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车载制氢低温变换催化剂

LOW TEMPERATURE WATER GAS SHIFT CATALYSTS FOR ONBOARD HYDROGEN PRODUCTION
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摘要 分别采用共沉淀法和尿素合成法制备了Cu-Mn和Cu-La-Ce低温变换催化剂,考察了不同催化剂制备条件、停车条件以及氧冲击对催化剂活性的影响。结果表明,洗涤充分的CuMn2催化剂活性较高,尿素合成法制得的5.6%Cu-10.4%La-Ce催化剂几乎没有活性。停车时,催化剂与外界空气隔绝可以维持其活性,反之,则衰减。CuMn2的抗氧冲击性能优于传统的低温变换催化剂。 In this paper, the Cu-Mn and Cu-La-Ce catalysts were prepared by the co-precipitation and ureagelation co-precipitation respectively. The effects of different shutdown conditions on the following activity were investigated. The results showed that the washed sufficient sample designated CuMn2 was the most active, and Cu-La-Ce showed almost no activity. Meanwhile the shutdown conditions had a great influence on its activity. If the catalysts bed was isolated from the outlet atmosphere, the high activity kept...
出处 《化工学报》 EI CAS CSCD 北大核心 2004年第S1期99-102,共4页 CIESC Journal
基金 国家重点基础研究项目(No.G2000026401)
关键词 Cu-Mu低温变换催化剂 停车条件 车载制氢 Cu-Mn catalyst low temperature water gas shift reaction shutdown condition onboard hydrogen production
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参考文献1

  • 1A. Basinska,F. Domka. The influence of alkali metals on the activity of supported ruthenium catalysts for the water-gas shift reaction[J] 1997,Catalysis Letters(1-2):59~61

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