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首页> 外文期刊>Journal of Power Sources >Compact methanol reformer test for fuel-cell powered light-duty vehicles
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Compact methanol reformer test for fuel-cell powered light-duty vehicles

机译:燃料电池动力轻型汽车的紧凑型甲醇重整器测试

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On-board production of hydrogen from methanol based on a steam reformer in connection with the use of low-temperature fuel-cells (PEMFC) is an attractive option as energy conversion unit for light-duty vehicles. A steam reforming process at higher pressures with an external burner offers advantages in comparison to a steam reformer with integrated partial oxidation in terms of total efficiency for electricity production. The main aim of a common project carried out by the Forschungszentrum Juelich (FZJ), Haldor Topsoe A/S (HTAS) and Siemens AG is to design, to construct and to test a steam reformer reactor concept (HTAS) with external catalytic burner (FZJ) as heat source as well as catalysts for heterogeneously catalyzed hydrogen production (HTAS), concepts for gas treatment (HTAS, FZJ) and a low-temperature fuel cell (Siemens). Based on the experimental results obtained so far concerning methanol reformers, catalytic burners and gas conditioning units, our report describes the total system, a test unit and preliminary test results related to a hydrogen production capacity of 50 kW (LHV) and dynamic operating conditions. This hydrogen production system is aimed at reducing the specific weight ( < 2 kg/kW_(th) or 4 kg/kW_(el)) combined with high efficiency for net electricity generation from methanol (about 50%) and low specific emissions. The application of Pd-membranes as gas cleaning unit fulfill the requirements with high hydrogen permeability and low cost of the noble metal.
机译:基于蒸汽重整器的甲醇制氢与低温燃料电池(PEMFC)的车载生产是一种有吸引力的选择,作为轻型车辆的能量转换装置。与具有集成的部分氧化的蒸汽重整器相比,使用外部燃烧器的高压蒸汽重整过程在发电总效率方面具有优势。由Forschungszentrum Juelich(FZJ),Haldor Topsoe A / S(HTAS)和Siemens AG共同执行的共同项目的主要目的是设计,建造和测试带有外部催化燃烧器的蒸汽重整器概念(HTAS)( FZJ)作为热源以及多相催化制氢(HTAS)的催化剂,气体处理(HTAS,FZJ)和低温燃料电池(Siemens)的概念。基于迄今为止获得的有关甲醇重整器,催化燃烧器和气体调节装置的实验结果,我们的报告描述了整个系统,测试装置以及与50 kW(LHV)氢气生产能力和动态运行条件有关的初步测试结果。该制氢系统旨在降低比重(<2 kg / kW_th(th)或4 kg / kW_(el)),并结合高效的甲醇净发电效率(约50%)和低比排放。钯膜作为气体净化装置的应用满足了高氢渗透性和贵金属成本低的要求。

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