Carbon cleaning machine is a machine that uses the catalytic properties, combustion-supporting properties of oxyhydrogen gas, high temperature properties of oxyhydrogen flame, and the properties of water generated by oxyhydrogen flame to remove carbon in the cylinder volume of automobile engines. In fact, it is a hydrogen-oxygen generator and some accessories.
Gas production principle
The carbon cleaning machine uses water as the raw material, which is decomposed into hydrogen and oxygen by electrification. The hydrogen is used as the raw material, and the oxygen is used for combustion. Hydrogen-oxygen mixture is equivalent to a catalyst for gasoline to support combustion.
Principle of carbon removal
The carbon cleaner extracts hydrogen and oxygen atoms in the water by electrolysis to form a hydrogen-oxygen mixed flow, which is input into the engine combustion chamber through the engine intake manifold. After the Brown gas fills the engine combustion chamber, it is ignited and ignited. Active atoms such as O, H and OH can be generated during high-temperature combustion. On the one hand, it can promote the high-temperature cracking of medium and long hydrocarbon chains in gasoline and accelerate the oxidation reaction), and the principle of oxygen-enriched combustion (wax and colloid in gasoline Other impurities are also composed of long hydrocarbon chains or ultra-long hydrocarbon chains, and active atoms such as O, H, and OH can also accelerate their cracking and eventually remove carbon deposits), the principle of water-hydrogen circulation and other Brownian gas characteristics affect engine carbon deposits. It is a qualitative leap in the field of car maintenance to carry out comprehensive and thorough removal to restore the power of the car without causing any damage to the engine, avoiding the insufficiency of traditional chemical decarbonizers [2].
Catalysis Principle
Gasoline is a heavy molecular chain hydrocarbon with many carbon-hydrogen bonds. The intermediate product generated during the combustion process is CO. According to theoretical analysis and experimental testing, CO is in the case of pure air, even if the temperature is 700 degrees. , the combustion is also incomplete. However, after introducing hydrogen-oxygen molecules and hydrogen-oxygen radicals, the combustion is significantly accelerated. At the same time, because the temperature of the oxyhydrogen flame is as high as 2800 degrees, any incombustible carbides will be gradually burned away.
