THE

TECNOLOGIAS

PRODUÇÃO DE ENERGIA ELÉTRICA

PROTÓTIPO DE GERADOR ELÉTRICO MOVIDO A BIOGÁS SECO
Temperatura tipica di funzionamento 700-800 °C
References
Insights on a Ruddlesden-Popper phase as an active layer for a solid oxide fuel cell fed with dry biogas
Vecino-Mantilla, S., Zignani, S.C., Vannier, R.-N., Aricò, A.S., Lo Faro, M.
Renewable Energy, 2022, 192, pp. 784–792
Insights on the electrochemical performance of indirect internal reforming of biogas into a solid oxide fuel cell
Santoro, M., Di Bartolomeo, E., Luisetto, I., …Zignani, S.C., Lo Faro, M.
Electrochimica Acta, 2022, 409, 139940
Thermoelectric characterization of an intermediate temperature solid oxide fuel cell system directly fed by dry
biogas
De Lorenzo, G., Corigliano, O., Lo Faro, M., …Aricò, A.S., Fragiacomo, P.
Energy Conversion and Management, 2016, 127, pp. 90–102
Biogas-fed solid oxide fuel cell (SOFC) coupled to tri-reforming process: Modelling and simulation
Manenti, F., Pelosato, R., Vallevi, P., …Pino, L., Arico, A.S.
International Journal of Hydrogen Energy, 2015, 40(42), pp. 14640–14650
Performance evaluation of a solid oxide fuel cell coupled to an external biogas tri-reforming process
Lo Faro, M., Vita, A., Pino, L., Aricò, A.S.
Fuel Processing Technology, 2013, 115, pp. 238–245

PRODUÇÃO DE COMBUSTÍVEL VERDE

PROTÓTIPO DE CÉLULA ELETROQUÍMICA PARA PRODUÇÃO DE COMBUSTÍVEL VERDE
Temperatura tipica di funzionamento 525-700 °C
References
he effect of ni-modified lsfco promoting layer on the gas produced through co-electrolysis of CO2 and H2O at intermediate temperatures
Lo Faro, M., Zignani, S.C., Antonucci, V., Aricò, A.S.
Catalysts, 2021, 11(1), pp. 1–13, 56
Enhanced production of methane through the use of a catalytic Ni–Fe pre-layer in a solid oxide co-electrolyser
Lo Faro, M., Oliveira da Silva, W., Barrientos, W.V., …Ticianelli, E.A., Aricò, A.S.
International Journal of Hydrogen Energy, 2020, 45(8), pp. 5134–5142
The role of CuSn alloy in the co-electrolysis of CO2 and H2O through an intermediate temperature solid oxide electrolyser
Lo Faro, M., Oliveira da Silva, W., Valenzuela Barrientos, W., …Antonucci, V., Aricò, A.S.
Journal of Energy Storage, 2020, 27, 100820
New insights on the co-electrolysis of CO2 and H2O through a solid oxide electrolyser operating at intermediate temperatures
Lo Faro, M., Zignani, S.C., Trocino, S., Antonucci, V., Aricò, A.S.
Electrochimica Acta, 2019, 296, pp. 458–464
A simple approach to enhance the direct production of methane through co-electrolysis of CO2 and H2O
Lo Faro, M., Zignani, S.C., Trocino, S., Aricò, A.S.
ECS Transactions, 2019, 91(1), pp. 2343–2350
Production of syngas by solid oxide electrolysis: A case study
Lo Faro, M., Trocino, S., Zignani, S.C., Antonucci, V., Aricò, A.S.
International Journal of Hydrogen Energy, 2017, 42(46), pp. 27859–27865

ARMAZENAMENTO ELÉTRICO

PROTÓTIPO DE CÉLULA ELETROQUÍMICA PARA BATERIA DE FERRO-AR
Temperatura tipica di funzionamento 400-800 °C
References
High performance solid-state iron-air rechargeable ceramic battery operating at intermediate temperatures (500–650 °C)
Trocino, S., Lo Faro, M., Zignani, S.C., Antonucci, V., Aricò, A.S.
Applied Energy, 2019, 233-234, pp. 386–394
Iron–Air Battery Operating at High Temperature
Trocino, S., Zignani, S.C., Lo Faro, M., Antonucci, V., Aricò, A.S.
Energy Technology, 2017, 5(5), pp. 670–680
ITELECTROLAB PROJECT
Questo laboratorio congiunto si basa su un approccio multidisciplinare
che coinvolge chimici, ingegneri dei materiali ed elettrochimici.
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