首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >CARBON DIOXIDE ZERO-EMISSION HYDROGEN CARRIER SYSTEM FOR FUEL CELL VEHICLE
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CARBON DIOXIDE ZERO-EMISSION HYDROGEN CARRIER SYSTEM FOR FUEL CELL VEHICLE

机译:燃料电池用二氧化碳零排放氢载体系统

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Fuel cell (FC) offers the possibility of expanding new vehicle market.One of the key technologies that will make the widespread use of FCs possible is efficient and safety hydrogen supply system.The possibility of a hydrogen carrier system for FC vehicles,which utilized chemical reactants and capable to supply hydrogen safety with no carbon dioxide emission,was discussed in this study.The system uses a portable thermally regenerative fuel reformer of carbon dioxide fixation type.The reactivity of metal oxide to carbon dioxide was used for the carbon dioxide fixation,hydrogen purification and also for heat source of fuel reforming.In the experimental study,calcium oxide was used as the first candidate for carbon dioxide fixation and methane was chosen as a candidate reactant for steam reforming.Fuel reforming,carbon dioxide fixation and pure-hydrogen production were examined by a laboratory scale packed-bed reactor.High-purity hydrogen production under mild operation conditions was demonstrated.The fixed carbon dioxide can be decarbonated thermally by consuming high-temperature heat source.Nuclear power,unstable energy sources such as renewable energy,surplus industrial process heat and so forth are applicable on the system.The contribution of nuclear power and other thermal energy sources on the zero-emission hydrogen career system was evaluated based on the experimental results.The reactor size was more compact than conventional hydrogen career systems.Because the reforming system supplies hydrogen safety on-board to a vehicle FC and the reformer is thermally regenerative,the proposed system was expected to develop new hydrogen market for FC vehicle.
机译:燃料电池(FC)提供了扩展新车市场的可能性。使FC广泛使用成为可能的关键技术之一是高效安全的氢气供应系统。FC车用化学物质制氢系统的可能性本研究讨论了一种能够在不释放二氧化碳的情况下提供氢气安全性的反应物的系统。该系统使用了一种二氧化碳固定型的便携式热再生燃料重整器。金属氧化物对二氧化碳的反应性用于二氧化碳的固定,在实验研究中,氧化钙被用作二氧化碳固定的第一个候选物,甲烷被选作蒸汽重整的候选反应物。燃料重整,二氧化碳固定和纯氢实验室规模的填充床反应器检查了生产过程。演示了在温和操作条件下的高纯度氢气生产固定的二氧化碳可以通过消耗高温热源进行热脱碳。核能,不稳定的能源(例如可再生能源),工业过程余热等都可用于该系统。核能和其他热能的贡献根据实验结果评估了零排放氢气作业系统上的能源。反应堆的尺寸比常规氢气作业系统更紧凑。由于重整系统可为车辆FC提供车载氢气安全性,并且重整器可进行热再生该提议的系统有望为FC车辆开发新的氢气市场。

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