Challenges of integrating hydrogen energy storage systems into nearly zero-energy ports

Energy ◽  
2021 ◽  
pp. 122878
Author(s):  
Emmanouil Vichos ◽  
Nikolaos Sifakis ◽  
Theocharis Tsoutsos
2021 ◽  
Vol 9 ◽  
Author(s):  
Qing Xue ◽  
Zhen Wang ◽  
Yuqing Zhang

Alongside the rapid expansion of wind power installation in China, wind curtailment is also mounting rapidly due to China’s energy endowment imbalance. The hydrogen-based wind-energy storage system becomes an alternative to solve the puzzle of wind power surplus. This article introduced China’s energy storage industry development and summarized the advantages of hydrogen-based wind-energy storage systems. From the perspective of resource conservation, it estimated the environmental benefits of hydrogen-based wind-energy storages. This research also builds a valuation model based on the Real Options Theory to capture the distinctive flexible charging and discharging features of the hydrogen-based wind-energy storage systems. Based on the model, simulation results, including the investment value and operation decision of the hydrogen energy storage system with different electricity prices, system parameters, and different levels of subsidies, are presented. The results show that the hydrogen storage system fed with the surplus wind power can annually save approximately 2.19–3.29 million tons of standard coal consumption. It will reduce 3.31–4.97 million tons of CO2, SO2, NOx, and PM, saving as much as 286.6–429.8 million yuan of environmental cost annually on average. The hydrogen-based wind-energy storage system’s value depends on the construction investment and operating costs and is also affected by the mean-reverting nature and jumps or spikes in electricity prices. The market-oriented reform of China’s power sector is conducive to improve hydrogen-based wind-energy storage systems’ profitability. At present, subsidies are still essential to reduce initial investment and attract enterprises to participate in hydrogen energy storage projects.


2019 ◽  
Vol 114 ◽  
pp. 05005 ◽  
Author(s):  
Alexey Kazakov ◽  
Dmitry Blinov ◽  
Ivan Romanov ◽  
Dmitry Dunikov ◽  
Vasily Borzenko

Significant progress in the installation of renewable energy requires the improvement of energy production and storage technologies. Hydrogen energy storage systems based on reversible metal hydride materials can be used as an energy backup system. Metal hydride hydrogen storage systems are distinguished by a high degree of safety of their use, since hydrogen is stored in a solid phase, a high volumetric density of stored hydrogen, and the possibility of long-term storage without losses. A distinctive feature of metal hydride materials is the reversible and selective absorption and release of high-purity hydrogen. This paper presents experimental studies of LaNi5-based metal hydride materials with a useful hydrogen capacity of 1.0–1.3 wt.% H2 with equilibrium pressures of 0.025 - 0.05 MPa and 0.1 - 1.2 MPa at moderate temperatures of 295 - 353 K for the hydrogen purification systems and hydrogen long-term storage systems, respectively. The applicability of metal hydride technologies for renewable energy sources as energy storage systems in the form of hydrogen is also shown.


2019 ◽  
Vol 238 ◽  
pp. 851-862 ◽  
Author(s):  
C. Caro-Ruiz ◽  
P. Lombardi ◽  
M. Richter ◽  
A. Pelzer ◽  
P. Komarnicki ◽  
...  

2020 ◽  
Vol 93 (9) ◽  
pp. 1380-1386
Author(s):  
V. B. Son ◽  
Yu. Ya. Shimkus ◽  
S. A. Mozhzhukhin ◽  
M. S. Bocharnikov ◽  
E. E. Fokina ◽  
...  

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