Trends in Research Focused on Hydrogen Production Based on the Web of Science

In the present research, a bibliometric analysis is performed on the trends of research focused on hydrogen production. The analysis was performed through an electronic search of the Web of Science database for publications between the years 2010 - 2019. HistCite software was used for the bibliometr...

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Autores:
Marquez Gomez, Juan
Tipo de recurso:
Fecha de publicación:
2022
Institución:
Universidad del Atlántico
Repositorio:
Repositorio Uniatlantico
Idioma:
eng
OAI Identifier:
oai:repositorio.uniatlantico.edu.co:20.500.12834/773
Acceso en línea:
https://hdl.handle.net/20.500.12834/773
Palabra clave:
Hydrogen
Bibliometric Research
Production
Literature Review
Rights
openAccess
License
http://creativecommons.org/licenses/by-nc/4.0/
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dc.title.spa.fl_str_mv Trends in Research Focused on Hydrogen Production Based on the Web of Science
title Trends in Research Focused on Hydrogen Production Based on the Web of Science
spellingShingle Trends in Research Focused on Hydrogen Production Based on the Web of Science
Hydrogen
Bibliometric Research
Production
Literature Review
title_short Trends in Research Focused on Hydrogen Production Based on the Web of Science
title_full Trends in Research Focused on Hydrogen Production Based on the Web of Science
title_fullStr Trends in Research Focused on Hydrogen Production Based on the Web of Science
title_full_unstemmed Trends in Research Focused on Hydrogen Production Based on the Web of Science
title_sort Trends in Research Focused on Hydrogen Production Based on the Web of Science
dc.creator.fl_str_mv Marquez Gomez, Juan
dc.contributor.author.none.fl_str_mv Marquez Gomez, Juan
dc.contributor.other.none.fl_str_mv Vanegas Chamorro, Marley
Mendoza Caceres, Daniel
dc.subject.keywords.spa.fl_str_mv Hydrogen
Bibliometric Research
Production
Literature Review
topic Hydrogen
Bibliometric Research
Production
Literature Review
description In the present research, a bibliometric analysis is performed on the trends of research focused on hydrogen production. The analysis was performed through an electronic search of the Web of Science database for publications between the years 2010 - 2019. HistCite software was used for the bibliometric analysis and VOSviewer software was used to create correlation graphs. The results obtained show that the number of publications has increased exponentially during the period 2010 - 2019. The research focused on hydrogen production is mainly driven by developed countries, of which China, the United States, and South Korea stand out. The predominant topics are focused on fuel energy (16.9%), electrochemistry (9.6%), and multidisciplinary materials science (8.69%). The most common keywords found in the analysis are "performance", "water", "generation" and "nanoparticles".
publishDate 2022
dc.date.accessioned.none.fl_str_mv 2022-11-15T19:12:42Z
dc.date.available.none.fl_str_mv 2022-11-15T19:12:42Z
dc.date.issued.none.fl_str_mv 2022-07-19
dc.date.submitted.none.fl_str_mv 2022-03-14
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dc.type.hasVersion.spa.fl_str_mv info:eu-repo/semantics/publishedVersion
dc.type.spa.spa.fl_str_mv Artículo
status_str publishedVersion
dc.identifier.citation.spa.fl_str_mv Gomez, J. M., Chamorro, M. V., & Caceres, D. M. (2022). Trends in Research Focused on Hydrogen Production Based on the Web of Science. International Journal of Energy Economics and Policy, 12(4), 117–121. https://doi.org/10.32479/ijeep.13120
dc.identifier.uri.none.fl_str_mv https://hdl.handle.net/20.500.12834/773
dc.identifier.doi.none.fl_str_mv 10.32479/ijeep.13120
dc.identifier.instname.spa.fl_str_mv Universidad del Atlántico
dc.identifier.reponame.spa.fl_str_mv Repositorio Universidad del Atlántico
identifier_str_mv Gomez, J. M., Chamorro, M. V., & Caceres, D. M. (2022). Trends in Research Focused on Hydrogen Production Based on the Web of Science. International Journal of Energy Economics and Policy, 12(4), 117–121. https://doi.org/10.32479/ijeep.13120
10.32479/ijeep.13120
Universidad del Atlántico
Repositorio Universidad del Atlántico
url https://hdl.handle.net/20.500.12834/773
dc.language.iso.spa.fl_str_mv eng
language eng
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dc.rights.cc.*.fl_str_mv Attribution-NonCommercial 4.0 International
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eu_rights_str_mv openAccess
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dc.coverage.spatial.none.fl_str_mv Colombia
dc.publisher.place.spa.fl_str_mv Barranquilla
dc.publisher.discipline.spa.fl_str_mv Ingeniería Química
dc.publisher.sede.spa.fl_str_mv Sede Norte
dc.source.spa.fl_str_mv International Journal of Energy Economics and Policy
institution Universidad del Atlántico
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spelling Marquez Gomez, Juan3a191909-aa86-4781-b45e-8f501dea2a06Vanegas Chamorro, MarleyMendoza Caceres, DanielColombia2022-11-15T19:12:42Z2022-11-15T19:12:42Z2022-07-192022-03-14Gomez, J. M., Chamorro, M. V., & Caceres, D. M. (2022). Trends in Research Focused on Hydrogen Production Based on the Web of Science. International Journal of Energy Economics and Policy, 12(4), 117–121. https://doi.org/10.32479/ijeep.13120https://hdl.handle.net/20.500.12834/77310.32479/ijeep.13120Universidad del AtlánticoRepositorio Universidad del AtlánticoIn the present research, a bibliometric analysis is performed on the trends of research focused on hydrogen production. The analysis was performed through an electronic search of the Web of Science database for publications between the years 2010 - 2019. HistCite software was used for the bibliometric analysis and VOSviewer software was used to create correlation graphs. The results obtained show that the number of publications has increased exponentially during the period 2010 - 2019. The research focused on hydrogen production is mainly driven by developed countries, of which China, the United States, and South Korea stand out. The predominant topics are focused on fuel energy (16.9%), electrochemistry (9.6%), and multidisciplinary materials science (8.69%). The most common keywords found in the analysis are "performance", "water", "generation" and "nanoparticles".application/pdfenghttp://creativecommons.org/licenses/by-nc/4.0/Attribution-NonCommercial 4.0 Internationalinfo:eu-repo/semantics/openAccesshttp://purl.org/coar/access_right/c_abf2International Journal of Energy Economics and PolicyTrends in Research Focused on Hydrogen Production Based on the Web of SciencePúblico generalHydrogenBibliometric ResearchProductionLiterature Reviewinfo:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionArtículohttp://purl.org/coar/version/c_970fb48d4fbd8a85http://purl.org/coar/resource_type/c_2df8fbb1BarranquillaIngeniería QuímicaSede NorteChen, L., Xing, L., Han, L. (2009), Renewable energy from agro-residues in China: Solid biofuels and biomass briquetting technology. Renewable and Sustainable Energy Reviews 13(9), 2689-2695.Chintala, V., Subramanian, K.A. (2015), Experimental investigations on effect of different compression ratios on enhancement of maximum hydrogen energy share in a compression ignition engine under dualfuel mode. Energy, 87, 448-462.Cipriani, G., Di Dio, V., Genduso, F., La Cascia, D., Liga, R., Miceli, R., Galluzzo, G.R. (2014), Perspective on hydrogen energy carrier and its automotive applications. International Journal of Hydrogen Energy 39(16), 8482-8494.Comino, E., Riggio, V.A., Rosso, M. (2012), Biogas production by anaerobic co-digestion of cattle slurry and cheese whey. Bioresource Technology 114, 46-53.de la Cruz-Lovera, C.D., Perea-Moreno, A.J., Cruz-Fernández, J.L.D., Alvarez-Bermejo, J.A.A., Manzano-Agugliaro, F. (2017), Worldwide research on energy efficiency and sustainability in public buildings. Sustainability, 9(8), 1294.Dincer, I., Acar, C. (2016), A review on potential use of hydrogen in aviation applications. International Journal of Sustainable Aviation, 2(1), 74-80.Dutta, S. (2014), A review on production, storage of hydrogen and its utilization as an energy resource. Journal of Industrial and Engineering Chemistry, 20(4), 1148-1156.Elango, D., Pulikesi, M., Baskaralingam, P., Ramamurthi, V., Sivanesan, S. (2007), Production of biogas from municipal solid waste with domestic sewage. Journal of Hazardous Materials, 141(1), 301-304.Gong, M., Wang, D.Y., Chen, C.C., Hwang, B.J., Dai, H. (2016), A mini review on nickel-based electrocatalysts for alkaline hydrogen evolution reaction. Nano Research, 9(1), 28-46.Isci, A., Demirer, G.N. (2007), Biogas production potential from cotton wastes. Renewable Energy, 32(5), 750-57.Joshi, A.S., Dincer, I., Reddy, B.V. (2016), Effects of various parameters on energy and exergy efficiencies of a solar thermal hydrogen production system. International Journal of Hydrogen Energy, 41(19), 7997-8007.Kalinci, Y., Hepbasli, A., Dincer, I. (2015), Techno-economic analysis of a stand-alone hybrid renewable energy system with hydrogen production and storage options. International Journal of Hydrogen Energy, 40(24), 7652-7664.Mostafaeipour, A., Khayyami, M., Sedaghat, A., Mohammadi, K., Shamshirband, S., Sehati, M., Gorakifard, E. (2016), Evaluating the wind energy potential for hydrogen production: A case study. International Journal of Hydrogen Energy, 41(15), 6200-6210.Prabir, B., Butler, J., Leon, M. (2011), Biomass co-firing options on the emission reduction and electricity generation costs in coal-fired power plants. Renewable Energy, 36(1), 282-288.Salvi, B.L., Subramanian, K.A. (2015), Sustainable development of road transportation sector using hydrogen energy system. Renewable and Sustainable Energy Reviews, 51, 1132-1155.Shafiei, E., Davidsdottir, B., Leaver, J., Stefansson, H., Asgeirsson, E.I. (2017), Energy, economic, and mitigation cost implications of transition toward a carbon-neutral transport sector: A simulationbased comparison between hydrogen and electricity. Journal of Cleaner Production, 141, 237-247.Singh, A.K., Singh, S., Kumar, A. (2016), Hydrogen energy future with formic acid: A renewable chemical hydrogen storage system. Catalysis Science and Technology, 6(1), 12-40.Solé-Bundó, M., Garfí, M., Matamoros, V., Ferrer, I. (2019), Co-digestion of microalgae and primary sludge: Effect on biogas production and microcontaminants removal. Science of the Total Environment, 660, 974-981.Uyar, T.S., Beşikci, D. (2017), Integration of hydrogen energy systems into renewable energy systems for better design of 100% renewable energy communities. International Journal of Hydrogen Energy, 42(4), 2453-2456.Valente, A., Iribarren, D., Dufour, J. (2018), Harmonising the cumulative energy demand of renewable hydrogen for robust comparative lifecycle studies. Journal of Cleaner Production, 175, 384-393.Zhang, F., Zhao, P., Niu, M., Maddy, J. (2016), The survey of key technologies in hydrogen energy storage. International Journal of Hydrogen Energy, 41(33), 14535-14552.http://purl.org/coar/resource_type/c_2df8fbb1ORIGINAL15_IJEEP_13120_chamoro_okey.pdf15_IJEEP_13120_chamoro_okey.pdfapplication/pdf1998365https://repositorio.uniatlantico.edu.co/bitstream/20.500.12834/773/1/15_IJEEP_13120_chamoro_okey.pdf9b29f3cf5d5d1ee385f00c084b82d4aeMD51CC-LICENSElicense_rdflicense_rdfapplication/rdf+xml; charset=utf-8914https://repositorio.uniatlantico.edu.co/bitstream/20.500.12834/773/2/license_rdf24013099e9e6abb1575dc6ce0855efd5MD52LICENSElicense.txtlicense.txttext/plain; charset=utf-81306https://repositorio.uniatlantico.edu.co/bitstream/20.500.12834/773/3/license.txt67e239713705720ef0b79c50b2ececcaMD5320.500.12834/773oai:repositorio.uniatlantico.edu.co:20.500.12834/7732022-11-15 14:12:43.643DSpace de la Universidad de Atlánticosysadmin@mail.uniatlantico.edu.coVMOpcm1pbm9zIGdlbmVyYWxlcyBkZWwgUmVwb3NpdG9yaW8gSW5zdGl0dWNpb25hbCBkZSBsYSBVbml2ZXJzaWRhZCBkZWwgQXRsw6FudGljbwoKRWwgKGxvcykgYXV0b3IgKGVzKSBoYW4gYXNlZ3VyYWRvIChuKSBsbyBzaWd1aWVudGUgc29icmUgbGEgb2JyYSBhIGludGVncmFyIGVuIGVsIFJlcG9zaXRvcmlvIEluc3RpdHVjaW9uYWwsIHF1ZToKCuKXjwlFcyBvcmlnaW5hbCwgZGUgc3UgZXhjbHVzaXZhIGF1dG9yw61hLCBzZSByZWFsaXrDsyBzaW4gdmlvbGFyIG8gdXN1cnBhciBkZXJlY2hvcyBkZSBhdXRvciBkZSB0ZXJjZXJvcyB5IHBvc2VlIGxhIHRpdHVsYXJpZGFkLgril48JQXN1bWlyw6FuIGxhIHJlc3BvbnNhYmlsaWRhZCB0b3RhbCBwb3IgZWwgY29udGVuaWRvIGEgbGEgb2JyYSBhbnRlIGxhIEluc3RpdHVjacOzbiB5IHRlcmNlcm9zLgril48JQXV0b3JpemFuIGEgdMOtdHVsbyBncmF0dWl0byB5IHJlbnVuY2lhcyBhIHJlY2liaXIgZW1vbHVtZW50b3MgcG9yIGxhcyBhY3RpdmlkYWRlcyBxdWUgc2UgcmVhbGljZW4gY29uIGVsbGEsIHNlZ8O6biBzdSBsaWNlbmNpYS4KCgpMYSBVbml2ZXJzaWRhZCBkZWwgQXRsw6FudGljbywgcG9yIHN1IHBhcnRlLCBzZSBjb21wcm9tZXRlIGEgYWN0dWFyIGVuIGxvcyB0w6lybWlub3MgZXN0YWJsZWNpZG9zIGVuIGxhIExleSAyMyBkZSAxOTgyIHkgbGEgRGVjaXNpw7NuIEFuZGluYSAzNTEgZGUgMTk5MywgZGVtw6FzIG5vcm1hcyBnZW5lcmFsZXMgc29icmUgbGEgbWF0ZXJpYSB5IGVsIEFjdWVyZG8gU3VwZXJpb3IgMDAxIGRlIDE3IGRlIG1hcnpvIGRlIDIwMTEsIHBvciBtZWRpbyBkZWwgY3VhbCBzZSBleHBpZGUgZWwgRXN0YXR1dG8gZGUgUHJvcGllZGFkIEludGVsZWN0dWFsIGRlIGxhIFVuaXZlcnNpZGFkIGRlbCBBdGzDoW50aWNvLgoKUG9yIMO6bHRpbW8sIGhhbiBzaWRvIGluZm9ybWFkb3Mgc29icmUgZWwgdHJhdGFtaWVudG8gZGUgZGF0b3MgcGVyc29uYWxlcyBwYXJhIGZpbmVzIGFjYWTDqW1pY29zIHkgZW4gYXBsaWNhY2nDs24gZGUgY29udmVuaW9zIGNvbiB0ZXJjZXJvcyBvIHNlcnZpY2lvcyBjb25leG9zIGNvbiBhY3RpdmlkYWRlcyBwcm9waWFzIGRlIGxhIGFjYWRlbWlhLCBiYWpvIGVsIGVzdHJpY3RvIGN1bXBsaW1pZW50byBkZSBsb3MgcHJpbmNpcGlvcyBkZSBsZXkuCgpMYXMgY29uc3VsdGFzLCBjb3JyZWNjaW9uZXMgeSBzdXByZXNpb25lcyBkZSBkYXRvcyBwZXJzb25hbGVzIHB1ZWRlbiBwcmVzZW50YXJzZSBhbCBjb3JyZW8gZWxlY3Ryw7NuaWNvIGhhYmVhc2RhdGFAbWFpbC51bmlhdGxhbnRpY28uZWR1LmNvCg==