Green Hydrogen Production through Ammonia Decomposition Using Non-Thermal Plasma

被引:10
作者
Moszczynska, Julia [1 ]
Liu, Xinying [2 ]
Wisniewski, Marek [1 ]
机构
[1] Nicolaus Copernicus Univ Torun, Fac Chem, Dept Mat Chem Adsorpt & Catalysis, Gagarina 7, PL-87100 Torun, Poland
[2] Univ South Africa, Inst Catalysis & Energy Solut, Private Bag X6, ZA-1710 Florida, South Africa
关键词
hydrogen storage; green hydrogen synthesis; non-thermal plasma; ammonia splitting; catalysis; GENERATION; ELECTROLYSIS; CATALYSTS; INSIGHTS; METHANE; REACTOR;
D O I
10.3390/ijms241814397
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Liquid hydrogen carriers will soon play a significant role in transporting energy. The key factors that are considered when assessing the applicability of ammonia cracking in large-scale projects are as follows: high energy density, easy storage and distribution, the simplicity of the overall process, and a low or zero-carbon footprint. Thermal systems used for recovering H2 from ammonia require a reaction unit and catalyst that operates at a high temperature (550-800 degrees C) for the complete conversion of ammonia, which has a negative effect on the economics of the process. A non-thermal plasma (NTP) solution is the answer to this problem. Ammonia becomes a reliable hydrogen carrier and, in combination with NTP, offers the high conversion of the dehydrogenation process at a relatively low temperature so that zero-carbon pure hydrogen can be transported over long distances. This paper provides a critical overview of ammonia decomposition systems that focus on non-thermal methods, especially under plasma conditions. The review shows that the process has various positive aspects and is an innovative process that has only been reported to a limited extent.
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页数:20
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共 86 条
[1]   Dynamic simulation and lifecycle assessment of hydrogen fuel cell electric vehicles considering various hydrogen production methods [J].
Ahmadi, Pouria ;
Khoshnevisan, Alireza .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2022, 47 (62) :26758-26769
[2]   The economics and the environmental benignity of different colors of hydrogen [J].
Ajanovic, A. ;
Sayer, M. ;
Haas, R. .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2022, 47 (57) :24136-24154
[3]   Ammonia decomposition to clean hydrogen using non-thermal atmospheric-pressure plasma [J].
Akiyama, Mao ;
Aihara, Keigo ;
Sawaguchi, Tomiko ;
Matsukata, Masahiko ;
Iwamoto, Masakazu .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2018, 43 (31) :14493-14497
[4]   Ammonia decomposition in a dielectric barrier discharge plasma: Insights from experiments and kinetic modeling [J].
Andersen, J. A. ;
van't Veer, K. ;
Christensen, J. M. ;
Ostberg, M. ;
Bogaerts, A. ;
Jensen, A. D. .
CHEMICAL ENGINEERING SCIENCE, 2023, 271
[5]   Plasma-catalytic ammonia decomposition using a packed-bed dielectric barrier discharge reactor [J].
Andersen, J. A. ;
Christensen, J. M. ;
ostberg, M. ;
Bogaerts, A. ;
Jensen, A. D. .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2022, 47 (75) :32081-32091
[6]   Degradation of perfluorosurfactant in aqueous solution using non-thermal plasma generated by nano-second pulse corona discharge reactor [J].
Aziz, Kosar Hikmat Hama ;
Miessner, Hans ;
Mahyar, Ali ;
Mueller, Siegfried ;
Moeller, Detlev ;
Mustafa, Fryad ;
Omer, Khalid M. .
ARABIAN JOURNAL OF CHEMISTRY, 2021, 14 (10)
[7]   Experimental analysis on the performance, combustion/emission characteristics of a DI diesel engine using hydrogen in dual fuel mode [J].
Bakar, R. A. ;
Widudo ;
Kadirgama, K. ;
Ramasamy, D. ;
Yusaf, Talal ;
Kamarulzaman, M. K. ;
Sivaraos ;
Aslfattahi, Navid ;
Samylingam, L. ;
Alwayzy, Sadam H. .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2024, 52 :843-860
[8]   DECOMPOSITION OF AMMONIA IN A MICROWAVE DISCHARGE [J].
BARKER, R .
JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS I, 1972, 68 (591) :315-&
[9]   Characterization of hexamethyldisiloxane plasma polymerization in a DC glow discharge in an argon flow [J].
Batrakov, A. V. ;
Markov, A. B. ;
Zuza, D. A. ;
Nekhoroshev, V. O. ;
Kurzina, I. A. .
VACUUM, 2023, 207
[10]   Hydrogen production from ammonia decomposition using Co/γ-Al2O3 catalysts - Insights into the effect of synthetic method [J].
Bell, T. E. ;
Menard, H. ;
Carballo, J-M. Gonzalez ;
Tooze, R. ;
Torrente-Murciano, L. .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2020, 45 (51) :27210-27220