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Liquid dust coagulant

A coagulant and dust technology, applied in the field of coagulants and fine dust coagulants, can solve the problems of small size, large specific surface area, difficult to remove, etc., and achieve the effects of low cost, easy removal and convenient use

Inactive Publication Date: 2015-11-11
BAOHUSAN ENVIRONMENTAL PROTECTION SCI & TECH CHENGDU
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

These fine dusts are difficult to remove due to their small size, large specific surface area, and the formation of relatively stable aerosols in the air. Some general physical filtration methods for larger particles cannot play a similar role in the removal of fine dust. Effect
[0003] In response to this problem, some methods with high efficiency for the removal of fine dust have adopted the idea of ​​agglomerating the fine dust first and then removing it.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0017] Dissolve 20 parts by mass of acrylamide and 4 parts by mass of sodium hydroxide in 100 parts by mass of water, stir evenly to obtain the first solution, heat it up to 90°C, and reflux at a constant temperature under a nitrogen atmosphere. Then add 10 parts by mass of acrylic acid to the first solution, reflux at constant temperature for 4 hours under stirring to obtain the second solution, then slowly cool down to 60°C, keep the temperature, and add 0.05 parts by mass of silane coupling solution to the solution agent, the coupling agent used is kh550, after stirring evenly, add 5 parts by mass of nano-silica, stir at a constant temperature for 10 minutes to obtain the third solution, cool the third solution to 40°C, and add 2 parts by mass of a molecular weight of 50000 The cellulose particles were refluxed at a constant temperature for 40 minutes under a nitrogen atmosphere to obtain a fourth solution, and 8 parts by mass of ethylene glycol was added to the fourth solut...

Embodiment 2

[0019] Dissolve 30 parts by mass of acrylamide and 6 parts by mass of sodium hydroxide in 100 parts by mass of water, stir evenly to obtain the first solution, raise the temperature to 80°C, and reflux at a constant temperature under a nitrogen atmosphere. Then add 20 parts by mass of acrylic acid to the first solution, reflux at constant temperature for 6 hours under stirring to obtain the second solution, then slowly cool down to 70°C, keep the temperature, and add 0.105 parts by mass of silane coupling solution to the solution agent, the coupling agent used is kh550, after stirring evenly, add nano-silica with 7 parts by mass, stir at constant temperature for 20 minutes to obtain the third solution, cool the third solution to 50°C, and add 5 The cellulose particles were refluxed at a constant temperature for 60 minutes under a nitrogen atmosphere to obtain a fourth solution, and 10 parts by mass of ethylene glycol was added to the fourth solution and stirred evenly to obtain...

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PUM

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Abstract

The invention discloses a liquid dust coagulant, belonging to the field of coagulants. The liquid dust coagulant is synthesized from 20-30 parts by mass of acrylic, 4-6 parts by mass of sodium hydroxide, 100 parts by mass of water, acrylic acid, nano silicon dioxide, cellulose, ethylene glycol and a silane coupling agent, wherein the mass ratio of the acrylic acid to the acrylamide is 1:(1.5-2), the mass ratio of the nano silicon dioxide to the acrylamide is (5-7):(20-30), the mass ratio of the cellulose to the acrylic acid is (1-2):(5-8), and the mass ratio of the ethylene glycol to the acrylamide is (8-10):(20-30). The liquid dust coagulant can effectively coagulate fine dust in air.

Description

technical field [0001] The invention relates to the technical field of coagulants, especially fine dust coagulants. Background technique [0002] Solid particles with a diameter of 0.1-5 μm in the air have a significant impact on the quality of the air, especially particulate matter with a diameter of about 2.5 μm, namely PM2.5, which is very harmful to the air and extremely harmful to the human body . These fine dusts are difficult to remove due to their small size, large specific surface area, and the formation of relatively stable aerosols in the air. Some general physical filtration methods for larger particles cannot play a similar role in the removal of fine dust. Effect. [0003] In response to this problem, some methods with high efficiency for the removal of fine dust have adopted the idea of ​​agglomerating the fine dust first and then removing it. Contents of the invention [0004] The object of the present invention is to provide a liquid coagulant that can ...

Claims

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Application Information

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IPC IPC(8): C08L33/26C08L1/02C08K3/36C08K5/54C08F220/56C08F220/06C09K3/22
Inventor 陈生力
Owner BAOHUSAN ENVIRONMENTAL PROTECTION SCI & TECH CHENGDU
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