The CO removal performances of Cr-free Fe/Ni catalysts for high temperature WGSR under LNG reformate condition without additional steam

  • Lee, Joon Yeob
  • Lee, Dae-Won
  • Hong, Yoon-Ki
  • Lee, Kwan-Young
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초록

The goal of this study was to investigate Cr-free, Fe/Ni, metal oxide catalysts for the high temperature shift (HTS) reaction of a fuel processor using liquefied natural gas (LNG). As hexavalent chromium (Cr6+) in commercial HTS catalyst is a hazardous material, we selected Ni as a substitute for chromium in the Fe-based HTS catalyst and investigated the HTS activities of these Cr-free, metal oxide catalysts under the LNG reformate condition. Cr-free, Fe/Ni-based catalysts containing Ni instead of Cr were prepared by coprecipitation and their performance was evaluated under a gas mixture condition (56.7% H-2, 10% CO, 26.7% H2O, and 6.7% CO2) that simulated the gas composition from a steam methane reformer (SMR, at H2O/CH4 ratio = 3 with 100% CH4 conversion). Under this condition, the Fe/Ni catalysts showed higher CO removal activities than Fe-only and Cr-containing catalysts, but the methanation was promoted when the Ni content in the catalyst exceeded 50 wt%. Brunner-Emmett-Teller (BET), X-ray diffraction (XRD), inductively coupled plasma (ICP) and X-ray photoelectron spectroscopy (XPS) analyses were performed to explain the HTS activity of the Fe/Ni catalysts based on the catalyst structure. Copyright (C) 2011, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.

키워드

Water gas shift reactionHigh temperature shift reactionSteam methane reformingHydrogen productionCr-free catalystFe/Ni catalystWATER-GAS SHIFTIRON-BASED CATALYSTSFE-AL-CUMETHANATIONHYDROGENPRECIPITATIONREDUCTIONOXIDATIONETHANOLFERRITE
제목
The CO removal performances of Cr-free Fe/Ni catalysts for high temperature WGSR under LNG reformate condition without additional steam
저자
Lee, Joon YeobLee, Dae-WonHong, Yoon-KiLee, Kwan-Young
DOI
10.1016/j.ijhydene.2011.03.164
발행일
2011-07
유형
Article
저널명
International Journal of Hydrogen Energy
36
14
페이지
8173 ~ 8180