A review on the research progress and application of compressed hydrogen in the marine hydrogen fuel cell power system

The urgency to mitigate greenhouse gas emissions from maritime vessels has intensified due to the increasingly stringent directives set forth by the International Maritime Organization (IMO). These directives specifically address energy efficiency enhancements and emissions reduction within the ship...

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Main Authors: Ji-Chao Li, Heng Xu, Ke Zhou, Ji-Qiang Li
Format: Article
Language:English
Published: Elsevier 2024-02-01
Series:Heliyon
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2405844024013355
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author Ji-Chao Li
Heng Xu
Ke Zhou
Ji-Qiang Li
author_facet Ji-Chao Li
Heng Xu
Ke Zhou
Ji-Qiang Li
author_sort Ji-Chao Li
collection DOAJ
description The urgency to mitigate greenhouse gas emissions from maritime vessels has intensified due to the increasingly stringent directives set forth by the International Maritime Organization (IMO). These directives specifically address energy efficiency enhancements and emissions reduction within the shipping industry. In this context, hydrogen is the much sought after fuel for all the global economies and its applications, for transportation and propulsion in particular, is crucial for cutting down carbon emissions. Nevertheless, the realization of hydrogen-powered vessels is confronted by substantial technical hurdles that necessitate thorough examination. This study undertakes a comprehensive analysis encompassing diverse facets, including distinct variations of hydrogen fuel cells, hydrogen internal combustion engines, safety protocols associated with energy storage, as well as the array of policies and commercialization endeavors undertaken globally for the advancement of hydrogen-propelled ships. By amalgamating insights from these multifaceted dimensions, this paper adeptly encapsulates the myriad challenges intrinsic to the evolution of hydrogen-fueled maritime vessels, while concurrently casting a forward-looking gaze on their prospective trajectory.
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spelling doaj.art-7a3e027ba34542eeb70feb8766b4f7262024-02-17T06:40:31ZengElsevierHeliyon2405-84402024-02-01103e25304A review on the research progress and application of compressed hydrogen in the marine hydrogen fuel cell power systemJi-Chao Li0Heng Xu1Ke Zhou2Ji-Qiang Li3School of Mechanical and Electrical Engineering, Jining University, Qufu, 273155, China; Shandong Xinneng Marine Technology Co.,Ltd. 16th Floor,Jining Energy Building, No.2299 Chongwen Avenue, High-tech Zone, 272000, Jining, China; jichaojnxy@163.comDivision of Mechanical & Automotive Engineering, Hoseo University, Asan, 31499, South KoreaSchool of Mechanical and Electrical Engineering, Jining University, Qufu, 273155, China; Corresponding author.School of Transportation, Ludong University, Yantai, 264025, Shandong Province, China; Corresponding author.The urgency to mitigate greenhouse gas emissions from maritime vessels has intensified due to the increasingly stringent directives set forth by the International Maritime Organization (IMO). These directives specifically address energy efficiency enhancements and emissions reduction within the shipping industry. In this context, hydrogen is the much sought after fuel for all the global economies and its applications, for transportation and propulsion in particular, is crucial for cutting down carbon emissions. Nevertheless, the realization of hydrogen-powered vessels is confronted by substantial technical hurdles that necessitate thorough examination. This study undertakes a comprehensive analysis encompassing diverse facets, including distinct variations of hydrogen fuel cells, hydrogen internal combustion engines, safety protocols associated with energy storage, as well as the array of policies and commercialization endeavors undertaken globally for the advancement of hydrogen-propelled ships. By amalgamating insights from these multifaceted dimensions, this paper adeptly encapsulates the myriad challenges intrinsic to the evolution of hydrogen-fueled maritime vessels, while concurrently casting a forward-looking gaze on their prospective trajectory.http://www.sciencedirect.com/science/article/pii/S2405844024013355Hip-board hydrogen energyHydrogen storageShipboard hydrogen fuel cellPotential shipboard hydrogen leaksCommercialization of hydrogen energy shipHydrogen safety
spellingShingle Ji-Chao Li
Heng Xu
Ke Zhou
Ji-Qiang Li
A review on the research progress and application of compressed hydrogen in the marine hydrogen fuel cell power system
Heliyon
Hip-board hydrogen energy
Hydrogen storage
Shipboard hydrogen fuel cell
Potential shipboard hydrogen leaks
Commercialization of hydrogen energy ship
Hydrogen safety
title A review on the research progress and application of compressed hydrogen in the marine hydrogen fuel cell power system
title_full A review on the research progress and application of compressed hydrogen in the marine hydrogen fuel cell power system
title_fullStr A review on the research progress and application of compressed hydrogen in the marine hydrogen fuel cell power system
title_full_unstemmed A review on the research progress and application of compressed hydrogen in the marine hydrogen fuel cell power system
title_short A review on the research progress and application of compressed hydrogen in the marine hydrogen fuel cell power system
title_sort review on the research progress and application of compressed hydrogen in the marine hydrogen fuel cell power system
topic Hip-board hydrogen energy
Hydrogen storage
Shipboard hydrogen fuel cell
Potential shipboard hydrogen leaks
Commercialization of hydrogen energy ship
Hydrogen safety
url http://www.sciencedirect.com/science/article/pii/S2405844024013355
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