Exergoeconomic assessment of a biomass-based hydrogen, electricity and freshwater production cycle combined with an electrolyzer, steam turbine and a thermal desalination process
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作者:
Wang, Shuaibing
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Yuxi Normal Univ, Yuxi 653100, Yunnan, Peoples R ChinaYuxi Normal Univ, Yuxi 653100, Yunnan, Peoples R China
Wang, Shuaibing
[1
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Lin, Haitao
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Yuxi Normal Univ, Yuxi 653100, Yunnan, Peoples R ChinaYuxi Normal Univ, Yuxi 653100, Yunnan, Peoples R China
Lin, Haitao
[1
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Abed, Azher M.
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机构:
Al Mustaqbal Univ Coll, Air Conditioning & Refrigerat Tech Engn Dept, Babylon, IraqYuxi Normal Univ, Yuxi 653100, Yunnan, Peoples R China
Abed, Azher M.
[2
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Sharma, Aman
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机构:
GLA Univ Mathura, Dept Mech Engn, Chaumuhan, IndiaYuxi Normal Univ, Yuxi 653100, Yunnan, Peoples R China
Sharma, Aman
[3
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Fooladi, Hadi
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Islamic Azad Univ, Dept Energy Engn, Tabriz Branch, Tabriz, IranYuxi Normal Univ, Yuxi 653100, Yunnan, Peoples R China
Fooladi, Hadi
[4
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机构:
[1] Yuxi Normal Univ, Yuxi 653100, Yunnan, Peoples R China
[2] Al Mustaqbal Univ Coll, Air Conditioning & Refrigerat Tech Engn Dept, Babylon, Iraq
[3] GLA Univ Mathura, Dept Mech Engn, Chaumuhan, India
[4] Islamic Azad Univ, Dept Energy Engn, Tabriz Branch, Tabriz, Iran
Since biomass resources can be found with different contents in most regions of the world, biomass/gasification (Biog) coupling processes can be considered as an attractive and useful technology for integrating in polygeneration configurations. In this regard, a new polygeneration energy configuration based on Biog process is proposed and its conceptual analysis is presented. In the new energy process, a Rankine cycle, a water electrolysis cycle (based on solid oxide electrolyzer, SOE), and a multi-effect desalination (MED) unit are embedded to generate electricity, hydrogen fuel, and freshwater, respectively. The considered polygeneration configuration is comprehensively investigated and discussed utilizing a parametric evaluation and from thermodynamic, energetic and exergoeconomic points of view. Relying on the proposed system can provide a new approach to produce carbon-free hydrogen fuel and freshwater in order to achieve an efficient, modern and green polygeneration configuration. The results indicated that the electrical power generated by the considered polygeneration configuration is close to 1735 kW. In addition, the system is capable of producing almost 9880 kg/h of freshwater and 12.3 kg/h of hydrogen. In such a context, the energy efficiency and total products unit exergy cost were 36.4% and 16.6 USD/GJ, respectively. Also, the system could achieve an exergy efficiency of nearly 17.1%. Moreover, about 8.9 MW of process's exergy is destroyed. The performance of the proposed polygeneration configuration using four different biomass fuels is compared. It was determined that the total products unit exergy costs under paddy husk and paper biomass are approximately 14.8% and 8.6% higher than MSW, respectively.(c) 2022 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机构:
Graduate School of Science and Technology, Hirosaki University, 1-Bunkyocho, Hirosaki,036-8560, JapanGraduate School of Science and Technology, Hirosaki University, 1-Bunkyocho, Hirosaki,036-8560, Japan
Situmorang, Yohanes Andre
Zhao, Zhongkai
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Graduate School of Science and Technology, Hirosaki University, 1-Bunkyocho, Hirosaki,036-8560, JapanGraduate School of Science and Technology, Hirosaki University, 1-Bunkyocho, Hirosaki,036-8560, Japan
Zhao, Zhongkai
An, Ping
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Graduate School of Science and Technology, Hirosaki University, 1-Bunkyocho, Hirosaki,036-8560, JapanGraduate School of Science and Technology, Hirosaki University, 1-Bunkyocho, Hirosaki,036-8560, Japan
An, Ping
Yu, Tao
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Graduate School of Science and Technology, Hirosaki University, 1-Bunkyocho, Hirosaki,036-8560, JapanGraduate School of Science and Technology, Hirosaki University, 1-Bunkyocho, Hirosaki,036-8560, Japan
Yu, Tao
Rizkiana, Jenny
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Department of Chemical Engineering, Institut Teknologi Bandung, Ganesha 10, Bandung,40132, IndonesiaGraduate School of Science and Technology, Hirosaki University, 1-Bunkyocho, Hirosaki,036-8560, Japan
Rizkiana, Jenny
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Abudula, Abuliti
Guan, Guoqing
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Graduate School of Science and Technology, Hirosaki University, 1-Bunkyocho, Hirosaki,036-8560, Japan
Energy Conversion Engineering Laboratory, Institute of Regional Innovation (IRI), Hirosaki University, Aomori,030-0813, JapanGraduate School of Science and Technology, Hirosaki University, 1-Bunkyocho, Hirosaki,036-8560, Japan
机构:
Energetika Ljubljana DOO, TE TOL Unit, Toplarnis ka ul 19, Ljubljana 1000, SloveniaEnergetika Ljubljana DOO, TE TOL Unit, Toplarnis ka ul 19, Ljubljana 1000, Slovenia
Strusnik, Dusan
Avsec, Jurij
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Univ Maribor, Fac Energy Technol, Hocevarjev trg 1, Krshko 8270, SloveniaEnergetika Ljubljana DOO, TE TOL Unit, Toplarnis ka ul 19, Ljubljana 1000, Slovenia
机构:
Shanghai Jiao Tong Univ, China UK Low Carbon Coll, Shanghai, Peoples R ChinaShanghai Jiao Tong Univ, China UK Low Carbon Coll, Shanghai, Peoples R China
Zhang, Xiaoqi
Zhou, Yuling
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Shanghai Jiao Tong Univ, China UK Low Carbon Coll, Shanghai, Peoples R ChinaShanghai Jiao Tong Univ, China UK Low Carbon Coll, Shanghai, Peoples R China
Zhou, Yuling
Jia, Xiaotong
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Shanghai Jiao Tong Univ, China UK Low Carbon Coll, Shanghai, Peoples R ChinaShanghai Jiao Tong Univ, China UK Low Carbon Coll, Shanghai, Peoples R China
Jia, Xiaotong
Feng, Yuheng
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Tongji Univ, Thermal & Environm Engn Inst, Shanghai, Peoples R ChinaShanghai Jiao Tong Univ, China UK Low Carbon Coll, Shanghai, Peoples R China
Feng, Yuheng
Dang, Qi
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Shanghai Jiao Tong Univ, China UK Low Carbon Coll, Shanghai, Peoples R ChinaShanghai Jiao Tong Univ, China UK Low Carbon Coll, Shanghai, Peoples R China