首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Effect of SO2 and H2S on CO preferential oxidation in H-2-rich gas over Ru/Al2O3 and Pt/Al2O3 catalysts
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Effect of SO2 and H2S on CO preferential oxidation in H-2-rich gas over Ru/Al2O3 and Pt/Al2O3 catalysts

机译:在Ru / Al2O3和Pt / Al2O3催化剂上,SO2和H2S对富H-2气体中CO优先氧化的影响

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摘要

The influence of the addition of 2.1 or 21 ppm SO2 or 2.1, 4.3 or 48 ppm H2S to reaction gas composed of 51.5 vol.% H2O 0.3 vol.% CO2 13.0 vol CO2, 0.5 vol.% O-2, 6.0 vol.% N-2, and 28.8 vol.% H2O on the activity for the CO preferential oxidation was investigated. The catalysts used for the reaction tests were monolith Ru/Al2O3 and Pt/Al2O3 catalysts with Ru loading of 1.6 g/l and Pt loading of 3.1 g/l, respectively. Pellet 3.8 wt.% Ru/Al2O3 and 3.8 wt.% Pt/Al2O3 catalysts were also used to elucidate the deactivation mechanisms. The addition of a high concentration of SO2 or H2S decreased the activit for the CO preferential oxidation. The XPS and IR spectrum for the SO2-poisoned Ru/Al2O3 catalyst showed that Ru particles adsorbed SO42- species, while the XPS for both SO2- and H2S-poisoned Pt/Al2O3 catalysts showed that Pt particles adsorbed S2- species. The activities of the Ru/Al2O3 catalyst for both CO and H-2 oxidations were lowered in the presence of the sulfur compounds: the selectivity of CO oxidation was almost constant during the poisoning reaction. On the other hand, the activity of the Pt/Al2O3 catalyst for CO oxidation was lowered by small amounts ofthe sulfur compounds, while the activity for H-2 oxidation was almost constant: the selectivity of CO oxidation decreased. The poisoned Pt catalysts were regenerated by the calcination at 175 degrees C, and the covering S2- species was oxidized to SO42- species, which migrated to the Al2O3 support. (c) 2005 Elsevier B.V. All rights reserved.
机译:向由51.5体积%H2O构成的反应气体中添加2.1或21 ppm SO2或2.1、4.3或48 ppm H2S的影响0.3体积%的CO2 13.0体积的CO2、0.5体积%的O-2、6.0体积%研究了N-2和28.8体积%的H2O对CO优先氧化活性的影响。用于反应测试的催化剂是整体式Ru / Al2O3和Pt / Al2O3催化剂,Ru负载量分别为1.6 g / l和Pt负载量为3.1 g / l。颗粒3.8重量%的Ru / Al 2 O 3和3.8重量%的Pt / Al 2 O 3催化剂也用于阐明失活机理。高浓度的SO2或H2S的添加降低了CO优先氧化的活性。 SO2中毒的Ru / Al2O3催化剂的XPS和IR光谱表明Ru颗粒吸附了SO42-物种,而SO2-和H2S中毒的Pt / Al2O3催化剂的XPS均显示Pt颗粒吸附了S2-物种。在含硫化合物的存在下,Ru / Al2O3催化剂对CO和H-2氧化的活性均降低:在中毒反应期间,CO氧化的选择性几乎恒定。另一方面,少量的硫化合物会降低Pt / Al2O3催化剂的CO氧化活性,而H-2氧化的活性则几乎保持不变:CO氧化的选择性降低。中毒的Pt催化剂通过在175摄氏度下的煅烧进行再生,并且覆盖的S2-物种被氧化为SO42-物种,然后迁移到Al2O3载体上。 (c)2005 Elsevier B.V.保留所有权利。

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