Air catalyst for fuel oil assisted combustion, and preparation method and application thereof
A catalyst and air technology, applied in the field of air catalyst and its preparation, can solve the problems of no combustion residue, purification, inconvenient installation or use of air catalyst, etc., achieve remarkable fuel combustion efficiency, convenient use, and improve fuel combustion efficiency effect
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Embodiment 1
[0024] This embodiment provides an air catalyst for fuel combustion and its preparation method and application. Specifically, the preparation method of the air catalyst includes the following steps:
[0025] (1) Weigh 300g of negative ion powder and 700g of far-infrared nano-powder for later use; wherein, the release amount of the negative-ion powder is 60000ions, the particle size of the negative-ion powder is 3000 mesh, and the far-infrared nano-powder is The infrared emission rate in the wavelength range of 2-18μm is over 92%.
[0026] (2) Mix the negative ion powder and far-infrared nanometer powder weighed above to obtain mixed rare earth powder.
[0027] (3) Pack the mixed rare earth powder with a plastic bag of 30-80g per bag, and put on an outer packing sack for protection after packaging, and then the air catalyst can be obtained.
[0028] The air catalyst can be placed directly above the intake air grid of the engine, which can improve the fuel combustion efficiency...
Embodiment 2
[0030] This embodiment provides an air catalyst for fuel combustion and its preparation method and application. Specifically, the preparation method of the air catalyst includes the following steps:
[0031] (1) Weigh 700g of negative ion powder and 300g of far-infrared nano-powder for later use; wherein, the release amount of the negative-ion powder is 70000ions, the particle size of the negative-ion powder is 5000 mesh, and the far-infrared nano-powder is The infrared emission rate in the wavelength range of 2-18μm is over 92%.
[0032] (2) Mix the negative ion powder and far-infrared nanometer powder weighed above to obtain mixed rare earth powder.
[0033] (3) Encapsulate the mixed rare earth powder in a plastic thin bottle with a weight of 40-100g per bottle, and then put it in a sack to obtain an air catalyst.
[0034] The air catalyst can be placed directly above the intake air grid of the engine, which can improve the fuel combustion efficiency of the engine.
Embodiment 3
[0036] This embodiment provides an air catalyst for fuel combustion and its preparation method and application. Specifically, the preparation method of the air catalyst includes the following steps:
[0037] (1) Weigh 400g of negative ion powder and 600g of far-infrared nano-powder for later use; wherein, the release amount of the negative-ion powder is 80000ions, the particle size of the negative-ion powder is 4000 mesh, and the far-infrared nano-powder is The infrared emission rate in the wavelength range of 2-18μm is over 92%.
[0038] (2) Mix the negative ion powder and far-infrared nanometer powder weighed above to obtain mixed rare earth powder.
[0039] (3) After mixing the mixed rare earth powder and rubber according to the mass ratio of 3:7, the pellets are then injection molded into a net block, and the quality of each net block is controlled at 80-250g, and the air catalyst can be obtained. Specifically, the rubber can be made of TPU material.
[0040] The air cat...
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