Super-high temperature molecular thermal decomposition method and device
Abstract
A super-high temperature molecular thermal decomposition device comprises a high temperature thermal decomposition device, a smoke decomposition device, and an automatic control device; an exhausting tube installed between the high temperature thermal decomposition device and the smoke decomposition device. The high temperature thermal decomposition device includes a combustion chamber. The combustion chamber has a cover, two electrode plates, and two electrode rods. The bottom of the combustion chamber is paved with a plurality of ball shape light illuminator Therefore, the transient temperature of the light illuminator is above 3000 degree C. Therefore, the waste in the decomposition device are decomposed and gasified transiently. The gas from the exhausting tube will pass through the combustion chambers one by one. The working principle of each combustion chamber is identical to that of the combustion chamber. The poisonous gas is processed by the combustion chambers of the smoke decomposition device and then is decomposed to become nonpoisonous gas.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A super-high temperature molecular thermal decomposition method comprising:
(1) placing a light emitter into a bottom plate of a combustion chamber of a high temperature thermal decomposition device; (2) drawing a waste into the combustion chamber of the high temperature thermal decomposition device and a cover of the combustion chamber; (3) extracting air in the exhausting gas cooling device to be lack of oxygen; (4) adding volts AC power to electrode rods of high temperature thermal decomposition device; (5) causing the light emitter to have a temperature higher than 3000 degree C. by electric arc of two electrode plates; (6) gasifying the waste; (7) passing the poisonous gas after gasifying to the first combustion chamber of the smoke decomposition device; (8) processing the poisonous gas in the combustion chamber by steps (4) and (5) so as to decompose the poisonous gas; (9) passing the poisonous gas through the combustion chambers in step (8); (10)causing the gasified poisonous gas to achieve the standard of environment protection.
2 . The super-high temperature molecular thermal decomposition method as claimed in claim 1 , wherein as a smoke decomposition device is added to a rear end of the exhausting gas cooling device, then the following steps are performed:
(a) passing the gas from the smoke decomposition device to the exhausting gas cooling device and diluting the gas by water flow; (b) restoring the diluted gas back to the air.
3 . The super-high temperature molecular thermal decomposition method as claimed in claim 1 , wherein the light emitter is non-iron metal.
4 . The super-high temperature molecular thermal decomposition method as claimed in claim 1 , wherein a voltage of the AC power is at least 100 volts.
5 . The super-high temperature molecular thermal decomposition method as claimed in claim 1 , wherein a current of the AC power is at least 15 ampere.
6 . The super-high temperature molecular thermal decomposition method as claimed in claim 3 , wherein the non-iron metal is carbon.
7 . A super-high temperature molecular thermal decomposition device comprising a high temperature thermal decomposition device, a smoke decomposition device, and an automatic control device; an exhausting tube being installed between the high temperature thermal decomposition device and the smoke decomposition device; wherein
the high temperature thermal decomposition device includes a combustion chamber; the combustion chamber has a cover, two electrode plates, and two electrode rods; the cover is installed above the combustion chamber and has locking stud structure; a bottom of the combustion chamber is paved with a plurality of ball shape light illuminator, the electrode plates are installed at a right and a side of the combustion chamber, respectively, and are connected to the electrode rods; an AC power is added to the electrode rods so that the two electrode plates are conductive and thus generates electric arc; therefore, the transient temperature of the light illuminator is above 3000 degree C.; therefore, the waste in the decomposition device are decomposed and gasified transiently; after gasifying, the poisonous gas will be guided to the decomposition device; the smoke decomposition device is formed by at least one combustion chamber; the gas from the exhausting tube will pass through the combustion chambers one by one; the working principle of each combustion chamber is identical to that of the combustion chamber; poisonous gas is processed by the combustion chambers of the smoke decomposition device and then is decomposed to become nonpoisonous gas; and the automatic control device is operated, set, controlled and viewed conditions of the high pressure decomposition device and the smoke decomposition device by the user and is connected to an air-extracting apparatus for extracting the combustion chambers to be lack of oxygen to be suitable for the operation condition.
8 . The super-high temperature molecular thermal decomposition device as claimed in claim 1 , wherein there are eight smoke decomposition devices.
9 . The super-high temperature molecular thermal decomposition device as claimed in claim 1 , wherein, a rear end of the smoke decomposition device is added with an exhausting gas cooling device so that the exhausting gas is diluted.Join the waitlist — get patent alerts
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