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According to the university research papers, the ceramics absorb the thermal energy from their surrounding environment then release it in a specific wavelength, breaking the intermolecular van der Waals force (the force that binds molecules) between the gasoline molecules. This results in the change of aggregation of gasoline molecules from 'cluster' to 'single molecule'. This changes several properties of the gasoline, such as surface tension and flash point. The surface tension is decreased, resulting in better atomization (smaller droplets) of the fuel, which provides a greater surface area to make contact with air, leading to far greater fuel efficiency. This in turn increases horsepower, reduces fuel consumption, reduces carbon build-up and reduces toxic and greenhouse exhaust emissions.
In summary, we restructure the environment for the fuel, water and air within the vehicle's operating system, to thereby deliver more kilometers per liter, reduce dangerous exhaust pollutants and most importantly, lower harmful greenhouse gases.
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