Hydrogen as carbon-free fuel is a very promising candidate for climate-neutral internal combustion engine operation. In comparison to other renewable fuels, hydrogen does obviously not produce CO2 emissions. In this work, two concepts of hydrogen internal combustion engines (H2-ICEs) are investigated experimentally. One approach is the modification of a state-of-the-art gasoline passenger car engine using hydrogen direct injection. It targets gasoline-like specific power output by mixture enrichment down to stoichiometric operation. Another approach is to use a heavy-duty diesel engine equipped with spark ignition and hydrogen port fuel injection. Here, a diesel-like indicated efficiency is targeted through constant lean-burn operation. The...
Combustion of hydrocarbons in internal combustion engines results in emissions that can be harmful b...
For the most part, gasoline engines operate close to stoichiometry because of the high power density...
AbstractLarge output power, compactness and lightness in weight are indispensable for vehicular engi...
The turbocharged direct injection lean burn Diesel engine is the most efficient engine now in produc...
This paper provides a comprehensive review and critical analysis of the latest research results in a...
A paradigm shift towards the utilization of carbon-neutral and low emission fuels is necessary in th...
Hydrogen-fueled internal combustion engines (H2 ICEs) are an affordable, practical and efficient tec...
Hydrogen-fueled internal combustion engines (H2 ICEs) are an affordable, practical and efficient tec...
Many technologies are being developed to solve the trouble of the urban pollution. Among other solut...
The turbocharged direct injection lean burn Diesel engine is the most efficient engine now in produc...
The demand for fossil fuels is increasing because of globalization and rising energy demands. As a r...
Hydrogen has many excellent combustion properties for improving combustion and emissions performance...
This paper reports an investigation of the engine performance and emissions of an engine burning hyd...
Hydrogen as a fuel in Internal Combustion engines is a solution for the near future to realize zero ...
For the most part, gasoline engines operate close to stoichiometry because of the high power density...
Combustion of hydrocarbons in internal combustion engines results in emissions that can be harmful b...
For the most part, gasoline engines operate close to stoichiometry because of the high power density...
AbstractLarge output power, compactness and lightness in weight are indispensable for vehicular engi...
The turbocharged direct injection lean burn Diesel engine is the most efficient engine now in produc...
This paper provides a comprehensive review and critical analysis of the latest research results in a...
A paradigm shift towards the utilization of carbon-neutral and low emission fuels is necessary in th...
Hydrogen-fueled internal combustion engines (H2 ICEs) are an affordable, practical and efficient tec...
Hydrogen-fueled internal combustion engines (H2 ICEs) are an affordable, practical and efficient tec...
Many technologies are being developed to solve the trouble of the urban pollution. Among other solut...
The turbocharged direct injection lean burn Diesel engine is the most efficient engine now in produc...
The demand for fossil fuels is increasing because of globalization and rising energy demands. As a r...
Hydrogen has many excellent combustion properties for improving combustion and emissions performance...
This paper reports an investigation of the engine performance and emissions of an engine burning hyd...
Hydrogen as a fuel in Internal Combustion engines is a solution for the near future to realize zero ...
For the most part, gasoline engines operate close to stoichiometry because of the high power density...
Combustion of hydrocarbons in internal combustion engines results in emissions that can be harmful b...
For the most part, gasoline engines operate close to stoichiometry because of the high power density...
AbstractLarge output power, compactness and lightness in weight are indispensable for vehicular engi...