A Systematic Study on Techno-Economic Evaluation of Hydrogen Production

被引:16
作者
de Abreu, Victor Hugo Souza [1 ]
Pereira, Victoria Goncalves Ferreira [2 ]
Proenca, Lais Ferreira Crispino [3 ]
Toniolo, Fabio Souza [2 ]
Santos, Andrea Souza [1 ]
机构
[1] Univ Fed Rio de Janeiro, Alberto Luiz Coimbra Inst Grad Studies & Res Engn, Technol Ctr, Transportat Engn Program, BR-21941914 Rio De Janeiro, Brazil
[2] Univ Fed Rio de Janeiro, Alberto Luiz Coimbra Inst Grad Studies & Res Engn, Technol Ctr, Chem Engn Program, BR-21941972 Rio De Janeiro, Brazil
[3] Univ Fed Rio de Janeiro, Alberto Luiz Coimbra Inst Grad Studies & Res Engn, Technol Ctr, Elect Engn Program, BR-21941972 Rio De Janeiro, Brazil
关键词
hydrogen production; techno-economic evaluation; clean energy; STEAM-REFORMING PROCESS; LIFE-CYCLE ASSESSMENT; GREEN HYDROGEN; ECONOMIC-FEASIBILITY; ENERGY; FUEL; GASIFICATION; PROSPECTS; CATALYSTS; BIOMASS;
D O I
10.3390/en16186542
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
This paper aims to perform a systematic review, with a bibliometric approach, of the techno-economic evaluation studies of hydrogen production. To achieve this objective, a comprehensive outline of hydrogen production processes from fossil and renewable sources is presented. The results reveal that electrolysis, classified as water splitting, is the most investigated process in the literature since it contributes to a reduction in greenhouse gas emissions and presents other advantages, such as maturity and applicability, energy efficiency, flexibility, and energy storage potential. In addition, the processes of gasification, classified as thermochemical, and steam reforming, classified as catalytic reforming, are worth mentioning. Regarding the biological category, there is a balance between research on photo fermentation and dark fermentation. The literature on the techno-economic evaluation of hydrogen production highlights significant gaps, including a scarcity of comprehensive studies, a lack of emphasis on commercial viability, an absence of sensitivity analysis, and the need for comparative analyses between production technologies.
引用
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页数:23
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共 75 条
[21]  
de Assis T.F., 2022, Carbon Footprint Case Studies. Environmental Footprints and Eco-Design of Products and Processes, P1, DOI [10.1007/978-981-19-7226-3_1, DOI 10.1007/978-981-19-7226-3_1]
[22]  
de Assis T.F., 2022, Sustainable Transport Indicators and Mitigation Actions Applied to the Green Bond Principles
[23]  
de Oliveira R.C., 2022, Panorama Do Hidrogenio No Brasil, P1, DOI [10.38116/td2787, DOI 10.38116/TD2787]
[24]   Techno-economic assessment of hydrogen production from seawater [J].
Dokhani, Sepanta ;
Assadi, Mohsen ;
Pollet, Bruno G. .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2023, 48 (26) :9592-9608
[25]   Analysis of photon-driven solar-to-hydrogen production methods in the Netherlands [J].
Frowijn, Laurens S. F. ;
Sark, Wilfried G. J. H. M. van .
SUSTAINABLE ENERGY TECHNOLOGIES AND ASSESSMENTS, 2021, 48
[26]   How does techno-economic analysis and lifecycle assessment help in commercializing the biohydrogen supply chain? [J].
Ganeshan, Prabakaran ;
Vigneswaran, V. S. ;
Gowd, Sarath C. ;
Kondusamy, Dhamodharan ;
Kumar, C. Sanjay ;
Krishnamoorthy, Nageshwari ;
Kumar, Deepak ;
Juneja, Ankita ;
Paramasivan, Balasubramanian ;
Raju, Nithin N. ;
Rajendran, Karthik ;
Pugazhendhi, Arivalagan .
FUEL, 2023, 341
[27]   Cost benefits of optimizing hydrogen storage and methanation capacities for Power-to-Gas plants in dynamic operation [J].
Gorre, Jachin ;
Ruoss, Fabian ;
Karjunen, Hannu ;
Schaffert, Johannes ;
Tynjala, Tero .
APPLIED ENERGY, 2020, 257
[28]   Life Cycle Assessment and Life Cycle Costing of unitized regenerative fuel cell: A systematic review [J].
Gulotta, Teresa Maria ;
Salomone, Roberta ;
Lanuzza, Francesco ;
Saija, Giuseppe ;
Mondello, Giovanni ;
Ioppolo, Giuseppe .
ENVIRONMENTAL IMPACT ASSESSMENT REVIEW, 2022, 92
[29]   Techno-economic assessment of process integration models for boosting hydrogen production potential from coal and natural gas feedstocks [J].
Hamid, Usman ;
Rauf, Ali ;
Ahmed, Usama ;
Shah, Md. Selim Arif Sher ;
Ahmad, Nabeel .
FUEL, 2020, 266
[30]   Hydrogen production from water industries for a circular economy [J].
Kabir, Mohammad Mahbub ;
Akter, Mst. Mahmoda ;
Huang, Zhenguo ;
Tijing, Leonard ;
Shon, Ho Kyong .
DESALINATION, 2023, 554