Chemical algae removing method

A chemical and preparation method technology, applied in the field of blue-green algae outbreaks, can solve the problems of little promotion value, affecting water hardness and pH value, affecting normal life and life safety, etc., achieving significant social and economic benefits, convenient operation, and inhibition Effects of Algae Blooms

Inactive Publication Date: 2009-07-08
CHENGDU DUCHENG ENVIRONMENTAL PROTECTION CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At the end of May 2007, the cyanobacteria water crisis broke out in Taihu Lake, resulting in a large-scale water cut-off in Wuxi City, Jiangsu Province, which seriously affected the normal life and even life safety of the people.
Copper salts are the most commonly used, but excessive copper ions entering the environment can cause pressure on the environment; mercury agents have good biocidal effects, but are highly toxic and can cause serious public hazards, so their use should be prohibited; tin agents are generally used for marine ship shell coatings. Organic tin has a pungent smell, and human skin contact can cause dermatitis, which will pollute the environment and should be banned; chromate has a strong killing effect, but it is highly toxic to the environment and can cause cancer. Prohibited to use; the organic sulfur series are mainly dithiooleomethane, etc., such products can affect the hardness and pH value of water, cause certain environmental pollution, and cause corrosion of metal equipment, and the promotion value is not great
Quaternary phosphorus salt biocides have multiple functions such as corrosion inhibition, scale inhibition, and biocidal effects, but it is not clear whether they have residual effects, so they should be used with caution

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0023] Take the Microcystis aeruginosa liquid cultured in the laboratory with BG 11 culture medium, and the raw water biomass chlorophyll a is 203 μg / L. Add 0.8mg / L A (calculated as potassium permanganate) and 0.3mg / L B (calculated as cuprous chloride) compound algaecide to the algae liquid, mix well, and regularly sample and extract chlorophyll a to determine Microcystis aeruginosa To observe the change of Microcystis aeruginosa treated with compound algaecide. The results show that the biomass of Microcystis aeruginosa can be seen to decrease from the first day after adding the algaecide, and as the reaction time increases, the algal cells gradually die and sink to the bottom of the pond, and the biomass of Microcystis aeruginosa decreases day by day , the removal rates of chlorophyll a were 32.4%, 89.8%, 94.8%, 97.1%, and 99.4% on the 2nd, 4th, 6th, 8th, and 10th days of administration, respectively. Using a high-power optical microscope to observe and take pictures of alg...

Embodiment 2

[0025] Take the Microcystis aeruginosa liquid cultured in the laboratory with BG 11 culture medium, the raw water biomass chlorophyll a is 646 μg / L. Add 1.0mg / L A (calculated as potassium permanganate) and 0.5mg / L B (calculated as cuprous chloride) compound algaecide to the algae liquid, mix well, and regularly sample and extract chlorophyll a to determine Microcystis aeruginosa To observe the change of Microcystis aeruginosa treated with compound algaecide. The results show that the biomass of Microcystis aeruginosa can be seen to decrease from the first day after adding the algaecide, and as the reaction time increases, the algal cells gradually die and sink to the bottom of the pond, and the biomass of Microcystis aeruginosa decreases day by day , The removal rates of chlorophyll a on the 2nd, 4th, 6th, 8th, and 10th day of administration were 30.2%, 59.8%, 71.1%, 90.3%, and 98.7%, respectively. Using a high-power optical microscope to observe and take pictures of algal ce...

Embodiment 3

[0027] Take the Microcystis aeruginosa liquid cultured with BG11 culture medium in the laboratory, and the raw water biomass chlorophyll a is 1640 μg / L. Add 2.0mg / LA (calculated as potassium permanganate) and 1.2mg / L B (calculated as cuprous chloride) compound algaecide to the algae liquid, mix well, and regularly sample and extract chlorophyll a to determine Microcystis aeruginosa To observe the change of Microcystis aeruginosa treated with compound algaecide. The results show that the biomass of Microcystis aeruginosa can be seen to decrease from the first day after adding the algaecide, and as the reaction time increases, the algal cells gradually die and sink to the bottom of the pond, and the biomass of Microcystis aeruginosa decreases day by day , the removal rates of chlorophyll a were 12.1%, 36.9%, 65.8%, 87.5%, and 96.4% on the 2nd, 4th, 6th, 8th, and 10th day of administration, respectively. Using a high-power optical microscope to observe and take pictures of algal...

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PUM

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Abstract

The invention relates to a chemical algae-removing method belonging to the field of environmental protection, in particular to a chemical method for removing algae in the water of lakes and reservoirs with algae outbreak, particularly blue-green algae outbreak caused by water eutrophication. The method comprises the following steps that: composite algaecide consisting of a reagent A and a reagent B is prepared; potassium permanganate is ground and prepared to be an aqueous solution, namely the reagent A; acid-soluble cuprous chloride is prepared from cuprous chloride, concentrated hydrochloric acid with the mass percentage of 37 percent and water according to the proportion of 0.03g:0.5mL:100mL; aluminum chloride and sodium chloride are made into aqueous solutions respectively; the reagent B is prepared from the acid-soluble cuprous chloride, an aqueous solution of aluminum chloride and an aqueous solution of sodium chloride; the reagent A and the reagent B are stored separately; and the reagent A and the reagent B are used to be mixed on site so as to form the composite algaecide to be added. The method has the advantages of convenient operation, economical efficiency, practicability and capability of inactivating algal cells in a short time without destroying cell bodies, is characterized in safety and high efficiency, can effectively inhibit algae outbreak, and can obtain remarkable social and economic benefit.

Description

technical field [0001] The invention belongs to the field of environmental protection, and in particular relates to a chemical algae removal method for lakes and reservoir water caused by eutrophication of water bodies, especially blue-green algae outbreaks. Background technique [0002] With the development of industry and agriculture, a large amount of nitrogen and phosphorus substances enter the lakes and rivers, the lakes and reservoirs alternate slowly, the self-purification ability is poor, and the water body carries multiple pollutions from point sources and non-point sources, all of which have exacerbated the process of eutrophication . 53%, 28%, 48% and 41% of the lakes in Europe, Africa, North America and South America were eutrophic to varying degrees, and 54% of the lakes in the Asia-Pacific region were in a state of eutrophication. In my country, 60% of the lakes are in eutrophic state, accompanied by the occurrence of algal blooms. The overgrowth of a large n...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C02F1/00C02F1/50
Inventor 李星赵亮杨艳玲梁爽
Owner CHENGDU DUCHENG ENVIRONMENTAL PROTECTION CO LTD
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