Smart Grid and Renewable Energy

Smart Grid and Renewable Energy

ISSN Print: 2151-481X
ISSN Online: 2151-4844
www.scirp.org/journal/sgre
E-mail: sgre@scirp.org
"Polymer Electrolyte Membrane Fuel Cells (PEMFC) in Automotive Applications: Environmental Relevance of the Manufacturing Stage"
written by Daniel Garraín, Yolanda Lechón, Cristina de la Rúa,
published by Smart Grid and Renewable Energy, Vol.2 No.2, 2011
has been cited by the following article(s):
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[1] Performance evaluation on thermodynamics-economy-environment of PEMFC vehicle power system under dynamic condition
Energy Conversion and …, 2022
[2] Energy Management of PEMFC and NiMH Battery on 3-wheels Hybrid Electric Vehicle Equipped with CVT
… : Jurnal Teknik Energi …, 2021
[3] Development and application of fuel cells in the automobile industry
Journal of Energy …, 2021
[4] A review of alternative polymer electrolyte membrane for fuel cell application based on sulfonated poly (ether ether ketone)
International Journal of …, 2021
[5] Organization of innovative activities in telecommunications enterprises
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[6] Effect of Embedding Ion Exchange Stack Layer in PEM Fuel Cell on Electrode Corrosion
2021
[7] An overview of bipolar plates in proton exchange membrane fuel cells
2021
[8] A Review on Bioinspired Proton Exchange Membrane Fuel Cell: Design and Materials
Advanced Energy and Sustainability Research, 2021
[9] Life Cycle Assessment of PEM fuel cell vehicles
2020
[10] Comparison of Planar and Tubular Flow Field Plates for Proton Exchange Membrane Fuel Cells (PEMFCs) through Simulation
2020
[11] Review–polymeric materials for energy harvesting and storage applications
2020
[12] Impact assessment of exhaust gas emissions from cogeneration PEMFC systems
2020
[13] Environmental aspects of fuel cells: A review
2020
[14] Patterning Catalyst Layers with Microscale Features by Soft Lithography Techniques for Proton Exchange Membrane Fuel Cells
2020
[15] Energy Management Strategy for Nickel Metal Hydride (NiMH) Battery and Proton Exchange Membrane Fuel Cell (PEMFC) on 3-wheel Hybrid Electric Car Equipped …
2020
[16] Life cycle energy and environmental impacts of a solid oxide fuel cell micro-CHP system for residential application
2019
[17] Solid-state double layer capacitors and protonic cell fabricated with dextran from Leuconostoc mesenteroides based green polymer electrolyte
2019
[18] 基于变论域模糊增量理论的质子交换膜燃料电池温度控制
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[19] Direct Hydrocarbon Fuel Cells: A Promising Technology for Improving Energy Efficiency
2019
[20] Microstructured membranes for improving transport resistances in proton exchange membrane fuel cells
2019
[21] Engineering the Membrane Electrode Assembly of Direct Methanol Fuel Cells Using Novel Graphene Architecture
2018
[22] Value Added Products From Lignin and Biomass Derivatives
2018
[23] Sodium Silicide As A Hydrogen Source For Portable Energy Devices: A Review
Materials Today: Proceedings, 2018
[24] Electrochemical Hydrogenation of Acetone to Produce Isopropanol Using a Polymer Electrolyte Membrane Reactor
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[25] Modelling road transport technologies in future scenarios: Theoretical comparison and application of Well-to-Wheels and Input-Output analyses
Applied Energy, 2018
[26] Fuel Cell Technology: Policy, Features, and Applications–A Mini-review
Nanostructured Materials for Next-Generation Energy Storage and Conversion, 2018
[27] COMPARATIVE STUDY OF MICROBIAL FUEL CELL'S PERFORMANCE USING THREE DIFFERENT ELECTRODES
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[28] Current Status of One-Dimensional Nanostructured Catalysts for Polymer Electrolyte Membrane Fuel Cell
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[29] 以計算探討鉑錫基催化劑在直接乙醇燃料電池陽極和陰極反應中的研究
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[30] Ta-Based Nanostructured Materials for Proton Exchange Membrane Fuel Cells
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[31] Synthesis and Performance Evaluation of a Carbon-Based Catalyst for use in Polymer Electrolyte Membrane Fuel Cells
2018
[32] Zirconium Phosphate/Ionic Liquid Proton Conductors for High Temperature Fuel Cell Applications
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[33] Experimental characterization of a proton exchange membrane fuel-cell for hybrid electric pedal assisted cycles
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[34] Life Cycle Assessment of Solid Oxide Fuel Cells and Polymer Electrolyte Membrane Fuel Cells: A Review
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[35] Revisión de los estudios basados en análisis de ciclo de vida aplicados a la tecnología de pilas de combustible
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[36] Beyond Well-to-Wheels analysis: assessing the full supply chain impact of Fuel Cell Electric Vehicles (FCEV) in future automotive scenarios
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[37] Sliding mode control of a cascade boost converter for fuel cell energy generation system
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[38] Life cycle assessment of a polymer electrolyte membrane fuel cell system for passenger vehicles
Journal of Cleaner Production, 2017
[39] Environmental assessment of proton exchange membrane fuel cell platinum catalyst recycling
Journal of Cleaner Production, 2017
[40] Novel Nano-Composite Catalysts for Renewable Energy Storage Applications
ProQuest Dissertations Publishing, 2017
[41] Synchrotron X-ray Nano-tomography and Fluorescence Microscopy Analysis of Lithium Batteries and Nanoporous Materials for Energy Applications
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[42] Temperature model and predictive control for fuel cells in switcher locomotive
2016
[43] Plasma-treated phosphonic acid-based membranes for fuel cell
International Journal of Hydrogen Energy, 2016
[44] Thermal analysis of fuel cell NEXA ballard power system
2016
[45] Uji Kinerja Smart Gried Fuel Cell Tipe Proton Exchange Membran (PEM) Dengan Penmbahan Hidrogen
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[46] Preferential oxidation of carbon monoxide on Pt/γ-Al 2 O 3 catalyst: Effect of adding ceria and nickel
International Journal of Hydrogen Energy, 2016
[47] Flow-field/electrode unified membrane-electrode assemblies using graphene foam in polymer electrolyte membrane fuel cells
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[48] Preferential oxidation of carbon monoxide on Pt/γ-Al2O3 catalyst: Effect of adding ceria and nickel
International Journal of Hydrogen Energy, 2016
[49] Synthesis and characterization of nanoalloys and non-precious metal catalysts for energy and environmental applications
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[50] Polymer electrolyte membrane fuel cell design for an electric vehicle
2015
[51] Estudio de la conversión termoquímica de glicerina a hidrógeno y electricidad mediante reformado con agua supercrítica. Evaluación tecno‐económica y …
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[52] Estudio de la conversión termoquímica de glicerina a hidrógeno y electricidad mediante reformado con agua supercrítica: Evaluación tecno-económica y …
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[53] The Use of Per-Fluorinated Sulfonic Acid (PFSA) Membrane as Electrolyte in Fuel Cells
Advanced Fluoride-Based Materials for Energy Conversion, 2015
[54] A life-cycle perspective on automotive fuel cells
Applied Energy, 2015
[55] Experimental Study of Non-Destructive Approach on PEMFC Stack Using Tri-Axis Magnetic Sensor Probe
Journal of Power and Energy Engineering, 2015
[56] Life cycle assessment of PEM FC applications: electric mobility and μ-CHP
Energy & Environmental Science, 2015
[57] Estudio de la conversión termoquímica de glicerina a hidrógeno y electricidad mediante reformado con agua supercrítica: Evaluación tecno-económica y análisis de ciclo de vida
2015
[58] Plasma-polymerized phosphonic acid-based membranes for fuel cell
Journal of Membrane Science, 2014
[59] Novel cross-linkers for asymmetric poly-AMPS-based proton exchange membranes for fuel cells
Designed Monomers and Polymers, 2014
[60] Electrodeposition preparation of highly dispersed Pt/H< sub> x WO< sub> 3 composite catalysts for PEMFCs
Electrochimica Acta, 2013
[61] Electrodeposition preparation of highly dispersed Pt/HxWO3 composite catalysts for PEMFCs
Electrochimica Acta, 2013
[62] Electrochemical behaviour of PES ionomer and Pt-free catalyst for PEMFCs
Journal of Electrochemical Science and Engineering, 2013
[63] 恒压电沉积 Pt-Fe 合金催化剂及在 PEMFC 阴极的应用
2013
[64] Sustainability assessment of road transport technologies
JRC Scientific and Policy Reports, 2012
[65] Effect of preparation conditions on nanostructural features of the NAFION? type perfluorinated proton conducting membranes
Petroleum Chemistry, 2012
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