4.6 Article

Development of an Autothermal Formate-Based Hydrogen Generator: From Optimization of Formate Dehydrogenation Conditions to Thermal Integration with Fuel Cells

期刊

ACS SUSTAINABLE CHEMISTRY & ENGINEERING
卷 8, 期 26, 页码 9846-9856

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acssuschemeng.0c02775

关键词

formate dehydrogenation; optimization of reaction condition; palladium nanocatalyst; heat integrated dehydrogenation system; on-site power generation

资金

  1. Technology Development Program to Solve Climate Changes [2015M1A2A2074688]
  2. Hydrogen Energy Innovation Technology Development Program of the National Research Foundation of Korea (NRF) - Korean government (Ministry of Science and ICT) [2019M3E6A1064608]
  3. KIST [2E30201]

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Formate received significant attention for storing H-2 in chemical bonds using the concept of H-2 carriers. In this report, hydrogen generation from formate was optimized systematically by varying reaction variables. Initial mass activity with a turnover frequency of 3200 mol(H2) mol(Pd)(-1) h(-1) and 92% H-2 yield were obtained in sodium formate (7 M 2.0 mL) dehydrogenation over Pd(3 wt %)/C at 80 degrees C. Influence of formate cations (Na, K, and NH4) on dehydrogenation was also elucidated, presenting that the fastest initial reaction kinetics was achieved with ammonium formate, whereas the highest H-2 yield was obtained with potassium formate (PF) in multiple catalyst recycle tests. Finally, an on-site power generation system was integrated, where a proton exchange membrane fuel cell (PEMFC) was operated in conjunction with H-2 produced from the custom developed semibatch dehydrogenation reactors. The system operation was demonstrated with continuous feeding of PF to generate H-2 and power on demand without an external heat source by utilizing waste heat produced from the PEMFC in a highly efficient manner.

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