首页> 外文会议>6th International Symposium on Solid Oxide Fuel Cells (SOFC Ⅵ), 6th, Oct 17-22, 1999, Honolulu, Hawaii >CERIA CATALYST FOR THE INTERNAL REFORMING OF BIOGAS IN A SMALL TUBULAR SOLID OXIDE FUEL CELL SYSTEM
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CERIA CATALYST FOR THE INTERNAL REFORMING OF BIOGAS IN A SMALL TUBULAR SOLID OXIDE FUEL CELL SYSTEM

机译:Ceria催化剂用于小管形固体氧化物燃料电池系统中生物气的内部重整

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摘要

A perennial problem with carbon based fuels such as methane in SOFC's is that of carbon deposition or 'coking up'. Biogas; a complex and variable mixture of methane, carbon dioxide and other gases; is a high carbon content fuel and so is no exception to this general rule. In this paper, ceria is shown to be an effective catalyst preventing carbon deposition within a solid oxide fuel cell system powered by air reformed biogas. Analysis of the exhaust gases was performed by gas chromatography. This showed that addition of ceria to the anode increased reforming activity at the operating temperatures of the cells with a higher conversion rate of methane to hydrogen and carbon monoxide than for an undoped anode. The addition of ceria to the anode lessens power fluctuations and greatly increases the length of time that a cell can run before coking up. Further experiments are testing the longer term performance.
机译:SOFC中的甲烷等碳基燃料常年存在的问题是碳沉积或“结焦”。沼气甲烷,二氧化碳和其他气体的复杂多样的混合物;是高碳含量的燃料,因此该一般规则也不例外。在本文中,氧化铈被证明是一种有效的催化剂,可防止碳在空气重整沼气驱动的固体氧化物燃料电池系统中沉积。废气的分析通过气相色谱法进行。这表明,向阳极添加二氧化铈在电池的工作温度下提高了重整活性,与未掺杂的阳极相比,甲烷向氢气和一氧化碳的转化率更高。向阳极中添加二氧化铈可减少功率波动,并大大增加电池在结焦之前可以运行的时间。进一步的实验正在测试长期性能。

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