TALK KEYWORD INDEX
This page contains an index consisting of author-provided keywords.
| 3 | |
| 3D printing | |
| A | |
| ABS polymer | |
| Absorption and Scattering Coefficients | |
| Acidic water electrolysis | |
| Acidogenesis | |
| Acrylonitrile-butadiene-styrene (ABS) | |
| Adsorption | |
| AEMFC | |
| agave fiber composites | |
| Alcohol electro oxidation | |
| Algorithm model | |
| Alkaline | |
| Alkaline Electrolysis | |
| Alkaline Electrolysis | |
| Alkaline electrolysis* | |
| Alkaline electrolyzer | |
| alkaline water electrolysis | |
| Alloyed Pt-based nanocatalysts | |
| Alumina | |
| Ammonia | |
| Anaerobic digestion | |
| anaerobic sewage sludge | |
| Anion exchange membrane fuel cells | |
| Anodes | |
| anodic catalyst | |
| Artificial Intelligence | |
| Artificial intelligence | |
| B | |
| Bifuctional materials | |
| biocarbon | |
| biochar | |
| biochar | |
| bioelectricity | |
| bioenergy | |
| Bioenergy | |
| Biofilms | |
| Biofotólisis | |
| Biofuels | |
| Biohydrogen | |
| Biohydrogen | |
| Biohydrogen production | |
| Biohydrogen-production | |
| biomass | |
| biomethane | |
| Bismuto | |
| blending | |
| Boost Converter | |
| Brittle fracture | |
| Buck-Boost Converter | |
| C | |
| calorific value | |
| carbon nanofiber | |
| Carbon nanofibers | |
| carbon nanotubes | |
| Carbon steel | |
| carbonitride | |
| catalysis | |
| CATALYST | |
| cathodic catalyst | |
| Cathodic charging | |
| cationic exchange membranes | |
| cell | |
| Ceratophyllum demersum | |
| Certification standards | |
| CFD | |
| characterization | |
| Cheese whey wastewater | |
| Cheese-whey | |
| chemical activation | |
| Chlamydomonas reinhardtii | |
| Circular Economy | |
| Circular economy | |
| citrus waste | |
| CL Microstructure | |
| CO2 | |
| CO2 | |
| Co3O4 | |
| coating | |
| colloidal electrophoretic deposition | |
| combustion | |
| Combustion Synthesis | |
| Composite membranes | |
| control feeding strategies | |
| control strategies | |
| Copper oxide | |
| current density | |
| curriculum | |
| D | |
| dark fermentation | |
| Dark-fermentation | |
| Data acquisition | |
| DC-DC Converter | |
| Decarbonization | |
| decomposition | |
| Deep learning | |
| Degree of sulfonation | |
| DRI | |
| Dry anaerobic digestion | |
| E | |
| Ecological restoration | |
| Educational | |
| Effective Transport Coefficients | |
| Efficiency | |
| efficiency* | |
| Electricity generation | |
| electrocatalysis | |
| electrocatalyst | |
| electrocatalysts | |
| electrocatalysts | |
| Electrochemical hydrogen compressor | |
| Electrodeposition | |
| Electrolysers | |
| Electrolysis | |
| Electrolytic membranes | |
| electrolyzer | |
| Electrolyzer | |
| electrophoretic deposition | |
| Electroplating | |
| Electroplating | |
| Energy | |
| Energy security | |
| Energy sustainability | |
| Energy Sustainable Communities | |
| Energy Transition | |
| Environmental justice | |
| Environmental sensors | |
| ETHANOL | |
| exergetic analysis | |
| F | |
| factors improving hydrogen uptake | |
| Faradaic efficiency | |
| FC Power Conditioning | |
| FC Stack Power System | |
| FC Stack System | |
| FC Voltage Conditioning | |
| fermentation | |
| Flow fields | |
| fluorinated materials | |
| fluorine industry | |
| Fluorites | |
| Food waste | |
| Fotocatálisis heterogénea | |
| Freight railway | |
| Fuel Cell | |
| Fuel cells | |
| fuel cells | |
| fungal pretreatment | |
| G | |
| g-C3N4 | |
| gamma irradiation | |
| Gas Trapping | |
| Generación de hidrógeno | |
| Geopolitics | |
| Geospatial analysis | |
| Glycerol photoreforming | |
| graphene oxide | |
| Graphical interface | |
| Graphitic carbon nitride | |
| Green | |
| Green hydrogen | |
| green hydrogen | |
| H | |
| H2 | |
| H2 photoproduction | |
| HARMONICS | |
| HCl | |
| HEO | |
| HER | |
| Heterojunctions | |
| High impact polystyrene (HIPS) | |
| High-energy milling | |
| High-pressure torsion (HPT) | |
| Hydrogen | |
| Hydrogen | |
| hydrogen blends | |
| Hydrogen carrier | |
| Hydrogen Diffusion | |
| hydrogen economy | |
| Hydrogen Electrochemical Compression | |
| Hydrogen embrittlement | |
| Hydrogen Energy Viability | |
| hydrogen evolution | |
| hydrogen evolution reaction | |
| hydrogen fuel cells components | |
| Hydrogen Generator | |
| Hydrogen permeability | |
| Hydrogen production | |
| Hydrogen production | |
| Hydrogen Production Laboratory | |
| Hydrogen purification | |
| hydrogen storage | |
| Hydrogen-powered vehicles | |
| Hydrogen-producing-bacteria (HPB) | |
| hydrogenotrophy | |
| I | |
| indigenous | |
| Industrial valves | |
| Industry | |
| integrated hybrid system | |
| Intercritical annealing | |
| Interleaved Converter | |
| ionic conductivity | |
| iridium | |
| Iridium oxide | |
| K | |
| KOH separation | |
| L | |
| Lactate-driven dark fermentation | |
| Lactic acid | |
| Lactic Acid Bacteria | |
| Lactic-acid-bacteria (LAB | |
| Lake | |
| Lake of Pátzcuaro | |
| Latin America | |
| LDHs | |
| lignocellulose | |
| Long-term performance | |
| low Pt nanocatalysts | |
| low-mesophilic temperature | |
| M | |
| magnesium intermetallics | |
| magnesium mixture | |
| Magnesium silicate | |
| Manganatos de litio-níquel | |
| Manganese oxide | |
| mechanical milling | |
| Medium entropy alloys (MEA) | |
| Medium manganese steel | |
| melamine | |
| Membrane hydration | |
| metal recovery | |
| metal-free electrocatalyst | |
| Metal/TiO2-carbon composites | |
| methane | |
| Methane decomposition | |
| Mexico | |
| Mg(BH4)2 | |
| Mg2Ni | |
| Micro-CHP | |
| Microbial communities | |
| Microbial Electrolysis Cells | |
| microbial fuel cell | |
| Microbial-ratios | |
| Microkinetic Modeling | |
| Microstructural characterization | |
| MPPT | |
| multicomponent mixtures | |
| México | |
| N | |
| N-doped mesoporous carbon | |
| Nanocomposites | |
| Nanohybrids | |
| Nanoparticles | |
| National Energy System | |
| native inoculum | |
| Native microbiota | |
| natural gas | |
| nejayote | |
| Neodymium | |
| Ni | |
| Ni-Co-Al2O3-SiO2-WOx | |
| Ni-Cr alloy | |
| nickel | |
| Nickel Foam | |
| Nickel molybdenum | |
| nickel plating electrodes | |
| Nickel-based catalyst | |
| NiMo | |
| nitrogen doping | |
| Nitrogen reduction reaction (NRR) | |
| Nitrogen-doped mesoporous carbon | |
| Numerical Simulation of Electrochemical Systems | |
| O | |
| OER | |
| OLTC | |
| optimization | |
| Organic fraction of municipal solid waste | |
| organic waste | |
| ORR | |
| Oxygen Evolution Reaction | |
| oxygen reduction reaction | |
| Oxygen reduction reaction (ORR) | |
| Oxygydrogen gas | |
| Oxyhydrogen | |
| P | |
| Palladium | |
| Palma Alta del Pacífico | |
| Parallel process | |
| Pathways | |
| Patzcuaro | |
| Pd nanomaterials | |
| PEC | |
| PEM | |
| PEM Electrolyzer | |
| PEM fuel cell applications | |
| PEM fuel cells | |
| Permeability | |
| Peroviskite composites | |
| perovskite–Pt composites | |
| Photocatalyisis | |
| Photocatalysis | |
| Photocatalysis | |
| Photocatalyst | |
| Photocatalyst TiO2 | |
| Photocatalytic hydrogen generation | |
| Photocatalytic hydrogen production | |
| photoreforming | |
| Plasma Focused Ion Beam | |
| platinum | |
| Polyelectrolytes | |
| polymer membranes | |
| porous electrode | |
| porous electrodes | |
| poultry litter | |
| Power converters | |
| Power-to-X | |
| Predictive control | |
| Predictive modeling | |
| Process Simulation | |
| production | |
| profitability | |
| Proteinaceous compounds | |
| Proton Exchange Membrane | |
| Pt-Ag/Al2O3-WOx/Cordierita | |
| Pt-free catalyst | |
| Pt-Ni cocatalyst | |
| PtNiMo | |
| pyrolysis | |
| pyrolysis | |
| Q | |
| Quantum-dots | |
| R | |
| Reaction Mechanism Analysis | |
| REACTIVE POWER | |
| Real-time monitoring system | |
| recycling | |
| Renewable energy | |
| renewable hydrogen | |
| Renewable Synthetic Fuels | |
| Residential Sector | |
| Resilient system | |
| Resorcinol-formaldehyde polymeric resins | |
| Resorcinol-formaldehyde resin | |
| Ruthenium oxide | |
| S | |
| S/I ratio | |
| Scanning Electron Microscope | |
| SCR-NO | |
| Seawater | |
| selectivity | |
| Sensitive dye | |
| shrinking core model | |
| simulation | |
| sodium batteries | |
| SOFC | |
| solid electrolyte | |
| Solid electrolytes | |
| Solid Oxide | |
| Sotol Bagasse | |
| Sr-doped perovskites | |
| stainless steel mesh | |
| steel industry | |
| stoichiometry | |
| strontium ferrite | |
| Strontium tantalates | |
| sulfonation | |
| sustainability | |
| sustainability criteria | |
| Sustainable | |
| Sustainable agriculture | |
| Sustainable chemistry | |
| Sustainable energy | |
| T | |
| Technology Scaling | |
| temperature | |
| temperature* | |
| Thermal pyrolysis | |
| Thermodynamic simulation | |
| TiO2 | |
| titanium electrodes | |
| Total solids | |
| Transition metal doping | |
| Transmission Electron Microscope | |
| Transportation | |
| V | |
| Vanadium Disulfide | |
| VFAs | |
| W | |
| waste | |
| Water | |
| water electrolysis | |
| Water Hyacinth | |
| Water splitting | |
| Wobbe index | |
| X | |
| X-ray Photoelectron Spectroscopy | |
| Y | |
| Young Human Capital | |
| Z | |
| Z-scheme | |
| zero-gap | |
| zirconia coatings | |
| ZnAlFe mixed metal oxides | |