简介概要

Effect of Rare Earth on Fuel Activation of Far Infrared Ceramic

来源期刊:JOURNAL OF RARE EARTHS2004年增刊第3期

论文作者:Xu Gangke Meng Junping LIANG Jinsheng LIANG Guangchuan Wang Lijuan

Key words:ceramic; far infrared rays; fuel; activation; environmental pollution; rare earths;

Abstract: This work relates to a new type of ceramic with far infrared rays emitting function for improving fuel efficiency, and more particularly for enhancing the combustion efficiency. According to the far infrared rays absorption properties of fuel, some rare earth is added to the ceramic to radiate some far infrared rays with special wavelength. And the effect of rare earth on the fuel activation of the ceramic was investigated.. It is shown that the rare earth cooperates with the ceramic improving the far infrared rays radiation ability. The radiance can reach 90%. With the device of the invention, the double bonds between carbon atoms in the hydrocarbon fuel are broken down to form smaller hydrocarbon molecules lowering the volatilization point thereby enhancing the combustion efficiency. According to the test results,the fuel consumption rate is improved by 4.4%. At the same time, deleterious gas output is reduced obviously to achieve energy conservation and prevent environmental pollution.

详情信息展示

Effect of Rare Earth on Fuel Activation of Far Infrared Ceramic

Xu Gangke1,Meng Junping1,LIANG Jinsheng1,LIANG Guangchuan1,Wang Lijuan1

(1.Institute of Power Source and Ecomaterials Science, Hebei University of Technology, Tianjin 300130, China)

Abstract:This work relates to a new type of ceramic with far infrared rays emitting function for improving fuel efficiency, and more particularly for enhancing the combustion efficiency. According to the far infrared rays absorption properties of fuel, some rare earth is added to the ceramic to radiate some far infrared rays with special wavelength. And the effect of rare earth on the fuel activation of the ceramic was investigated.. It is shown that the rare earth cooperates with the ceramic improving the far infrared rays radiation ability. The radiance can reach 90%. With the device of the invention, the double bonds between carbon atoms in the hydrocarbon fuel are broken down to form smaller hydrocarbon molecules lowering the volatilization point thereby enhancing the combustion efficiency. According to the test results,the fuel consumption rate is improved by 4.4%. At the same time, deleterious gas output is reduced obviously to achieve energy conservation and prevent environmental pollution.

Key words:ceramic; far infrared rays; fuel; activation; environmental pollution; rare earths;

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