Economic Analysis of a Photovoltaic Hydrogen Refueling Station Based on Hydrogen Load
With the goal of achieving “carbon peak in 2030 and carbon neutrality in 2060”, as clearly proposed by China, the transportation sector will face long–term pressure on carbon emissions, and the application of hydrogen fuel cell vehicles will usher in a rapid growth period. However, true “zero carbon...
| Published in: | Energies |
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| Main Authors: | , , , , |
| Format: | Article |
| Language: | English |
| Published: |
MDPI AG
2023-09-01
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| Online Access: | https://www.mdpi.com/1996-1073/16/17/6406 |
| _version_ | 1851914323067142144 |
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| author | Lifei Song Weijun Gao Liting Zhang Qifen Li Hongbo Ren |
| author_facet | Lifei Song Weijun Gao Liting Zhang Qifen Li Hongbo Ren |
| author_sort | Lifei Song |
| collection | DOAJ |
| container_title | Energies |
| description | With the goal of achieving “carbon peak in 2030 and carbon neutrality in 2060”, as clearly proposed by China, the transportation sector will face long–term pressure on carbon emissions, and the application of hydrogen fuel cell vehicles will usher in a rapid growth period. However, true “zero carbon” emissions cannot be separated from “green hydrogen”. Therefore, it is of practical significance to explore the feasibility of renewable energy hydrogen production in the context of hydrogen refueling stations, especially photovoltaic hydrogen production, which is applied to hydrogen refueling stations (hereinafter referred to “photovoltaic hydrogen refueling stations”). This paper takes a hydrogen refueling station in Shanghai with a supply capacity of 500 kg/day as the research object. Based on a characteristic analysis of the hydrogen demand of the hydrogen refueling station throughout the day, this paper studies and analyzes the system configuration, operation strategy, environmental effects, and economics of the photovoltaic hydrogen refueling station. It is estimated that when the hydrogen price is no less than 6.23 USD, the photovoltaic hydrogen refueling station has good economic benefits. Additionally, compared with the conventional hydrogen refueling station, it can reduce carbon emissions by approximately 1237.28 tons per year, with good environmental benefits. |
| format | Article |
| id | doaj-art-e70a8ed201cf4b6a93e970e18959815b |
| institution | Directory of Open Access Journals |
| issn | 1996-1073 |
| language | English |
| publishDate | 2023-09-01 |
| publisher | MDPI AG |
| record_format | Article |
| spelling | doaj-art-e70a8ed201cf4b6a93e970e18959815b2025-08-19T22:00:45ZengMDPI AGEnergies1996-10732023-09-011617640610.3390/en16176406Economic Analysis of a Photovoltaic Hydrogen Refueling Station Based on Hydrogen LoadLifei Song0Weijun Gao1Liting Zhang2Qifen Li3Hongbo Ren4Innovation and Entrepreneurship Engineering Training Center, Shanghai University of Electric Power, Shanghai 201306, ChinaFaculty of Environmental Engineering, The University of Kitakyushu, Kitakyushu 808-0135, JapanCollege of Energy and Mechanical Engineering, Shanghai University of Electric Power, Shanghai 201306, ChinaCollege of Energy and Mechanical Engineering, Shanghai University of Electric Power, Shanghai 201306, ChinaCollege of Energy and Mechanical Engineering, Shanghai University of Electric Power, Shanghai 201306, ChinaWith the goal of achieving “carbon peak in 2030 and carbon neutrality in 2060”, as clearly proposed by China, the transportation sector will face long–term pressure on carbon emissions, and the application of hydrogen fuel cell vehicles will usher in a rapid growth period. However, true “zero carbon” emissions cannot be separated from “green hydrogen”. Therefore, it is of practical significance to explore the feasibility of renewable energy hydrogen production in the context of hydrogen refueling stations, especially photovoltaic hydrogen production, which is applied to hydrogen refueling stations (hereinafter referred to “photovoltaic hydrogen refueling stations”). This paper takes a hydrogen refueling station in Shanghai with a supply capacity of 500 kg/day as the research object. Based on a characteristic analysis of the hydrogen demand of the hydrogen refueling station throughout the day, this paper studies and analyzes the system configuration, operation strategy, environmental effects, and economics of the photovoltaic hydrogen refueling station. It is estimated that when the hydrogen price is no less than 6.23 USD, the photovoltaic hydrogen refueling station has good economic benefits. Additionally, compared with the conventional hydrogen refueling station, it can reduce carbon emissions by approximately 1237.28 tons per year, with good environmental benefits.https://www.mdpi.com/1996-1073/16/17/6406hydrogen loadphotovoltaic hydrogen refueling stationeconomic analysis |
| spellingShingle | Lifei Song Weijun Gao Liting Zhang Qifen Li Hongbo Ren Economic Analysis of a Photovoltaic Hydrogen Refueling Station Based on Hydrogen Load hydrogen load photovoltaic hydrogen refueling station economic analysis |
| title | Economic Analysis of a Photovoltaic Hydrogen Refueling Station Based on Hydrogen Load |
| title_full | Economic Analysis of a Photovoltaic Hydrogen Refueling Station Based on Hydrogen Load |
| title_fullStr | Economic Analysis of a Photovoltaic Hydrogen Refueling Station Based on Hydrogen Load |
| title_full_unstemmed | Economic Analysis of a Photovoltaic Hydrogen Refueling Station Based on Hydrogen Load |
| title_short | Economic Analysis of a Photovoltaic Hydrogen Refueling Station Based on Hydrogen Load |
| title_sort | economic analysis of a photovoltaic hydrogen refueling station based on hydrogen load |
| topic | hydrogen load photovoltaic hydrogen refueling station economic analysis |
| url | https://www.mdpi.com/1996-1073/16/17/6406 |
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