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Linear sweep voltammetry measurements and factorial design model of hydrogen production by HCl/CuCl electrolysis

机译:线性扫描伏安法测量和HCl / CuCl电解制氢的析因设计模型

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摘要

CuCl electrolysis is considered a key process in the Cu-Cl cycle of hydrogen production where H_2 gas is produced by oxidation of CuCl particles dissolved in concentrated HCl solution. A lower electrochemical cell voltage than water electrolysis is a significant advantage of CuCl electrolysis and makes this process attractive for hydrogen production. In order to achieve integration of the electrolysis process with hydrolysis and decomposition reactions of the Cu-Cl cycle, experimental development of this process and analysis of operational factors are presented in this paper. A lab-scale CuCl electrolysis unit is fabricated and the influence of operating parameters including HCl and CuCl concentrations, applied current density, temperature, and solution flow rates on the cell potential and hydrogen production rate are experimentally investigated and analyzed. The present test bench and measurement techniques are described for characterization of the experiment. A fractional factorial design is performed, based on design of experiment methods, to find a correlation between cell voltage and operation factors. The present model predicts the effects of various operating variables on the cell voltage to provide new insight into integration of the electrolysis process. Close agreement between measured and theoretical hydrogen production rate, with the current efficiency of about 93%, indicates high accuracy of the experimental tests.
机译:CuCl电解被认为是制氢的Cu-Cl循环中的关键过程,其中通过溶解在浓HCl溶液中的CuCl颗粒的氧化来产生H_2气体。与水电解相比,较低的电化学电池电压是CuCl电解的显着优势,并且使该过程对制氢具有吸引力。为了实现电解工艺与Cu-Cl循环的水解和分解反应的整合,本文提出了该工艺的实验开发和操作因素的分析。制造了实验室规模的CuCl电解装置,并通过实验研究和分析了操作参数(包括HCl和CuCl浓度,施加的电流密度,温度和溶液流速)对电池电势和产氢率的影响。描述了当前的试验台和测量技术以表征实验。基于实验方法的设计,进行了分数阶乘设计,以找到电池电压和工作因数之间的相关性。本模型预测了各种操作变量对电池电压的影响,从而为电解过程的整合提供了新的见识。测得的氢产率与理论产氢率之间的一致性很高,电流效率约为93%,表明实验测试的准确性很高。

著录项

  • 来源
    《International journal of hydrogen energy》 |2013年第29期|12704-12717|共14页
  • 作者单位

    Faculty of Engineering and Applied Science, University of Ontario Institute of Technology, 2000 Simcoe Street North,Oshawa, Ontario, Canada, L1H 74K;

    Faculty of Engineering and Applied Science, University of Ontario Institute of Technology, 2000 Simcoe Street North,Oshawa, Ontario, Canada, L1H 74K;

    Faculty of Engineering and Applied Science, Memorial University, 240 Prince Phillip Drive, St. John's, Newfoundland, Canada, A1B 3X5;

  • 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

    CuCl electrolysis; Experimental analysis; Factorial design; Cell voltage; Hydrogen production rate;

    机译:CuCl电解;实验分析;析因设计;电池电压;制氢率;
  • 入库时间 2022-08-18 00:27:55

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