IDAHO NATIONAL LABORATORY EXPERIMENTAL RESEARCH IN HIGH TEMPERATURE ELECTROLYSIS FOR HYDROGEN AND SYNGAS PRODUCTION

被引:0
作者
Stoots, Carl M. [1 ]
O'Brien, James E. [1 ]
Herring, J. Stephen [1 ]
Condie, Keith G. [1 ]
Hartvigsen, Joseph J.
机构
[1] Idaho Natl Lab, Idaho Falls, ID 83415 USA
来源
PROCEEDINGS OF THE 4TH INTERNATIONAL TOPICAL MEETING ON HIGH TEMPERATURE REACTOR TECHNOLOGY - 2008, VOL 2 | 2009年
关键词
D O I
暂无
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
The Idaho National Laboratory (Idaho Falls, Idaho, USA), in collaboration with Ceramatec, Inc. (Salt Lake City, Utah, USA), is actively researching the application of solid oxide fuel cell technology as electrolyzers for large scale hydrogen and syngas production. This technology relies upon electricity and high temperature heat to chemically reduce a steam or steam / CO(2) feedstock. Single button cell tests, multi-cell stack, as well as multi-stack testing has been conducted. Stack testing used 10 x 10 cm cells (8 x 8 cm active area) supplied by Ceramatec and ranged from 10 cell short stacks to 240 cell modules. Tests were conducted either in a bench-scale test apparatus or in a newly developed 5 kW Integrated Laboratory Scale (ILS) test facility. Gas composition, operating voltage, and operating temperature were varied during testing. The tests were heavily instrumented, and outlet gas compositions were monitored with a gas chromatograph. The ILS facility is currently being expanded to similar to 15 kW testing capacity (H(2) production rate based upon lower heating value).
引用
收藏
页码:497 / 508
页数:12
相关论文
共 50 条
[41]   Hydrogen Production by High Temperature Electrolysis Using Solid Oxide Electrolyzer Cells [J].
Kim, S. D. ;
Yu, J. H. ;
Seo, D. W. ;
Han, I. S. ;
Woo, S. K. .
SOLID OXIDE FUEL CELLS 12 (SOFC XII), 2011, 35 (01) :2957-2960
[42]   Optimisation of metallic interconnects for hydrogen production by high temperature water vapour electrolysis [J].
Ardigo, M. R. ;
Parry, V. ;
Popa, I. ;
Chevalier, S. ;
Chandra-Ambhorn, W. ;
Phakpeetinan, P. ;
Wouters, Y. .
DIFFUSION IN MATERIALS - DIMAT 2011, 2012, 323-325 :239-+
[43]   HIGH TEMPERATURE SUPERCONDUCTIVITY RESEARCH AT ARGONNE NATIONAL LABORATORY. [J].
Fradin, F.Y. .
Physica B: Physics of Condensed Matter & C: Atomic, Molecular and Plasma Physics, Optics, 1987, 148 (1-3) :167-172
[44]   Review on modeling and simulation of high temperature solid oxide electrolysis for hydrogen production [J].
Zhang Y. ;
Zhang C. ;
Sun Z. ;
Du S. ;
Xu D. ;
Qu Z. ;
Chen B. .
Huagong Jinzhan/Chemical Industry and Engineering Progress, 2021, 40 :126-141
[45]   HIGH-TEMPERATURE SUPERCONDUCTIVITY RESEARCH AT ARGONNE NATIONAL LABORATORY [J].
FRADIN, FY .
PHYSICA B & C, 1987, 148 (1-3) :167-172
[46]   Recent 238Pu Production Activities at Idaho National Laboratory [J].
Zillmer, Andrew ;
Green, William ;
Tyler, Craig ;
Gross, Brian ;
Rosvall, Erik ;
Fradeneck, Austen ;
Fishler, Joshua ;
Reeder, David ;
Marlow, Ryan ;
Urban-Klaehn, Jagoda ;
Reichenberger, Michael ;
Hill, Mark ;
Howard, Richard .
NUCLEAR TECHNOLOGY, 2022, 208 (sup1) :S1-S10
[47]   Using the Human Systems Simulation Laboratory at Idaho National Laboratory for Safety Focused Research [J].
Joe, Jeffrey C. ;
Boring, Ronald L. .
ADVANCES IN HUMAN FACTORS IN ENERGY: OIL, GAS, NUCLEAR AND ELECTRIC POWER INDUSTRIES, 2017, 495 :193-201
[48]   Initial phase of Pu-238 production in Idaho National Laboratory [J].
Urban-Klaehn, Jagoda ;
Miller, David ;
Gross, Brian J. ;
Tyler, Craig R. ;
Dwight, Carla C. .
APPLIED RADIATION AND ISOTOPES, 2021, 169
[49]   History of Pu-238 Production Restart Efforts at Idaho National Laboratory and Oak Ridge National Laboratory [J].
Zillmer, Andrew ;
Howard, Richard ;
Chandler, David ;
Parkison, Adam .
IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 2024, 71 (12) :2536-2544
[50]   An Experimental Investigation of Hydrogen Production through Biomass Electrolysis [J].
Umer, Muhammad ;
Brandoni, Caterina ;
Jaffar, Mohammad ;
Hewitt, Neil J. ;
Dunlop, Patrick ;
Zhang, Kai ;
Huang, Ye ;
Zhou, Cunshan ;
Nicholls, David L. .
PROCESSES, 2024, 12 (01)