Conceptual design of an autonomous catalytic generator based on bioethanol steam reforming over the ferrite catalyst

L.Y. Dolgikh, A.A. Zhokh, A.I. Trypolskyi, I.L. Stolyarchuk, Y.I. Pyatnitsky, P.E. Strizhak
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Abstract

The conceptual design of a portable autonomous catalytic hydrogen generator is introduced. The generator is based on the bioethanol steam reforming over the developed ferrite catalyst. The generator admits the utilization of thermal energy of the reaction mixture for vaporization and heating the input water-alcohol mixture. Moreover, the generator is characterized by a simple single-stage design without a stage for hydrogen purification. The generator is capable to produce 1 kW/h of electricity with 0.63 kg/h water/alcohol mixture (50% ethanol) consumption. The energy conversion efficiency of the developed generator is 44%. The proposed hydrogen generator is suitable for various applications related to on-site hydrogen production.

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基于生物乙醇蒸汽在铁氧体催化剂上重整的自主催化发生器的概念设计
介绍了一种便携式自主催化制氢装置的概念设计。该发生器是基于生物乙醇蒸汽重整在开发的铁氧体催化剂。该发生器允许利用反应混合物的热能进行汽化和加热输入的水-酒精混合物。此外,该发生器的特点是简单的单级设计,没有氢气净化级。该发电机能够以0.63 kg/h的水/酒精混合物(50%乙醇)消耗量产生1 kW/h的电力。研制的发电机能量转换效率为44%。所提出的氢气发生器适用于与现场制氢有关的各种应用。
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Erratum to Green approach to synthesize functional carbon nanoparticles at low temperature [Sustainable Chemistry for Climate Action (2022) 100002] Erratum to Developments in the investigation of nitrogen and oxygen stable isotopes in atmospheric nitrate [Sustainable Chemistry for Climate Action (2022) 100003] Erratum to “Conversion of furfuryl alcohol into alkyl¿levulinates using solid acid catalysts” [Sustainable Chemistry for Climate Action (2022) 100004] Advances and challenges in pretreatment technologies for bioethanol production: A comprehensive review Pretreatment of lignocellulosic biomass waste mixtures using a low-cost ionic liquid
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