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Study on the thermal deactivation of motorcycle catalytic converters by laboratory aging tests

机译:实验室老化试验研究摩托车催化转化器的热失活

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摘要

Catalytic converters are used to curb exhaust pollution from motorcycles in Taiwan. A number of factors, including the length of time the converter is used for and driving conditions, affect the catalysts' properties during periods of use. The goal of this study is to resolve the thermal deactivation mechanism of motorcycle catalytic converters.rnFresh catalysts were treated under different aging conditions by laboratory-scale aging tests to simulate the operation conditions of motorcycle catalytic converters. The aged catalysts were characterized by analytical techniques in order to provide information for investigating deactivation phenomena. The time-dependent data of specific surface areas were subsequently used to construct kinetics of sintering at the specific temperature.rnAccording to the analytical results of the catalysts' properties, the increase in aging temperature causes an increase in pore size of the catalysts and a decrease in the specific surface area. The aged catalysts all exhibited lower performances than the fresh ones. The reduction in catalytic activity is consistent with the reduction in the loss of specific surface area. The finding of catalytic properties' dependence on temperature is consistent with the thermally activated theory. In contrast, the effect of the aging time on the specific surface area was only significant during the initial few hours. The high correlation between specific surface areas measured by the Brunauer-Emmett-Teller (BET) method and predicted by the constructed model verifies that the prediction models can predict the sintering rate reasonably under the aging conditions discussed in this study. As compared to automobile catalytic converters, the differences of structures and aging conditions are made less obvious by the deactivation phenomena of motorcycles.
机译:催化转化器用于抑制台湾摩托车的废气污染。包括转化器使用时间长短和驱动条件在内的许多因素都会影响催化剂在使用期间的性能。本研究的目的是解决摩托车催化转化器的热失活机理。通过实验室规模的老化试验对新鲜催化剂在不同的老化条件下进行处理,以模拟摩托车催化转化器的运行条件。通过分析技术对老化的催化剂进行表征,以便为研究失活现象提供信息。随后使用比表面积的随时间变化的数据来构建在特定温度下的烧结动力学。rn根据催化剂性能的分析结果,时效温度的升高导致催化剂孔径的增加和孔径的减小在比表面积。老化的催化剂均表现出比新鲜催化剂更低的性能。催化活性的降低与比表面积损失的降低是一致的。发现催化性能对温度的依赖性与热活化理论一致。相比之下,老化时间对比表面积的影响仅在最初的几个小时内显着。通过Brunauer-Emmett-Teller(BET)方法测量的比表面积与所构建模型预测的比表面积之间的高度相关性证明,该预测模型可以在本研究中讨论的老化条件下合理地预测烧结速率。与汽车催化转化器相比,摩托车的失活现象使结构和老化条件的差异变得不那么明显。

著录项

  • 来源
    《Environmental Technology》 |2010年第3期|337-345|共9页
  • 作者单位

    National Taiwan University, No. 71, Zhoushan Rd, Da-an District, Taipei City 106, Taiwan, Republic of China;

    National United University, No. 1, Lien-Da Road, Kung-Ching Li, Miaoli, 360, Taiwan, Republic of China;

    National Taiwan University, No. 1, Sec. 4, Roosevelt Road, Taipei, 106 Taiwan, Republic of China;

    National Taiwan University, No. 71, Zhoushan Rd, Da-an District, Taipei City 106, Taiwan, Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    laboratory aging; light-off measurement; activity; prediction model;

    机译:实验室老化;起燃测量;活动;预测模型;
  • 入库时间 2022-08-17 13:32:26

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