Nano far-infrared composite material

A composite material, far-infrared technology, applied in water/sludge/sewage treatment, water/sewage treatment, chemical instruments and methods, etc., can solve the problem of not being maximized, and the application of agricultural product research, planting, and breeding is rare. and other problems to achieve the effect of improving self-immunity and preventing pests and diseases

Inactive Publication Date: 2007-09-19
康来德(武汉)生物科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Water activation and ionization technology has some patents, but it is still rare in agricultural planting and breeding. It is limited to the experimental process, and it is even rarer to obtain a large increase in production by using a simple method.
The previous methods only generally involved water activation, but did not target the real absorption of organisms and other biological indicators, such as ZL01253776.4, which only involves a far-infrared radiation element device placed in a wi

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0015] 1. Add an appropriate amount of the above-mentioned 1600-mesh nanometer far-infrared composite material (which can account for 10-30% of the total weight) into silica gel, rubber, plastics, ceramics, fibers, paints, coatings, cement, glass fiber reinforced plastics and other neutral binders , can be made into products of various shapes and uses. The above materials can also be used as a carrier, the surface of which can be mixed with 50-90% of the binder (diluted) added by the nanometer far-infrared composite material, mixed and sprayed on the surface of the carrier for about 3-5 μ.

[0016] 2. Use 10-50% nanometer far-infrared composite powder mixed with plastic to make mesh and tubular products

[0017] 3. Mix 5-20% nanometer far-infrared composite powder into PVC plastic glue and paint to make colloid.

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PUM

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Abstract

The invention relates to a nano far IR compound material and its application. The nano far IR compound material produced by adding nano material TiO2 to the zirconium system far IR material mixes with the nano nickel, rare-earth, volcanic mud to form a new material. It can be applied widely in agricultural field and used for a live water source for agricultural use, fishing use and stock use to attain an increasing target. The material matches with the absorption peak of the plant and animal cells in 50 DEG C, with a normal emissivity of 0.92 in 8-25 mu, and of 0.93 in 14-25 mu, with a whole wave length integral emissivity of 0.91, with a relative far IR strong emission peak between 7.8 mu to 4.8-5.8 mu.

Description

technical field [0001] The invention relates to a method of doping nano-TiO in the manufacturing process of far-infrared materials 2 , Constitute a new far-infrared composite material, which is mixed with nano-nickel, rare earth mixture, and volcanic mud. At room temperature (50°C), the normal specific emissivity of 8-25 μm reaches 0.92, and the normal specific emissivity of 14-25 μm It can reach 0.93, and the full-wavelength integral emissivity is 0.91. The nanometer far-infrared composite material of the present invention has a relative far-infrared emission intensity peak between 7.8-12 μm and 4.8-5.8 μm, which is the best absorption intensity peak of plant and animal somatic cells, and thus has broad prospects for application in various fields of agriculture. Background technique [0002] There are already some patents on water activation and ionization technology, but its application in agricultural planting and breeding is still rare, and it is limited to the experime...

Claims

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Application Information

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IPC IPC(8): C04B35/462C02F1/00
Inventor 刘静
Owner 康来德(武汉)生物科技有限公司
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