Emission scenarios for a global hydrogen economy and the consequences for global air pollution
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- Type
- article
- Published
- 2011-08-01
- Cited by
- 67
- References
- 58
- Access
- Open access
- OpenAlex
- https://openalex.org/W2001149096
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:153479704
Keywords
Hydrogen, Hydrogen production, Fossil fuel, Environmental science, Hydrogen economy
References
- Moving Towards Hydrogen Via Natural Gas: Implications for the Netherlands
- Background report to the OECD environmental Outlook to 2030: overviews, details, and methodology of model-based analysis.
- Simulation of Global Hydrogen Levels Using a Lagrangian Three-Dimensional Model
- Hydrogen and the environment
- Intergrated modelling of global environmenthal change : An overview of IMAGE 2.4
- Effects of aerosols on tropospheric oxidants: A global model study
- Air Pollution and Climate-Forcing Impacts of a Global Hydrogen Economy
- Potential Environmental Impact of a Hydrogen Economy on the Stratosphere
- Global energy scenarios meeting stringent CO2 constraints--cost-effective fuel choices in the transportation sector
- A three‐dimensional model of molecular hydrogen in the troposphere
- Response of a coupled chemistry‐climate model to changes in aerosol emissions: Global impact on the hydrological cycle and the tropospheric burdens of OH, ozone, and NOx
- Simulation of secular trends in the middle atmosphere, 1950–2003
- Costs of Storing and Transporting Hydrogen
- Global analyses of sea surface temperature, sea ice, and night marine air temperature since the late nineteenth century
- Liquid hydrogen: Potential, problems, and a proposed research program
- Assessment of the global impact of aerosols on tropospheric oxidants
- The impact of nonmethane hydrocarbon compounds on tropospheric photochemistry
- Emission database for global atmospheric research (Edgar)
- Effects of SO2 and NOx control on energy-efficiency power generation
- The role of molecular hydrogen and methane oxidation in the water vapour budget of the stratosphere
Cited by
- On a Schottky diode-type hydrogen sensor with pyramid-like Pd nanostructures
- Isotopic signatures of production and uptake of H 2 by soil
- Final step for CO syngas clean-up: comparison between CO-PROX and CO-SMET processes
- Impact of a possible future global hydrogen economy on Arctic stratospheric ozone loss
- Performance evaluation and comparison of fuel processors integrated with PEM fuel cell based on steam or autothermal reforming and on CO preferential oxidation or selective methanation
- Global air quality and climate
- A microreactor with superhydrophobic Pt–Al2O3 catalyst coating concerning oxidation of hydrogen off-gas from fuel cell
- Efficiency analysis of novel Liquid Organic Hydrogen Carrier technology and comparison with high pressure storage pathway
- Hydrogen Gas Sensor Based on ZnO Nanoroads Grown on Si by Thermal Evaporation
- Palladium supported on reduced graphene oxide as a high-performance catalyst for the dehydrogenation of dodecahydro-N-ethylcarbazole
- Quantifying Molecular Hydrogen Emissions and an Industrial Leakage Rate for the South Coast Air Basin of California
- Review of Linked Modelling of Low-Carbon Development, Mitigation and its Full Costs and Benefits
- Catalytic dehydrogenation study of dodecahydro-N-ethylcarbazole by noble metal supported on reduced graphene oxide
- Potential for hydrogen and Power-to-Liquid in a low-carbon EU energy system using cost optimization
- The Role of Surface Texture on the Photocatalytic H2 Production on TiO2
- Societal penetration of hydrogen into the future energy system: Impacts of policy, technology and carbon targets
- Global modelling studies of hydrogen and its isotopomers using STOCHEM-CRI: Likely radiative forcing consequences of a future hydrogen economy
- Fabrication of ILs-Assisted AgTaO3 Nanoparticles for the Water Splitting Reaction: The Effect of ILs on Morphology and Photoactivity
- Atmospheric Impacts of Hydrogen as an Energy Carrier
- Global modeling of hydrogen using GFDL-AM4.1: Sensitivity of soil removal and radiative forcing
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