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HHO Hydrogen Generator

Many experts say that oil prices will continue to soar in the future so there is a need for alternative fuel. The National Aeronautics and Space Administration (NASA) uses liquid hydrogen and oxygen combustion for launching space shuttles and the agency is urging the people to do the same in their automobiles. Hydrogen-powered Fuel Cell Cars are available but they are quite expensive. The use of the HHO Hydrogen Generator is a great alternative.

 

Automotive hydrogen generators are also called HHO, on-demand hydrogen, and hydrogen injection. The purpose of an HHO hydrogen generator is to deliver a small amount of hydrogen and oxygen gas (HHO) into the engine in order to improve the combustion of your fuel. This results in higher mileage and less emissions.

 

Hydrogen, which is one of the most abundant elements on earth, is very light with an atomic weight of only 1.00794. This element reduces reliance on petroleum gasoline, which can also be used for domestic purposes. An HHO hydrogen generator can be attached to your existing car engine to improve mileage.

 

Producing hydrogen from water is preferred because it is cheaper than generating from carbon. There are numerous companies that sell hydrogen generators and conversion kits. With basic car mechanism knowledge, you can definitely make a hydrogen generator at home. You must remember that hydrogen is highly combustible so great care must be taken while handling this gas.

 

A HHO hydrogen generator conversion kit differs from one brand to another. Some only include e-books that explain how to build a hydrogen generator using materials that you can buy in your local hardware store, while others are already complete with all the necessary materials. The instructional materials give you step-by-step instructions on how to make a hydrogen generator for your car.

 

The electrolysis of water is one of the most common techniques. A HHO hydrogen generator that uses this method works by utilizing high-pressure bipolar or conventional cells to separate water. The power that is consumed is as low as 5 kilowatts per cubic meter of hydrogen. The hydrogen produced by this technique is 99.8% pure and can be stored in tanks for future usage.

 

Another widely used method is the dissociation of ammonia. Commercial-grade ammonia is stored in tanks or cylinders then is catalytically separated into nitrogen and hydrogen. The resulting gas contains 75% hydrogen and 25% nitrogen. The hydrogen produced can be further cleaned in molecular filters to remove traces of ammonia and moisture. This type of HHO hydrogen generator is very cheap but the rate at which hydrogen gas is produced is low compared to electrolysis.

 

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