten hydroxide were up to 9 days to carry out an electrochemical investigation,while for alumina tube reference electrode the stability and reliability were up to 3 days.The internal electrolytic material and ionic conductance can play an important role for future studies with this reference electrode along with optimisation of temperature and scan rate parameters.

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  • 来源
    《天然气化学(英文版)》 |2020年第10期|33-41|共9页
  • 作者单位

    Department of Chemical and Environmental Engineering University of Nottingham University Park Nottingham NG7 2RD United Kingdom;

    Department of Chemical and Environmental Engineering University of Nottingham University Park Nottingham NG7 2RD United Kingdom;

    School of Mechanical Aerospace and Automotive Engineering Faculty of Engineering Environmental and Computing Coventry University Coventry CV1 2JH United Kingdom;

    Department of Chemical and Environmental Engineering University of Nottingham University Park Nottingham NG7 2RD United Kingdom;

    Department of Biochemistry University of Agriculture Faisalabad 38000 Pakistan;

    Department of Process Engineering Memorial University of Newfoundland St John's Newfoundland A1B 3×5 Canada;

    Department of Chemical and Environmental Engineering University of Nottingham University Park Nottingham NG7 2RD United Kingdom;

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  • 入库时间 2022-08-19 04:44:09
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