Novel air purifying agent and preparation process thereof

An air purifier and preparation technology, which is applied in biocides, disinfectants, bactericides, etc., can solve the problems of low loading rate of nano-titanium dioxide, weak photocatalytic performance, and difficult industrial production, and achieve the goal of improving purification efficiency and purification The effect of stability, good emulsification, and simple preparation method

Inactive Publication Date: 2018-10-12
合肥奇呗数字科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The air purifier described in this invention has a better air purification effect, but its preparation method has the following disadvantages: (1) mineral materials need to be activated by immersing them in acid or alkali, and then rinsed with clear water, resulting in a large amount of waste water in the preparation process It needs to be processed, and the pressure of environmental protection is high; (2) the activated and dried mineral materials need to be ultrafinely crushed to 800-2000 mesh, which consumes a lot of energy; (3) 5-60% of activated carbon is required, which increases the cost
These methods either have a low loading rate of nano-titanium dioxide and weak photocatalytic performance; or the process is complex and difficult to produce industrially; or the calcination temperature is high and the energy consumption is large, which has certain limitations.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0030] A new type of air purifier, comprising the following raw materials in parts by weight: 22 parts of nano-titanium dioxide, 27 parts of nano-zinc oxide, 15 parts of graphene oxide emulsion, 17 parts of modified sepiolite, 10 parts of modified zeolite, 8 parts of activated carbon, 12 parts of active agent, 10 parts of nitrate, 7 parts of butyl titanate, 6 parts of ethanol solution, 14 parts of dispersant and 12 parts of deionized water.

[0031] A preparation process of a novel air purifier, comprising the following preparation steps:

[0032] a. Introduce nano-titanium dioxide, nano-zinc oxide, modified zeolite and activated carbon into the high mixer in sequence, stir and pulverize at a speed of 220r / min for 24min, then add butyl titanate and ethanol solution, heat at 62°C and Stir the reaction for 20min to obtain mixture 1;

[0033] b. Add the modified sepiolite to the graphene oxide emulsion, heat to 48°C, stir evenly, then add active agent and nitrate, heat up to 56°...

Embodiment 2

[0043] A new type of air purifier, comprising the following raw materials in parts by weight: 26 parts of nano-titanium dioxide, 27 parts of nano-zinc oxide, 17 parts of graphene oxide emulsion, 15 parts of modified sepiolite, 10 parts of modified zeolite, 11 parts of activated carbon, 8 parts of active agent, 12 parts of nitrate, 12 parts of butyl titanate, 10 parts of ethanol solution, 14 parts of dispersant and 15 parts of deionized water.

[0044] A preparation process of a novel air purifier, comprising the following preparation steps:

[0045] a. Introduce nano-titanium dioxide, nano-zinc oxide, modified zeolite and activated carbon into the high mixer in sequence, stir and pulverize at a speed of 200r / min for 20min, then add butyl titanate and ethanol solution, heat at 62°C and The reaction was stirred for 18 minutes to obtain mixture 1;

[0046] b. Add the modified sepiolite to the graphene oxide emulsion, heat to 48°C, stir evenly, then add active agent and nitrate, ...

Embodiment 3

[0056] A new type of air purifier, comprising the following raw materials in parts by weight: 24 parts of nano-titanium dioxide, 26 parts of nano-zinc oxide, 17 parts of graphene oxide emulsion, 15 parts of modified sepiolite, 13 parts of modified zeolite, 12 parts of activated carbon, 10 parts of active agent, 14 parts of nitrate, 10 parts of butyl titanate, 8 parts of ethanol solution, 14 parts of dispersant and 15 parts of deionized water.

[0057] A preparation process of a novel air purifier, comprising the following preparation steps:

[0058] a. Introduce nano-titanium dioxide, nano-zinc oxide, modified zeolite and activated carbon into the high mixer in sequence, stir and pulverize at a speed of 200r / min for 24min, then add butyl titanate and ethanol solution, heat at 62°C and The reaction was stirred for 18 minutes to obtain mixture 1;

[0059] b. Add the modified sepiolite to the graphene oxide emulsion, heat to 45°C, stir evenly, then add active agent and nitrate, ...

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PUM

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Abstract

The invention provides a novel air purifying agent and a preparation process thereof. The novel air purifying agent is prepared from components as follows: nano titania, nano zinc oxide, a graphene oxide emulsion, modified sepiolite, modified zeolite, activated carbon, an activator, nitrate, butyl titanate, an ethanol solution, a dispersant and deionized water. The air purifying agent is preparedwith a simple preparation method, is good in stability and high in adsorption rate and can effectively remove harmful gases in the air, kill bacteria in the air, purify air and keep the indoor air fresh.

Description

technical field [0001] The invention belongs to the technical field of air purification, and in particular relates to a novel air purifier and a preparation process thereof. Background technique [0002] At present, air purifiers are divided into two types, one is the air purifier that uses its own fragrance to cover up the odor, and the other is the air purifier that uses adsorption or chemical reaction to absorb or degrade harmful gases. The first one is just to cover up the odor, and does not remove the harmful gas itself; and the second one is currently divided into two types in the market, one is the traditional adsorption principle of activated carbon for adsorption. This method only absorbs the harmful gas, but does not completely remove it. The adsorbent needs to be replaced after the adsorption is saturated; the other is a new type of photocatalyst. Under light irradiation, the valence band electrons of the nano photocatalyst are excited to the conduction band, form...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01J20/20B01D53/02B01J20/30A01N59/16A01N31/02A01P3/00A01P1/00
CPCA01N31/02A01N59/16B01D53/02B01D2257/7027B01D2257/708B01J20/0211B01J20/0244B01J20/12B01J20/16B01J20/20
Inventor 罗厚秀
Owner 合肥奇呗数字科技有限公司
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