Seven step advantages of HHO Technology Generators :
1. Savings in your actual fuel spending. This is valid for both highway and town (city) driving as well. Just imagine how much you can save by the end of the year!
2. Increases the power and performance of your vehicle. The more fuel you burn, the more the engine gets rattled up and wrecked. Once you switch to water, it enhance power and improves performance.
3. Reduces the CO2 emissions. Eliminating pollution and other harmful excretes our engines let out. Benefits all with doing something good for the environment.
4. Reduces the temperature in the engine. Also improves engine life-span since its burning at a much cooler state.
5. Removes the carbon in your motor and prevent future carbon build up. Saves stripping the engine for a de-coke.
6. Lower noise in the engine. HHO effect in the combustion cycle. The engine will sound much quieter than it was before, this is due to less combustion in your car, fuel burns quicker.
7. Increases the life span of your engine.
HHO
1977
NASA conducted research using hydrogen as a
supplemental fuel to gasoline on a 1969 production engine. Their research
specifically demonstrated that the higher flame speed of hydrogen was
responsible for being able to extend the efficient lean operating range of a
gasoline engine. They successfully used a methanol steam reformer for in situ
production of carbon monoxide and hydrogen.
Lean-mixture-ratio combustion
in internal-combustion engines has the potential of producing low emissions and
higher thermal efficiency for several reasons. First, excess oxygen in the
charge further oxidizes unburned hydrocarbons and carbon monoxide. Second,
excess oxygen lowers the peak combustion temperatures, which inhibits the
formation of oxides of nitrogen. Third, the lower combustion temperatures
increase the mixture specific heat ratio by decreasing the net dissociation
losses. Fourth, as the specific heat ratio increases, the cycle thermal
efficiency also increases, which gives the potential for better fuel economy.
generators - how they started, their history and function
1977
NASA conducted research using hydrogen as a supplemental fuel to gasoline on a 1969 production engine. Their research specifically demonstrated that the higher flame speed of hydrogen was responsible for being able to extend the efficient lean operating range of a gasoline engine. They successfully used a methanol steam reformer for in situ production of carbon monoxide and hydrogen.
Lean-mixture-ratio combustion in internal-combustion engines has the potential of producing low emissions and higher thermal efficiency for several reasons. First, excess oxygen in the charge further oxidizes unburned hydrocarbons and carbon monoxide. Second, excess oxygen lowers the peak combustion temperatures, which inhibits the formation of oxides of nitrogen. Third, the lower combustion temperatures increase the mixture specific heat ratio by decreasing the net dissociation losses. Fourth, as the specific heat ratio increases, the cycle thermal efficiency also increases, which gives the potential for better fuel economy.
NASA conducted research using hydrogen as a supplemental fuel to gasoline on a 1969 production engine. Their research specifically demonstrated that the higher flame speed of hydrogen was responsible for being able to extend the efficient lean operating range of a gasoline engine. They successfully used a methanol steam reformer for in situ production of carbon monoxide and hydrogen.
Lean-mixture-ratio combustion in internal-combustion engines has the potential of producing low emissions and higher thermal efficiency for several reasons. First, excess oxygen in the charge further oxidizes unburned hydrocarbons and carbon monoxide. Second, excess oxygen lowers the peak combustion temperatures, which inhibits the formation of oxides of nitrogen. Third, the lower combustion temperatures increase the mixture specific heat ratio by decreasing the net dissociation losses. Fourth, as the specific heat ratio increases, the cycle thermal efficiency also increases, which gives the potential for better fuel economy.