Advanced aquarium filtering material with far infrared ray and preparation method thereof

A technology of far-infrared and filter materials, applied in the fields of filtration and separation, separation methods, chemical instruments and methods, etc., can solve the problems of easy deterioration of aquarium water quality, decreased immunity of ornamental fish, and easy to die, so as to improve immunity and metabolism. The effect of enhancing strength and promoting blood circulation

Inactive Publication Date: 2013-04-10
刘建明
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the water quality of aquariums using the previous high-grade aquarium filter materials is easy to deteriorate, and needs to be replaced within a few months, otherwise the immunity of high-end ornamental fish will decrease and death will occur easily.

Method used

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  • Advanced aquarium filtering material with far infrared ray and preparation method thereof
  • Advanced aquarium filtering material with far infrared ray and preparation method thereof
  • Advanced aquarium filtering material with far infrared ray and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0060] Example 1. A high-grade aquarium filter material with far infrared rays, wherein: the raw materials for the preparation of the bacteria house include 20 parts tourmaline, 8 parts silica bath clay, 40 parts magnesia clay, 15 parts albite powder, and 5 parts quartz powder , 12 parts of organic foamed particles; the organic foamed particles are polypropylene particles; the tourmaline is magnesia tourmaline or black tourmaline; the magnesia clay is SiO by weight 2 55.64%, Al 2 O 3 6.82%, Fe 2 O 3 1.05%, CaO4.71%, MgO20.35%, TiO 2 0.42%, K 2 O1.10%, Na 2 O0.35%, IL9.56%;

[0061] Preparation Process:

[0062] (1) Mixing ingredients, extrusion molding, drying,

[0063] (2) Raise the temperature uniformly from room temperature to 1180°C, and the uniform temperature rise time is 8 hours;

[0064] (3) Keep the temperature at 1180℃ for 1 hour;

[0065] (4) Then uniformly cool down to 1160℃, and the uniform cool down time is 0.5 hours;

[0066] (5) Keep the temperature at 1160℃ for 1 hour; ...

Embodiment 2

[0072] Example 2: A high-grade aquarium filter material with far infrared rays, wherein: the raw materials for the preparation of the bacteria house include 10 parts tourmaline, 8 parts silica bath clay, 40 parts magnesia clay, 15 parts albite powder, 15 parts quartz powder , 12 parts of organic foamed particles; the organic foamed particles are polypropylene particles; the tourmaline is magnesia tourmaline or black tourmaline; the magnesia clay is SiO by weight 2 55.64%, Al 2 O 3 6.82%, Fe 2 O 3 1.05%, CaO4.71%, MgO20.35%, TiO 2 0.42%, K 2 O1.10%, Na 2 O0.35%, IL9.56%;

[0073] Preparation Process:

[0074] (1) Mixing ingredients, extrusion molding, drying,

[0075] (2) Raise the temperature uniformly from room temperature to 1180°C, and the uniform temperature rise time is 8 hours;

[0076] (3) Keep the temperature at 1180℃ for 1 hour;

[0077] (4) Then uniformly cool down to 1160℃, and the uniform cool down time is 0.5 hours;

[0078] (5) Keep the temperature at 1160℃ for 1 hour;

[0...

Embodiment 3

[0083] Example 3. A high-grade aquarium filter material with far-infrared rays, wherein: the raw materials for the preparation of the bacteria house include 2 parts tourmaline, 8 parts silica bath clay, 40 parts magnesia clay, 15 parts albite powder, and 23 parts quartz powder , 12 parts of organic foamed particles; the organic foamed particles are polypropylene particles; the tourmaline is magnesia tourmaline or black tourmaline; the magnesia clay is SiO by weight 2 55.64%, Al 2 O 3 6.82%, Fe 2 O 3 1.05%, CaO4.71%, MgO20.35%, TiO 2 0.42%, K 2 O1.10%, Na 2 O0.35%, IL9.56%;

[0084] Preparation Process:

[0085] (1) Mixing ingredients, extrusion molding, drying,

[0086] (2) Raise the temperature uniformly from room temperature to 1180°C, and the uniform temperature rise time is 8 hours;

[0087] (3) Keep the temperature at 1180℃ for 1 hour;

[0088] (4) Then uniformly cool down to 1160℃, and the uniform cool down time is 0.5 hours;

[0089] (5) Keep the temperature at 1160℃ for 1 hour; ...

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Abstract

The invention discloses an advanced aquarium filtering material with a far infrared ray and a preparation method thereof, and belongs to the field of aquatic filtering materials. The filtering material is of a hollow cylindrical shape or a square three-dimensional shape and is prepared from the following raw materials in part by weight: 20 parts of tourmaline, 8 parts of diatomaceous earth, 40 parts of attaclay, 15 parts of albite powder, 5 parts of quartz powder and 12 parts of organic foaming particle. The finished product can be obtained by the following steps: raw material mixing, extrusion molding, drying, and certain curve sintering. The filtering material has the advantages that the filter material has good permeability, can well absorb and remove annonia, nitrite, hydrogen sulfide, heavy metal and other harmful substances decomposed from water and effectively inhibit the excessive multiplication and growth of algological organisms, and has good absorption effect on tangible impurities to achieve the effects of cleaning water, stabilizing pH value of water and softening water, thereby being the best choice for biological filtration.

Description

Technical field [0001] The invention discloses a filter material with far infrared rays and a preparation method thereof, and belongs to the field of aquatic ecological filter materials. In particular, it is a high-grade aquarium filter material with far infrared rays and a preparation method thereof. Background technique [0002] At present, most of the materials used for aquarium filtration on the market are glass ceramic rings. This ceramic ring uses high-quality natural silica as raw material, adopts a special process of ceramic production, high-temperature baking, and produces a strong specific surface area and super A porous ceramic ring, the ceramic ring is widely used in various biological filtration due to its extremely strong dirt interception ability. In biological filtration, it does not affect the PH value of the water body and can maintain the long-term stability of the water body PH value. The product has high porosity and can provide a better growth and reproduct...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01J20/26B01J20/30B01D39/14C02F3/34C02F3/00C02F1/28C02F1/30C02F1/50C04B38/06
Inventor 刘建明池平昌刘志海
Owner 刘建明
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