Search Results - "Fuel cells (Weinheim an der Bergstrasse, Germany)"

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  1. 1

    Minimum hydrogen consumption‐based energy management strategy for hybrid fuel cell unmanned aerial vehicles using direction prediction optimal foraging algorithm by Quan, Rui, Li, Zhongxin, Liu, Pin, Li, Yangxin, Chang, Yufang, Yan, Huaicheng

    “…In hybrid energy storage systems of fuel cell unmanned aerial vehicles (UAVs), achieving energy management while minimizing hydrogen consumption is the main…”
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  2. 2

    Techno‐economic Analysis of a More Efficient Hydrogen Generation System Prototype: A Case Study of PEM Electrolyzer with Cr‐C Coated SS304 Bipolar Plates by Taner, T., Naqvi, S. A. H., Ozkaymak, M.

    “…This study presents a more efficient and innovative prototype of a hydrogen generation system using proton exchange membrane (PEM) electrolyzer. The aim of…”
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  3. 3

    Experimental Study of Three Channel Designs with Model Comparison in a PEM Fuel Cell by Mojica, F., Rahman, Md. A., Mora, J. M., Ocon, J. D., Chuang, P.‐Y. A.

    “…The flow field is an integral part of a proton exchange membrane fuel cell. In this work, three flow‐field designs, including straight parallel, multiple…”
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  4. 4

    Ni migration in solid oxide cell electrodes: Review and revised hypothesis by Mogensen, Mogens B., Chen, Ming, Frandsen, Henrik Lund, Graves, Christopher, Hauch, Anne, Hendriksen, Peter Vang, Jacobsen, Torben, Jensen, Søren Højgaard, Skafte, Theis Løye, Sun, Xiufu

    “…Severe degradation of Ni‐YSZ (yttria stabilized zirconia) electrodes of solid oxide cells (SOCs) due to Ni migration is well known, but the literature contains…”
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  5. 5

    Industrial Perspective on Hydrogen Purification, Compression, Storage, and Distribution by Peschel, A.

    “…Green hydrogen production by electrolysis using renewable power allows for decoupling the time and location of hydrogen production and use. Even if pipeline…”
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  6. 6

    Accelerating Fuel Cell Development with Additive Manufacturing Technologies: State of the Art, Opportunities and Challenges by Tai, X. Y., Zhakeyev, A., Wang, H., Jiao, K., Zhang, H., Xuan, J.

    “…In recent years, the use of additive manufacturing (AM) has been demonstrated in the fabrication of components in polymer electrolyte membrane fuel cell, solid…”
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  7. 7

    Development of 1 kW‐class Ammonia‐fueled Solid Oxide Fuel Cell Stack by Kishimoto, M., Muroyama, H., Suzuki, S., Saito, M., Koide, T., Takahashi, Y., Horiuchi, T., Yamasaki, H., Matsumoto, S., Kubo, H., Takahashi, N., Okabe, A., Ueguchi, S., Jun, M., Tateno, A., Matsuo, T., Matsui, T., Iwai, H., Yoshida, H., Eguchi, K.

    “…Power generation performance and long‐term durability of ammonia‐fueled solid oxide fuel cell (SOFC) systems are investigated with SOFC stacks consisting of 30…”
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  8. 8

    Economic and Environmental Prospects for Battery Electric‐ and Fuel Cell Vehicles: A Review by Ajanovic, A., Haas, R.

    “…Due to the pressing environmental problems coming from the transport sector, interest in electric vehicles (EVs) has increased significantly over the last…”
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  9. 9

    Developments in CO2 Electrolysis of Solid Oxide Electrolysis Cell with Different Cathodes by Ma, Z., Zhou, J., Li, Y., Liu, C., Pu, J., Chen, X.

    “…Solid oxide electrolysis cell (SOEC) is a device that can efficiently convert excessive power of renewable energy, such as wind or solar energy into chemical…”
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  10. 10

    Test and characterization of reversible solid oxide cells and stacks for innovative renewable energy storage by Hauch, Anne, Ploner, Alexandra, Pylypko, Sergii, Cubizolles, Geraud, Mougin, Julie

    “…This work aims at developing a renewable energy storage solution, based on reversible solid oxide cell (rSOC) technology. Firstly, the initially high…”
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  11. 11

    Effects of Fuel Cell Operating Conditions on Proton Exchange Membrane Durability at Open‐Circuit Voltage by Zhao, N., Chu, Y., Xie, Z., Eggen, K., Girard, F., Shi, Z.

    “…Proton exchange membrane fuel cells (PEMFCs) continue to face cost and durability challenges which need to be addressed before their large scale…”
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  12. 12

    A Long‐term Energy Management Strategy for Fuel Cell Electric Vehicles Using Reinforcement Learning by Zhou, Y. F., Huang, L. J., Sun, X. X., Li, L. H., Lian, J.

    “…The two power sources of a fuel cell electric vehicle (FCEV) are proton electrolyte membrane fuel cell (PEMFC) and Li‐ion battery (LIB). The health status of…”
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  13. 13

    Sliding mode control for fuel cell supported battery charger in vehicle‐to‐vehicle interaction by İnci, Mustafa, Büyük, Mehmet, Özbek, Necdet Sinan

    “…In typical vehicle‐to‐vehicle (V2V) charging systems, energy transfer is provided from a battery electric vehicle (BEV) to charge the energy storage unit of…”
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  14. 14

    Relation Between Ni Particle Shape Change and Ni Migration in Ni–YSZ Electrodes – a Hypothesis by Mogensen, M. B., Hauch, A., Sun, X., Chen, M., Tao, Y., Ebbesen, S. D., Hansen, K. V., Hendriksen, P. V.

    “…This paper deals with degradation mechanisms of Ni–YSZ electrodes for solid oxide cells, mainly solid oxide electrolysis cells (SOECs), but also to some extent…”
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  15. 15

    Benchmark study of performances and durability between different stack technologies for high temperature electrolysis by Aicart, Jerome, Surrey, Alexander, Champelovier, Lucas, Henault, Kilian, Geipel, Chistian, Posdziech, Oliver, Mougin, Julie

    “…In the current landscape of high temperature electrolysis, mainly two solid oxide cell (SOC) technologies are being used: electrolyte‐supported and…”
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  16. 16

    Pyrrolic, pyridinic, and graphitic sumanene as metal‐free catalyst for oxygen reduction reaction – A density functional theory study by Thiruppathiraja, Thangaraj, Arokiyanathan, Agnes Lincy, Lakshmipathi, Senthilkumar

    “…This study investigates the nitrogen (N)‐doped sumanene (SUMA) molecule's catalytic behavior for the four‐electron oxygen reduction reaction (ORR) process…”
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  17. 17

    CO/CO2 Study of High Performance La0.3Sr0.7Fe0.7Cr0.3O3-[delta] Reversible SOFC Electrodes by Addo, P K, Molero-Sanchez, B, Chen, M, Paulson, S, Birss, V

    “…In this study, we demonstrate that the La0.3Sr0.7Fe0.7Cr0.3O3-[delta] (LSFCr) perovskite, examined here as a CO/CO2 fuel electrode material intended for…”
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  18. 18

    Effect of Co‐Ni Ratio in Graphene Based Bimetallic Electro‐catalyst for Methanol Oxidation by Sarwar, E., Noor, T., Iqbal, N., Mehmood, Y., Ahmed, S., Mehek, R.

    “…In this paper the electro‐catalytic oxidation of methanol is studied on the non‐noble catalysts Ni–Co/graphene. The bimetallic electro‐catalyst was prepared…”
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  19. 19

    Combining Electrochemical Nitrate Reduction and Anammox for Treatment of Wastewater With Low C/N Ratio Nitrate by Gao, Weichun, Du, Yan, Liu, Xueying, Zhang, Libao, Li, Dan

    “…ABSTRACT The treatment of high concentration and low C/N ratio of nitrate wastewater is a promising and challenging research topic. Combining electrochemical…”
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  20. 20

    Voltage and Fuel Utilization Control Strategy for Solid Oxide Fuel Cell Based on Active Disturbance Rejection Control by Lei, Zhengling, Guan, Chaojun, Liu, Tao, Huo, Haibo, Wang, Fang, Yao, Guoquan

    “…ABSTRACT Solid oxide fuel cell (SOFC) systems have become a research focus because of their clean and high‐efficiency properties. Control of output voltage and…”
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