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Direct steam reforming of diesel and diesel–biodiesel blends for distributed hydrogen generation

机译:柴油和柴油-生物柴油混合物的直接蒸汽重整,用于分布式制氢

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摘要

Distributed hydrogen generation from liquid fuels has attracted increasing attention in the past years. Petroleum-derived fuels with already existing infrastructure benefit from high volumetric and gravimetric energy densities, making them an interesting option for cost competitive decentralized hydrogen production.\udIn the present study, direct steam reforming of diesel and diesel blends (7 vol.% biodiesel) is investigated at various operating conditions using a proprietary precious metal catalyst. The experimental results show a detrimental effect of low catalyst inlet temperatures and high feed mass flow rates on catalyst activity. Moreover, tests with a desulfurized dieselebiodiesel blend indicate improved long term performance of the precious metal catalyst. By using deeply desulfurized diesel (1.6 ppmw sulfur), applying a high catalyst inlet temperature (>800 °C), a high steam-to-carbon ratio (S/C = 5) and a low feed mass flow per open area of catalyst (11 g/h cm2), a stable product gas composition close to chemical equilibrium was achieved over 100 h on stream. Catalyst deactivation was not observed.
机译:在过去的几年中,液体燃料产生的分布式氢气已引起越来越多的关注。基础设施已经存在的石油衍生燃料得益于高体积和重量能量密度,使其成为具有成本竞争力的分散制氢的有趣选择。\ ud在本研究中,直接蒸汽重整柴油和柴油混合物(7体积%生物柴油)使用专有的贵金属催化剂在各种操作条件下进行了研究。实验结果表明低催化剂入口温度和高进料质量流速对催化剂活性有不利影响。此外,用脱硫的柴油生物柴油混合物进行的测试表明,贵金属催化剂的长期性能得到改善。通过使用深度脱硫的柴油(1.6 ppmw的硫),施加较高的催化剂入口温度(> 800°C),较高的蒸汽碳比(S / C = 5)和较低的催化剂每单位开放面积进料质量流量(11 g / h cm2),在运行100 h内获得接近化学平衡的稳定产物气体组成。没有观察到催化剂失活。

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