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Development of inexpensive catalysts for hydrogen production through the integration of steam reforming of methane and high temperature water gas shift.

机译:通过整合甲烷的蒸汽重整和高温水煤气变换,开发廉价的制氢催化剂。

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摘要

There is great concern about the increasing demand for energy with respect to carbon emissions, but hydrogen (H2), a clean fuel, could help alleviate this concern. The replacement of fossil fuels with H2 is cost prohibitive, but the integration of steam reforming of methane (SRM) and water gas shift (WGS) could greatly decrease the cost of production. A composite catalyst of nickel, cerium, zirconium, and zinc was designed to provide activity in both the SRM and WGS reactions. The catalysts were characterized by a variety of techniques including BET, TEM, SEM, TPO, and XRD. It was found that the addition of zinc decreased the surface area, and therefore the activity of the SRM reaction, although it increased WGS activity as observed by improved carbon dioxide selectivity and H2 production. Zinc also increased resistance to carbon deposition. Additionally, aging of precipitates during catalyst synthesis provided improved stability over 48 hours. A Ce/Zr/Zn catalyst doped with 10% Ni and aged for two hours was found to have a final conversion of nearly 20% at 650 °C, and high CO2 selectivity around 55%. This catalyst is an important step in the emerging field of low temperature SRM, a field that could lead to a reduction in carbon emissions.
机译:人们非常关注碳排放方面对能源的需求不断增长,但是作为清洁燃料的氢气(H2)可以缓解这种担忧。用H2替代化石燃料的成本高昂,但是甲烷蒸汽重整(SRM)和水煤气变换(WGS)的集成可以大大降低生产成本。设计了镍,铈,锆和锌的复合催化剂,以在SRM和WGS反应中提供活性。催化剂通过多种技术进行表征,包括BET,TEM,SEM,TPO和XRD。发现锌的添加减少了表面积,因此减少了SRM反应的活性,尽管通过提高二氧化碳的选择性和氢气的产生可以观察到锌增加了WGS的活性。锌还增加了对碳沉积的抵抗力。另外,在催化剂合成期间沉淀物的老化提供了在48小时内改善的稳定性。发现掺有10%Ni的Ce / Zr / Zn催化剂并老化2小时后,在650°C下的最终转化率接近20%,并且高的CO2选择性约为55%。该催化剂是低温SRM新兴领域的重要一步,该领域可以减少碳排放。

著录项

  • 作者

    LeValley, Trevor L.;

  • 作者单位

    University of Wyoming.;

  • 授予单位 University of Wyoming.;
  • 学科 Chemical engineering.;Environmental engineering.
  • 学位 M.S.
  • 年度 2015
  • 页码 91 p.
  • 总页数 91
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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