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公开(公告)号:US20160233535A1
公开(公告)日:2016-08-11
申请号:US14672315
申请日:2015-03-30
发明人: Robert Leah , Adam Bone , Carl Matthews , Mike Lankin , Mahfujur Rahman
CPC分类号: H01M8/126 , B32B18/00 , C04B35/50 , C04B35/6261 , C04B2235/3224 , C04B2235/3229 , C04B2235/3277 , C04B2235/3281 , C04B2235/442 , C04B2235/443 , C04B2235/528 , C04B2235/5409 , C04B2235/5436 , C04B2235/5445 , C04B2235/5472 , C04B2235/5481 , C04B2235/608 , C04B2235/6562 , C04B2235/6567 , C04B2235/77 , C04B2237/34 , H01M8/1213 , H01M8/1226 , H01M8/24 , H01M2008/1293 , H01M2300/0074 , H01M2300/0094 , Y02E60/525 , Y02P70/56
摘要: A process for forming an electrolyte for a metal-supported solid-oxide fuel cell, the process comprising:a. combining a doped-ceria powder with a sintering aid and solvent to form a slurry; b. applying the slurry to an anode layer; c. drying to form a green electrolyte; and d. firing the green electrolyte to form a sintered electrolyte; wherein the slurry in step b. comprises doped-ceria powder with a physical property selected from bimodal particle size distribution, a BET surface area in the range 15-40 m2/g, a spherical morphology, or combinations thereof together with an electrolyte obtained by the process, a fuel cell and fuel cell stack, comprising the electrolyte, and the use of the fuel in the generation of electrical energy.
摘要翻译: 一种用于形成用于金属负载的固体氧化物燃料电池的电解质的方法,所述方法包括:a。 将掺杂二氧化铈粉末与烧结助剂和溶剂组合以形成浆料; b。 将浆料施加到阳极层; C。 干燥形成绿色电解液; 和d。 焙烧绿色电解液以形成烧结电解质; 其中步骤b中的浆料。 包括具有选自双峰粒度分布,15-40m 2 / g范围内的BET表面积,球形形态或其组合的物理性质的掺杂二氧化铈粉末以及通过该方法获得的电解质,燃料电池和 燃料电池堆,包括电解质,以及在产生电能时使用燃料。
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公开(公告)号:US20160233534A1
公开(公告)日:2016-08-11
申请号:US14672285
申请日:2015-03-30
发明人: Robert Leah , Adam Bone , Carl Matthews , Mike Lankin , Mahfujur Rahman
CPC分类号: H01M8/126 , H01M8/1016 , H01M8/1213 , H01M2008/1293 , H01M2300/0074 , H01M2300/0094 , Y02E60/525 , Y02P70/56
摘要: A process for forming an electrolyte for a metal-supported solid-oxide fuel cell, the process comprising: a. applying a doped-ceria green electrolyte to an anode layer; b. removing any solvents and organic matter from the green electrolyte; c. pressing the green electrolyte to increase green electrolyte density; and d. heating the green electrolyte at a rate of temperature increase whilst in the temperature range 800° C.-1000° C. of in the range 5-20° C./minute to form the electrolyte, together with an electrolyte obtained by the process, a fuel cell and fuel cell stack, comprising the electrolyte, and the use of the fuel in the generation of electrical energy.
摘要翻译: 一种用于形成用于金属负载的固体氧化物燃料电池的电解质的方法,所述方法包括:a。 将掺杂二氧化铈绿色电解质施加到阳极层; b。 从绿色电解液中除去任何溶剂和有机物质; C。 按压绿色电解液以增加绿色电解质密度; 和d。 以800℃-1000℃的温度范围以5-20℃/分钟的速度加热绿色电解质以形成电解质,以及通过该方法获得的电解质, 包括电解质的燃料电池和燃料电池堆,以及燃料在产生电能中的使用。
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公开(公告)号:US10978727B2
公开(公告)日:2021-04-13
申请号:US14672285
申请日:2015-03-30
发明人: Robert Leah , Adam Bone , Carl Matthews , Mike Lankin , Mahfujur Rahman , Ahmet Selcuk
IPC分类号: H01M8/12 , H01M8/126 , H01M8/1213 , H01M8/1016 , H01M8/124
摘要: A process for forming an electrolyte for a metal-supported solid-oxide fuel cell, the process comprising: a. applying a doped-ceria green electrolyte to an anode layer; b. removing any solvents and organic matter from the green electrolyte; c. pressing the green electrolyte to increase green electrolyte density; and d. heating the green electrolyte at a rate of temperature increase whilst in the temperature range 800° C.-1000° C. of in the range 5-20° C./minute to form the electrolyte, together with an electrolyte obtained by the process, a fuel cell and fuel cell stack, comprising the electrolyte, and the use of the fuel in the generation of electrical energy.
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公开(公告)号:US10897056B2
公开(公告)日:2021-01-19
申请号:US14672315
申请日:2015-03-30
发明人: Robert Leah , Adam Bone , Carl Matthews , Mike Lankin , Mahfujur Rahman
IPC分类号: H01M8/12 , H01M8/126 , H01M8/1213 , C04B35/50 , B32B18/00 , C04B35/626 , H01M8/24 , H01M8/1226 , H01M8/124
摘要: A process for forming an electrolyte for a metal-supported solid-oxide fuel cell, the process comprising:
a. combining a doped-ceria powder with a sintering aid and solvent to form a slurry;
b. applying the slurry to an anode layer;
c. drying to form a green electrolyte; and
d. firing the green electrolyte to form a sintered electrolyte;
wherein the slurry in step b. comprises doped-ceria powder with a physical property selected from bimodal particle size distribution, a BET surface area in the range 15-40 m2/g, a spherical morphology, or combinations thereof together with an electrolyte obtained by the process, a fuel cell and fuel cell stack, comprising the electrolyte, and the use of the fuel in the generation of electrical energy.
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