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首页> 外文期刊>ISIJ international >Effect of Humidity of Air on Hydrogen Absorption into Fe with Rust Layer Containing MgCl_2 during Atmospheric Corrosion
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Effect of Humidity of Air on Hydrogen Absorption into Fe with Rust Layer Containing MgCl_2 during Atmospheric Corrosion

机译:气体吸收空气湿度对含有MgCl_2含有MgCl_2的氢吸收的影响

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摘要

An Fe plate, whose one side was electro-polished and the other covered with the rust layer containing 25.7 g·m~(-2)MgCl_2, was used as the specimen to investigate the effect of humidity on the hydrogen absorption of the plate. The specimen was subjected to an electrochemical hydrogen-absorption test during which the rusted surface was exposed to the air with controlled relative humidity (RH) and atmospheric corrosion occurred on it. When the rusted surface was subjected to dry (RH 0%)-wet (RH 27%) repeated cycle tests for 10.8 ks each, the anodic current density corresponding to the hydrogen-absorption rate was measured on the hydrogen detection surface. The maximum current density was almost independent of the cycle during the first 10 cycles, after which it decreased with an increase in the cycle, reaching almost a steady-state after about 40 cycles. After 55 cycles of the dry-wet repeated cycle test, the specimen was subjected to an electrochemical hydrogen-absorption test to obtain the relationship between the steady-state hydrogen-absorption rate and RH. Hydrogen absorption was observed at RH of about 15%, and the absorption rate increased rapidly with an increase in RH, reached a maximum at RH of about 30%, and then decreased rapidly. When RH increased beyond 40%, the absorption rate increased again, reached a maximum value at RH of 80%, and then decreased gradually. The specimen with the rust layer containing 39.8 g·m~(-2)MgCl_2 also showed two peaks in the hydrogen-absorption rate versus RH plot.
机译:用抛光抛光的Fe板和用含有25.7g·m〜(-2)mgCl_2的锈层覆盖的另一侧,用作试样,以研究湿度对板的氢吸收的影响。对样品进行电化学氢吸收试验,在此期间将生锈的表面暴露于空气中,具有受控的相对湿度(RH),并发生大气腐蚀。当生锈的表面进行干燥(RH 0%) - 湿(RH 27%)反复循环试验时,每次重复循环试验,对应于氢吸收率的阳极电流密度在氢检测表面上测量。在前10个循环期间,最大电流密度几乎与循环无关,之后它随着循环的增加而降低,在约40个循环后几乎达到稳态。在干湿重复循环试验的55次循环后,对样品进行电化学氢吸收试验,以获得稳态氢吸收率和RH之间的关系。在大约15%的RH中观察到氢吸收,并且在RH的增加中,吸收率迅速增加,慢慢达到约30%,然后迅速下降。当RH增加超过40%时,吸收率再次增加,RH值为80%,然后逐渐降低。具有39.8g·m〜(-2)MgCl_2的具有39.8g·m〜(-2)MgCl_2的样品还显示出氢吸收率与Rh图中的两个峰。

著录项

  • 来源
    《ISIJ international》 |2021年第4期|1143-1150|共8页
  • 作者单位

    Graduate Student in Graduate School of Science and Engineering Kansai University 3-3-35 Yamatecho Suita Osaka 564-8680 Japan;

    Graduate Student in Graduate School of Science and Engineering Kansai University 3-3-35 Yamatecho Suita Osaka 564-8680 Japan;

    Faculty of Chemistry Materials and Bioengineering Kansai University 3-3-35 Yamatecho Suita Osaka 564-8680 Japan;

  • 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

    hydrogen absorption; iron; rust layer; magnesium chloride; relative humidity;

    机译:氢吸收;铁;铁锈层;氯化镁;相对湿度;

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