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Alga active efficient haze reducing agent

A kind of haze reducing agent and active technology, which is applied in the field of algae active high-efficiency haze reducing agent, which can solve the problems of limited speed, large proportion of sulfosuccinate, poor effect of dust and carbon dioxide, etc., to achieve rapid reduction and suppression of re-flying , Accelerate the effect of cleaning

Inactive Publication Date: 2019-11-22
阿尔格生命科学(江苏)有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] Aiming at the deficiencies of the prior art, the present invention provides an algae-active high-efficiency haze reduction agent, which has the advantages of fast haze reduction speed, and solves the problem that the proportion of sulfosuccinate in the existing haze reduction aids is relatively large, and It needs to be sprayed several times to remove all the smog, so the speed of getting out the smog is limited, and the effect of absorbing dust and carbon dioxide in the smog is not good

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0020] Embodiment 1: An algae active high-efficiency haze reducing agent, including the following raw materials in parts by weight: Chlorella pyrenoidosa liquid, sulfosulfuric acid ester, sodium dodecylsulfonate, polyoxyethylene polyoxygen Propanolamine ether, extracted cellulose, humic acid, sodium hydroxide, ethanol and water, the ratio by weight is: 1 part of chlorella pyrenoidosa liquid, 1 part of sulfosulfuric acid ester, dodecyl sulfonic acid 0.8 parts of sodium, sodium dodecyl sulfonate is a white powder, and sodium dodecyl sulfonate is stirred and mixed with it after heating ethanol, 0.6 parts of polyoxyethylene polyoxypropanolamine ether, polyoxyethylene polyoxypropylene Alcohol amine ether can be mixed with ethanol at normal temperature. After mixing polyoxyethylene polyoxypropanol amine ether with sodium dodecylsulfonate, it can be mixed with ethanol to extract 1 part of cellulose, which is grape pomace. One of cellulose, cellulose extracted from straw, cellulose ex...

Embodiment 2

[0022] Embodiment 2: An algal active high-efficiency haze reducing agent, including the following raw materials in parts by weight: Chlorella pyrenoidosa liquid, sulfosulfuric acid ester, sodium dodecylsulfonate, polyoxyethylene polyoxygen Propanolamine ether, extracted cellulose, humic acid, sodium hydroxide, ethanol and water, the ratio by weight is: 4.5 parts of chlorella pyrenoidosa liquid, 5.5 parts of sulfosulfuric acid ester, dodecyl sulfonic acid Sodium 3.9 parts, sodium dodecyl sulfonate is a white powder, and sodium dodecyl sulfonate is stirred and mixed with ethanol after heating, polyoxyethylene polyoxypropanolamine ether 3.55 parts, polyoxyethylene polyoxypropylene Alcohol amine ether can be mixed with ethanol at normal temperature. After mixing polyoxyethylene polyoxypropanol amine ether with sodium dodecylsulfonate, it can be mixed with ethanol to extract 3 parts of cellulose, which is grape pomace. One of cellulose, cellulose extracted from straw, cellulose ext...

Embodiment 3

[0024] Embodiment 3: An algae active high-efficiency haze reducing agent, including the following raw materials in proportions by weight: Chlorella pyrenoidosa liquid, sulfosulfuric acid ester, sodium dodecylsulfonate, polyoxyethylene polyoxygen Propanolamine ether, extract cellulose, humic acid, sodium hydroxide, ethanol and water, mix 8 parts of Chlorella pyrenoidosa liquid by weight, the ratio is: 10 parts of sulfosulfuric acid ester, dodecyl sulfonic acid 7 parts of sodium, sodium dodecyl sulfonate is a white powder, and sodium dodecyl sulfonate is stirred and mixed with it after heating ethanol, 6.5 parts of polyoxyethylene polyoxypropanolamine ether, polyoxyethylene polyoxypropylene Alcohol amine ether can be mixed with ethanol at normal temperature. After mixing polyoxyethylene polyoxypropanol amine ether with sodium dodecylsulfonate, it can be mixed with ethanol to extract 5 parts of cellulose, which is grape pomace. One of cellulose, cellulose extracted from straw, ce...

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Abstract

The invention relates to the technical field of haze reducing agents, and discloses an alga active efficient haze reducing agent which comprises the following raw materials in parts by weight: chlorella pyrenoidosa liquid. According to the invention, chlorella pyrenoidosa liquid is added; chlorella is an efficient photosynthetic plant and is grown and reproduced through photoautotrophy; the chlorella selected in the algae activity haze removal technology is fresh water chlorella and is capable of continuously absorbing oxynitride in the air through the high reproductive capacity that four cells are split out every 24-28 hours by use of sunlight, water and carbon dioxide, converting solar energy to become frond containing various nutrient contents and releasing a large number of oxygen during multiplication, thereby achieving the objective of purifying air; and the number of chlorella active cells in the air can be increased, and the chlorella absorbs carbon oxide and nitrogen oxide inthe air, meanwhile, absorbs carbon dioxide and releases oxygen through photosynthesis, thereby achieving the purposes of reducing haze and purifying air.

Description

technical field [0001] The invention relates to the technical field of haze reducing agents, in particular to an algae active and efficient haze reducing agent. Background technique [0002] Under the pressure of urban construction, traffic and industrial development, smog in the air has become a serious environmental and health problem. The main components of smog are sulfur oxides, nitrogen oxides and inhalable particulate matter, of which fine suspended particles Particles are the main culprit of aggravating smog weather pollution. Primary emission refers to the direct discharge of particulate matter from pollution sources into the atmosphere. Secondary generation refers to the transformation of gaseous compounds emitted by pollution sources into particulate matter in the atmosphere through atmospheric chemical reactions. , such as the conversion of sulfur dioxide gas into sulfate particles, etc. Compared with the primary emission, the secondary generated particles are us...

Claims

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Application Information

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IPC IPC(8): B01D53/84B01D53/62B01D53/56
CPCB01D53/56B01D53/62B01D53/84Y02A50/20
Inventor 贺朝文张乐
Owner 阿尔格生命科学(江苏)有限公司