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Protonic Ceramic Electrochemical Cells for Power Generation and Renewable Fuels Production

亚博棋牌ZHUJIANGREN: Ryan P. O'Hayre JIAOSHOU

SHIJIAN: 2019NIAN11YUE19RI(XINGQIER)15: 00

亚博棋牌DIDIAN: CAILIAOHUAXUEGONGCHENGGUOJIAZHONGDIANSHIYANSHIDALOUSILOUZHONGTINGBAOGAOTING

ZHUJIANGRENJIESHAO:

Ryan P. O'HayreJIAOSHOUSHIMEIGUOKELUOLADUOKUANGYEDAXUE(Colorado School of Mines)YEJINYUCAILIAOGONGCHENGXIJIAOSHOU,TABOSHIBIYEYUSITANFUDAXUECAILIAOKEXUEYUGONGCHENG。TADEZHUYAOYANJIULINGYUBAOKUO: NENGYUANCAILIAO,RANLIAODIANCHI,ZHIQING,LIZIDAOTI,TOUMINGDAODIANYANGHUAWUDENG。Ryan P. O'HayreJIAOSHOUSHIGUANYURANLIAODIANCHIKEXUEYUJISHUCHANGXIAOJIAOKESHU“Full Cell Fundamentals”DEDIYIZUOZHE。YIFABIAOLUNWENLIANGBAIYUPIAN,BAOKUOscience,nature,nature energy,Energy & Environmental ScienceDENGDUOPIANGAOSHUIPINGLUNWEN,ZHUANLISHUXIANG,YINYONG1wYUCI,hZHISHU47,i10ZHISHU108。CENGHUORoss Cofin-PurdyJIANG(MEIGUOTAOCIXUEHUI),YANJIUZHUOYUEJIANG(KELUOLADUOKUANGYEXUEYUAN),QINGNIANKEXUEJIAJIANGRUWEI(GUOJIGUTAILIZIXUEHUI)DENGDUOXIANGJIANGXIANG。

ZHUYAONEIRONG:

In this presentation, we will discuss our recent progress in developing electrochemical energy conversion devices based on these materials, including remarkably high-performance H2 and hydrocarbon-fueled PCFCs; exceptionally efficient (>97% LHV efficiency) PCECs for H2 production and for the co-conversion of steam and carbon dioxide to renewable methane; H2/H2O-based RePCECs with >75% round-trip efficiency (cell-level) for seasonal energy storage, and a reversible ammonia fuel cell for ammonia synthesis/power production.

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