Recirculated cooling water ion exchange softening micro-basification processing method

A technology of circulating cooling water and ion exchange, which is applied in the fields of environmental engineering and chemical engineering, can solve the problems of adding chemical agents to waste the environment, affect corrosion protection, and be unsuitable, achieve significant economic and environmental benefits, and prevent reproduction , the effect of preventing scaling

Active Publication Date: 2009-01-28
WUHAN UNIV +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Chlorine is a commonly used agent, but the chlorine addition method is not suitable for controlling the growth of mussels in the circulating cooling water system (Sanjeevi Rajagopal, Gerard Van derVeldea, Marinus Van der Gaaga, Henk A. Jenner. How effective is intermittent chlorination to control adult mussel fouling in cooling water systems[J].Water Research 2003, (37):329-338); for the control of pathogens (Legionella), chloramine trihydrate T (Nazmiye OzlemSanli-Yurudu, Ayten Kimiran-Erdem, Aysin Cotuk. Studies on the efficacy of Chloramine Ttrihydrate(N-chloro-p-toluene sulfonamide) against planktonic and sessile populations of different Legionella pneumophila strains[J].Int.J.Hyg.Environ.-Health 2007,(210),147-153) , but the control dose of planktonic and fixed microorganisms must be considered at the same time; it is also reported that electrolytic silver, copper and a certain amount of chloride ratio are used to control sulfate-reducing bacteria and Escherichia coli in the cooling system (Susana Silva Martìnez, Alberto Alvarez Gallegos, Esteban Martìnez, Electrolytically generated silver and copper ions to treat cooling water: an environmentally friendly novel alternative [J]. International Journal of Hydrogen Energy, 2004, (29): 921-93)
Excessive oxidizing biocides have an impact on the corrosion protection of the system; various biocides have certain toxicity to varying degrees
[0006] The existing anti-corrosion, anti-scaling and anti-microbial pollution methods of industrial circulating water systems based on adding chemical agents cannot fundamentally solve the problems of adding chemical agents themselves and the resulting waste of water resources and environmental pollution.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0031]Example 1: The circulating water is sequentially passed through a Na-type strong acid cation exchange column, an OH-type strong base anion exchange column, and a spray tower. Three kinds of water samples were tested respectively, the hardness of the effluent from the positive column was 0mg / L, the pH of the effluent from the negative column was 11.3, and the pH of the water sample from the spray tower was 8.6. The pH of the circulating water can be maintained at 8.6-9.5 for a long time, and it can reach 9.7 after being highly concentrated.

Embodiment 2

[0032] Example 2: Pass the circulating water with a salt content ≥ 400 mg / L through a weak acid H-type cation exchange column, a Na-type strong acid cation exchange column, CO 3 Type strong base anion exchange column and spray tower. The water samples were tested separately, the Na-type positive column effluent had a hardness of 0 mg / L, the negative column effluent had a pH of 9.8, and the spray tower water sample had a pH of 9.0. After circulating concentration, the pH of circulating water can be maintained at 9.0-9.7.

Embodiment 3

[0033] Embodiment 3: circulating water is sequentially passed through Na type strong acid cation exchange column, HCO 3 Type strong base anion exchange column, spray tower. Three kinds of water samples were tested respectively, the hardness of the effluent from the positive column was 0mg / L, the pH of the effluent from the negative column was 6.6, and the pH of the water sample from the spray tower was 8.6. After circulating concentration, the pH of circulating water can be maintained at 8.6-9.7.

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PUM

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Abstract

The invention discloses a method for softening and dealing with circulating cooling water by micro-basification. Cation resin of Na-type is adopted for removing the ions of Ca<2+> and Mg<2+> in the water, and the ions are exchanged by Na<+> ions, or the combination of H-type-Na-type cation resin is adopted for removing the ions of Ca<2+> and Mg<2+ >, and some of the ions are exchanged by Na<+> ions; anion resin of OH-type, CO3-type or HCO3-type is adopted for removing superacid anions in the water, and the superacid anions are exchanged by OH<->, CO3<2-> or HCO3<->. The water out from the ion exchanger reacts with the CO2 in the air to realize chemical equilibrium, and dilute solution with buffering is formed, pH value of the circulating cooling water is adjusted to alkalescency ranging from 8.6 to 9.7, and softening and micro-basification treatment of the circulating cooling water is realized. The method of the invention can realize that the circulating cooling water system has the technical effects of corrosion prevention, scaling prevention and microbe growth prevention and has comprehensive economic benefit that discharge of enriched water and chemical substance is reduced under the condition that various additionally added chemical agents such as antiseptic, corrosion inhibitor, scale inhibitor, water stabilizer, bactericidal algicide, and the like, are avoided for use.

Description

technical field [0001] The invention specifically relates to a method for ion exchange softening and slightly alkaline treatment of industrial circulating cooling water, which belongs to the technical field of environmental engineering and also belongs to the technical field of chemical engineering. Background technique [0002] In the circulating cooling water system with the largest water consumption in industry, the most common problems are corrosion, scaling, microbial pollution, and concentrated water discharge pollutes the environment and wastes water resources. The most common hazards of the three major problems are: corrosion, which causes the mechanical properties of metal pipes to decline or even functional damage, and the deposition of corrosion products affects the heat transfer performance of the cooler; fouling, which leads to increased thermal resistance, reduced heat transfer performance, reduced flow cross-section, and Increased flow energy consumption, unde...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C02F1/42
Inventor 叶春松王世杰曾惠明林久养佟立辉钱勤叶金华
Owner WUHAN UNIV
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