Electrolysis: Make Your Own Water Powered Engine | Liberty Engine

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Water Power

THE ENGINE WORKS!
with HH+ turns into fuel – 31 May 2022 | Liberty Engines

The forbidden engine is a reality. Create an engine that runs on hydrogen.

Join the Liberty Engines Project in this to create an engine that runs on in a few simple steps. It has always been said that the splitting of H2O into its molecules by is not efficient enough to be practical… But one team has developed an electrolyte capable of turning this technology on its head.

Generator Material

-powered engines using work by using electricity to split into oxygen and hydrogen. The resulting hydrogen can be used as a clean fuel to power a car by reacting with oxygen to create , either through burning in a combustion engine or catalysed to produce electricity in a fuel cell. This process can be powered by sources such as wind or solar power, making it an extremely clean and efficient method of producing fuel.

Electrolyte

The required to perform is at least as great as the useful obtained. However, adding an electrolyte can make the process much more efficient. This increased efficiency can lead to a significant reduction in the required for the process, making it more cost-effective and environmentally friendly.

By adding an electrolyte, the conductivity of the increases, leading to lower consumption during the process. This, in turn, makes the process more efficient and cost-effective. The use of electrolytes can also improve the Faradaic efficiencies of the cells, further enhancing their overall efficiency. Therefore, while the required for is significant, the addition of an electrolyte can greatly improve the efficiency of the process, making it a more viable and sustainable method for hydrogen production.

In general, an aqueous solution of caustic potash or soda is used as the electrolyte for . Sodium, potassium, chloride, calcium, magnesium, and phosphate in a liquid phase are examples of electrolytes. The conductivity of increases significantly when a -soluble electrolyte is added. An electrolyte must be chosen with care, and the cation of the electrolyte must have a lower electrode potential than H+.

To create an electrolyte for , you can follow these general instructions:

  1. Choose a Suitable Compound: Select a strong acid, a strong base, or a that is highly dissociative in solution. Examples include caustic potash, caustic soda, baking soda (sodium bicarbonate), or other -soluble salts.
  2. Prepare the Solution:
    • Fill a beaker with distilled to minimise contaminants in the solution.
    • Measure enough of the chosen compound to generate an electrolyte solution of sufficient strength to support the process.
  3. Mixing and Testing:
    • Stir the solution to ensure the compound is completely dissolved.
    • Test the conductivity of the solution, as the electrolyte should be highly dissociative and able to support the electrical flow.
  4. Caution:
    • Be mindful of the potential chemical reactions. For instance, if you are using a like NaCl, be aware that it can yield chlorine gas, which may not be desirable.

It's important to note that the specific electrolyte chosen can impact the efficiency and products of the process. Therefore, the selection should be based on the desired outcomes and safety considerations.

Timstamps

  • 00:00 Start
  • 01:02 Preparing the pieces to cut them
  • 01:24 Cutting the 304L stainless steel parts
  • 02:30 Drilling the pieces (One 6mm and one 11mm hole in each piece)
  • 08:18 Polishing the pieces
  • 03:58 Preparation of the Hydrolysis tank
  • 04:56 Cutting the M6 ​​threaded rods
  • 05:18 Assembly of the Hydrolysis reactor
  • 09:20 Preparation of the Hydrogen security container
  • 11:46 Manufacture of the support for the Hydrolysis equipment
  • 13:12 Electrical connections
  • 14:30 We remove the fuel tank and set up our Hydrolysis equipment
  • 16:14 Preparation of the air filter
  • 16:34 Filling the and secret electrolyte tanks HH+
  • 17:35 First test inside the workshop
  • 18:05 Carburetor adjustment

Source: THE WATER ENGINE WORKS! Electrolysis with HH+ turns water into fuel

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