A System Integration Analysis of a Molten Carbonate Electrolysis Cell as an Off-Gas Recovery System in a Steam-Reforming Process of an Oil Refinery

被引:16
作者
Ferrario, Andrea Monforti [1 ,2 ]
Santoni, Francesca [1 ]
Della Pietra, Massimiliano [1 ]
Rossi, Mose [2 ]
Piacente, Nicola [2 ]
Comodi, Gabriele [2 ]
Simonetti, Luca [1 ]
机构
[1] ENEA CR Casaccia, Lab Energy Storage Battery & Hydrogen Technol, Dept Energy Technol & Renewable Sources, Rome, Italy
[2] Marche Poytech Univ, Dept Ind Engn & Math Sci, Ancona, Italy
关键词
Molten Carbonate Electrolysis; MCEC; system integration; hydrogen production; electrochemical systems; oil refinery industry; waste recovery; carbon capture; CO2; CAPTURE; FUEL-CELLS; THE-ART; PERFORMANCE; ENERGY; HYDROGEN; TURBINE;
D O I
10.3389/fenrg.2021.655915
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Technologies capable of efficiently exploiting unavoidable CO2 streams, have to be deeply investigated and deployed during the transition phase to achieve long-term climate neutrality targets. Among the technologies, Molten Carbonate Cells (MCC) Operating in Electrolysis Mode (MCEC) represents a promising facility to valorize CO2-rich waste streams, which are typically available in industrial plants, by their conversion into a high-value H-2/CO syngas. These gaseous products can be reintegrated in a plant or reused in different applications. This study analyzes the integration of a system of the MCEC unit under different operating conditions in terms of composition, current density, and the utilization of fuels in a steam-reforming process of an Italian oil refinery via a mixed experimental-simulative approach. The aim of the current study is to assess the improvement in the overall product yield and further impacts of the MCEC unit on the plant efficiency. The results have shown that it is possible to obtain an electrochemical Specific Energy Consumption for the production of H-2 of 3.24 kWh/NmH23 using the MCEC, whereby the possible integration of a 1-MWe module with a reformer of the proposed plant not only increases the hydrogen yield but also decreases the amount of fuel needed to assist the reforming reaction and separates a CO2 stream after additional purification via an oxy-fuel combustor, consequently determining lower greenhouse gases emissions.
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页数:19
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