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DOI | 10.2172/460336 |
报告编号 | CONF-961107--Absts. |
来源ID | OSTI_ID: 460336 |
Techno-economical analysis of an integrated hydrogen generator - fuel cell system | |
Recupero, V.; Maggio, G.; Di Leonardo, R.; Lagana, M. [Istituto CNR-TAE, Lucia, Messina (Italy)] | |
英文摘要 | As well known, the most acknowledged process for generation of hydrogen for fuel cells is based upon the steam reforming of methane or natural gas (SRM). The reaction is endothermic ({Delta}H{sub 298}= 206 kJ/mole) and high H{sub 2}O/CH{sub 4} ratios are required in order to limit coke formation at T higher than 1000 K. Moreover, a common practice indicates that the process fuel economy is highly sensitive to proper heat fluxes, reactor design (tubular type) and to operational conditions. Efficient heat recovery can be accomplished only on large scale units (> 40,000 Nm{sup 3}/h), far from the range of interest for {open_quotes}on-site{close_quotes} fuel cells. Even if, to fit the needs of the fuel cell technology, medium sized external reforming units (50-200 Nm{sup 3} H{sub 2}/h) have been developed and/or planned for integration with both the first and the second generation fuel cells; amelioration in their heat recovery and efficiency is at the expense of an increased sophistication and therefore an higher per unit costs. In all cases, SRM requires an extra {open_quotes}fuel{close_quotes} supply (to substain the, endothermicity of the reaction) in addition to stoichiometric requirements ({open_quotes}feed{close_quotes} gas). An alternative would be the partial oxidation of methane, which is not energy intensive. |
出版年 | 1996 |
报告类型 | Technical Report |
语种 | 英语 |
国家 | 美国 |
来源学科分类 | 30 DIRECT ENERGY CONVERSION ; 08 HYDROGEN FUEL ; HYDROGEN FUEL CELLS ; THERMODYNAMICS ; HYDROGEN PRODUCTION ; ECONOMIC ANALYSIS ; METHANE ; PARTIAL OXIDATION PROCESSES ; EFFICIENCY ; STEAM REFORMER PROCESSES ; OXYGEN |
URL | http://www.osti.gov/scitech/servlets/purl/460336 |
资源类型 | 科技报告 |
条目标识符 | http://119.78.100.177/qdio/handle/2XILL650/267012 |
推荐引用方式 GB/T 7714 | Recupero, V.,Maggio, G.,Di Leonardo, R.,et al. Techno-economical analysis of an integrated hydrogen generator - fuel cell system,1996. |
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