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Phosphorus-free water treatment agent for high-concentration iron ion circulating water

A water treatment agent and iron ion technology, applied in water/sludge/sewage treatment, natural water treatment, non-polluted water treatment, etc., can solve the problems of accelerated carbon steel corrosion, decreased corrosion inhibition effect of water treatment agent, and increased fouling heat In order to reduce the pressure of environmental protection, improve the ability of corrosion and scale inhibition, and avoid excessive discharge of phosphorus

Inactive Publication Date: 2019-12-03
TIANJIN ZHENGDA SCI &TECH CO LTD +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Part of the water quality in the Songhua River Basin and the Heilongjiang River Basin contains a large amount of iron ions, and the flocculation effect is very poor. The pretreated water still has a high concentration of iron ions. 3+ It can also promote the dissolution of metallic iron into divalent iron and accelerate the corrosion of carbon steel; at the same time, Fe 3+ Hydrolyzed to Fe(OH) 3 Colloids, which absorb impurities such as suspended solids in circulating water, form flocs, settle on the surface of the heat exchanger to form dirt, and increase the thermal resistance of dirt, and easily cause under-scale corrosion
Generally, the concentration of iron ions in circulating water is tens of milligrams per liter. When the concentration of iron ions increases to 3 mg / L, the corrosion tendency of equipment in the circulating water system will increase significantly, and the corrosion inhibition effect of water treatment agents will drop significantly. For this water quality The general treatment method is to add manganese sand tanks in the pretreatment device or adopt technologies such as biological purification (patent application number 201210079763.0), but the problems faced are to occupy new sites, increase engineering transformation, and require large investment

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0018] Preparation of corrosion and scale inhibitors: Add 530kg of deionized water to the reactor, start stirring, then add 100kg of deacetylated chitin, 150kg of polyepoxysuccinic acid, 150kg of polyaspartic acid, 50kg of zinc sulfate heptahydrate, methyl 20kg of benzotriazole, fully stirred until uniform, then cooled to room temperature, the liquid obtained is the corrosion and scale inhibitor.

[0019] Prepare a high-efficiency dispersant: add 600kg of deionized water to the reactor, start stirring, then add 300kg of terpolymer based on maleic anhydride, acrylic acid, and acrylamide group, and 100kg of lauroyl diethanolamine, stir well, and cool to room temperature The resulting liquid is a high-efficiency dispersant.

Embodiment 2

[0021] Preparation of corrosion and scale inhibitors: Add 530kg of deionized water to the reactor, start stirring, then add 100kg of deacetylated chitin, 150kg of polyepoxysuccinic acid, 150kg of polyaspartic acid, 50kg of zinc sulfate heptahydrate, methyl 20kg of benzotriazole, fully stirred until uniform, then cooled to room temperature, the liquid obtained is the corrosion and scale inhibitor.

[0022] Prepare a high-efficiency dispersant: add 580kg of deionized water to the reactor, start stirring, then add 300kg of terpolymer based on maleic anhydride, acrylic acid, and acrylamide group, and 120kg of lauroyl diethanolamine, stir well, and cool to room temperature The resulting liquid is a high-efficiency dispersant.

Embodiment 3

[0024] Preparation of corrosion and scale inhibitors: Add 530kg of deionized water to the reactor, start stirring, then add 100kg of deacetylated chitin, 150kg of polyepoxysuccinic acid, 150kg of polyaspartic acid, 50kg of zinc sulfate heptahydrate, methyl 20kg of benzotriazole, fully stirred until uniform, then cooled to room temperature, the liquid obtained is the corrosion and scale inhibitor.

[0025] Prepare a high-efficiency dispersant: add 550kg of deionized water to the reactor, start stirring, then add 300kg of terpolymer based on maleic anhydride, acrylic acid, and acrylamide group, and 150kg of lauroyl diethanolamine, stir well, and cool to room temperature The resulting liquid is a high-efficiency dispersant.

[0026] Performance Testing

[0027] The performance evaluation of this product is carried out in the dynamic furnace simulation device of circulating water, the conductivity of supplemented water is 90μS / cm, the hardness is 0.5mmol / L, the turbidity is 1.2NT...

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Abstract

The invention discloses a phosphorus-free water treatment agent for high-concentration iron ion circulating water. The phosphorus-free water treatment agent comprises a scale and corrosion inhibitor and a high-efficiency dispersing agent, and the adding concentration of the phosphorus-free water treatment agent is 5-20mg / L in terms of supplemented water. The scale and corrosion inhibitor comprises10%-20% of a non-phosphorus scale inhibitor, 30%-40% of an organic corrosion inhibitor, 1%-5% of a copper corrosion inhibitor, 1%-5% of an inorganic corrosion inhibitor and 30%-58% of deionized water. The efficient dispersing agent is prepared from 20%-30% of an organic polymer, 10%-20% of iron ion organic complexing agent and 50%-70% of deionized water. The organic polymer in the phosphorus-freeagent is capable of stabilizing iron ions in circulating water, so that under-scale corrosion caused by forming of stains on equipment surfaces by iron ions is prevented; the iron ion complexing agent is capable of complexing free iron ions in circulating water, disturbing the reaction of Fe<3+> and Fe, and relieving corrosion and the like problems caused by the iron ions in the circulating water.

Description

technical field [0001] The invention belongs to the field of circulating cooling water, and in particular relates to a phosphorus-free water treatment agent for circulating water with high concentration of iron ions. Background technique [0002] Circulating cooling water accounts for more than 80% of industrial water. The recycling of circulating water has significant environmental benefits, economic benefits and social benefits. At present, the purpose of saving water is achieved by increasing the concentration multiple. However, if the concentration of iron ions in the raw water is high Then restrict the improvement of the concentration factor. Part of the water quality in the Songhua River Basin and the Heilongjiang River Basin contains a large amount of iron ions, and the flocculation effect is very poor. The pretreated water still has a high concentration of iron ions. 3+ It can also promote the dissolution of metallic iron into divalent iron and accelerate the corros...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C02F5/10C02F5/12C02F103/02
CPCC02F5/10C02F5/12C02F2103/023C02F2303/08
Inventor 王向明左鹏闫岩衣建生
Owner TIANJIN ZHENGDA SCI &TECH CO LTD
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