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288 工程科学学报,第42卷,第3期 [27]Nirasawa H.Current status of national SOFC Projects in Japan. [39]Barrett S.AMI demos UGV power pod on iRobot PackBot.Fuel ECS Trans,2017,78(1片:33 Cells Bull,2009,2009(11:4 [28]Blum L,Meulenberg WA,Nabielek H,et al.Worldwide SOFC [40]Kachman D.Adaptive materials demonstrates fuel cell success in technology overview and benchmark.Int J Appl Ceram Technol, commercial markets.Fuel Cells Bull,2013,2013(12):12 2005,2(6):482 [41]Tallgren J,Himanen O,Noponen M.Experimental [29]EG&G Technical Services,Inc.Fuel Cell Handbook,2004:1 characterization of low temperature solid oxide cell stack.ECS [30]Vora S D.SECA program overview and status.ECS Trans,2013, Trans,2017,78(1):3103 57(1):11 [42]Barrett S,Elcogen,Convion supply SOFC CHP systems to [31]Christiansen N,Primdahl S,Wandel M,et al.Status of the solid business district smart grid project in Finland.Fuel Cells Bull, oxide fuel cell development at topsoe fuel cell A/S and DTU 2018,2018(2)1 energy conversion.ECS Trans,2013,57(1):43 [43]Blennow P,Hjelm J,Klemenso T,et al.Manufacturing and [32]Halinen M,Saarinen J,Noponen M,et al.Experimental analysis characterization of metal-supported solid oxide fuel cells.Power on performance and durability of SOFC demonstration unit.Fuel Sore3,2011,196(17):7117 Cells,2010,10(3):440 [44]Barrett S,Ceres Power,Weichai finalise strategic collaboration,JV [33]Nakanishi A,Hattori M,Sakaki Y,et al.Development of MOLB deal.Fuel Cells Bull,2019,2019(1):11 type SOFC.ECS Proc Vol,2003,2003:53 [45]Barrett S,Ceres,Weichai Power develop first range-extender bus [34]Carter J D,Cruse TA,Bae J M,et al.Bipolar plate-supported solid prototype.Fuel Cells Bull,2019,2019(10):4 oxide fuel cells for auxiliary power units//2002 MRS Fall Meeting. [46]Leah R T,Bone A,Selcuk A,et al.Latest results and Boston,2003:545 commercialization of the CERES power Steelcell technology [35]Visco S J,Jacobson C P,Villareal I,et al.Development of low- platform.ECS Trans,2019,91(1):51 cost alloy supported SOFCs.ECS Proc Vol,2003,2003:1040 [47]Barrett S,Solid power produces 1000th BlueGEN SOFC [36]Leah RT.Bone A.Hammer E,et al.Development progress on the generator.Fuel Cells Bull,2018,2018(1):6 ceres power steel cell technology platform:further progress [48]Barrett S.Solid power agrees German distribution with Bosch's towards commercialization.ECS Trans,2017,78(1):87 Buderus.Fuel Cells Bull,2018,2018(7):12 [37]Veyo S E,Shockling LA.Dederer JT,et al.Tubular solid oxide [49]Strohbach T,Mittmann F,Walter C,et al.Sunfire industrial SOC fuel cell/gas turbine hybrid cyclepower systems:status.Eng Gas stacks and modules.ECS Trans,2015,68(1):125 Turbines Power,2002,124(4):845 [50]Zhu Y,Du C,Wang S,et al.Research progress on the stability of [38]Rechberger J,Kaupert A.Hagerskans J,et al.Demonstration of the perovskite solar cells.Chin J Eng,2020,42(1):16 first European SOFC APU on a heavy duty truck.Transp Res (朱或,杜晨,王硕,等.钙钛矿太阳能电池稳定性研究进展.工 Procedia,.2016,14:3676 程科学学报,2020,42(1):16)Nirasawa  H.  Current  status  of  national  SOFC  Projects  in  Japan. ECS Trans, 2017, 78(1): 33 [27] Blum  L,  Meulenberg  W  A,  Nabielek  H,  et  al.  Worldwide  SOFC technology  overview  and  benchmark. Int J Appl Ceram Technol, 2005, 2(6): 482 [28] [29] EG&G Technical Services, Inc. Fuel Cell Handbook, 2004: 1 Vora S D. SECA program overview and status. ECS Trans, 2013, 57(1): 11 [30] Christiansen  N,  Primdahl  S,  Wandel  M,  et  al.  Status  of  the  solid oxide  fuel  cell  development  at  topsoe  fuel  cell  A/S  and  DTU energy conversion. ECS Trans, 2013, 57(1): 43 [31] Halinen  M,  Saarinen  J,  Noponen  M,  et  al.  Experimental  analysis on performance and durability of SOFC demonstration unit. Fuel Cells, 2010, 10(3): 440 [32] Nakanishi A, Hattori M, Sakaki Y, et al. Development of MOLB type SOFC. ECS Proc Vol, 2003, 2003: 53 [33] Carter J D, Cruse T A, Bae J M, et al. Bipolar plate-supported solid oxide fuel cells for auxiliary power units//2002 MRS Fall Meeting. Boston, 2003: 545 [34] Visco S J, Jacobson C P, Villareal I, et al. Development of low￾cost alloy supported SOFCs. ECS Proc Vol, 2003, 2003: 1040 [35] Leah R T, Bone A, Hammer E, et al. Development progress on the ceres  power  steel  cell  technology  platform:  further  progress towards commercialization. ECS Trans, 2017, 78(1): 87 [36] Veyo S E, Shockling L A, Dederer J T, et al. Tubular solid oxide fuel cell/gas turbine hybrid cyclepower systems: status. J Eng Gas Turbines Power, 2002, 124(4): 845 [37] Rechberger J, Kaupert A, Hagerskans J, et al. Demonstration of the first  European  SOFC  APU  on  a  heavy  duty  truck. Transp Res Procedia, 2016, 14: 3676 [38] Barrett S. AMI demos UGV power pod on iRobot PackBot. Fuel Cells Bull, 2009, 2009(11): 4 [39] Kachman D. Adaptive materials demonstrates fuel cell success in commercial markets. Fuel Cells Bull, 2013, 2013(12): 12 [40] Tallgren  J,  Himanen  O,  Noponen  M.  Experimental characterization  of  low  temperature  solid  oxide  cell  stack. ECS Trans, 2017, 78(1): 3103 [41] Barrett  S,  Elcogen,  Convion  supply  SOFC  CHP  systems  to business  district  smart  grid  project  in  Finland. Fuel Cells Bull, 2018, 2018(2): 1 [42] Blennow  P,  Hjelm  J,  Klemensø  T,  et  al.  Manufacturing  and characterization of metal-supported solid oxide fuel cells. J Power Sources, 2011, 196(17): 7117 [43] Barrett S, Ceres Power, Weichai finalise strategic collaboration, JV deal. Fuel Cells Bull, 2019, 2019(1): 11 [44] Barrett S, Ceres, Weichai Power develop first range-extender bus prototype. Fuel Cells Bull, 2019, 2019(10): 4 [45] Leah  R  T,  Bone  A,  Selcuk  A,  et  al.  Latest  results  and commercialization  of  the  CERES  power  Steelcell  technology platform. ECS Trans, 2019, 91(1): 51 [46] Barrett  S,  Solid  power  produces  1000th  BlueGEN  SOFC generator. Fuel Cells Bull, 2018, 2018(1): 6 [47] Barrett  S,  Solid  power  agrees  German  distribution  with  Bosch's Buderus. Fuel Cells Bull, 2018, 2018(7): 12 [48] Strohbach T, Mittmann F, Walter C, et al. Sunfire industrial SOC stacks and modules. ECS Trans, 2015, 68(1): 125 [49] Zhu Y, Du C, Wang S, et al. Research progress on the stability of perovskite solar cells. Chin J Eng, 2020, 42(1): 16 (朱彧, 杜晨, 王硕, 等. 钙钛矿太阳能电池稳定性研究进展. 工 程科学学报, 2020, 42(1):16) [50] · 288 · 工程科学学报,第 42 卷,第 3 期
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