High-COD special non-phosphorus corrosion and scale inhibitor and preparation method thereof

A phosphorus-free corrosion inhibitor and scale inhibitor technology, applied in chemical instruments and methods, scale removal and water softening, complex/solubilizer treatment, etc. Corrosion function, high COD water quality is not targeted, etc., to achieve the effect of reducing treatment costs and daily maintenance workload, excellent scale and corrosion inhibition performance, and reducing the growth of bacteria and algae.

Active Publication Date: 2015-01-07
SHANDONG TIANQING TECH DEV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Domestic research on phosphorus-free or low-phosphorus water treatment agents has also been carried out, but it is limited to the compound synergy research on molybdenum, silicon, tungsten, sodium benzoate, sodium gluconate, and zinc salts
Moreover, some of the currently used phosphorus-free products contain high content of molybdenum and tungsten. As we all know, molybdenum and tungsten are non-renewable mineral resources, which belong to the state-controlled minerals, and the price is high. After discharge, they cannot be biodegraded and seriously pollute the water body.
[0005] CN1754840A discloses a corrosion and scale inhibitor for industrial cooling water systems, comprising acrylic acid-acrylate-sulfonate copolymer, mercaptobenzothiazole, sodium humate, lignin and water, but sodium humate and lignin The source of the element is miscellaneous, the quality is unstable, and the treatment effect is poor; CN1609020A discloses a method for treating corrosion and scale inhibition water containing polyepoxysuccinic acid, which is to use polyepoxysuccinic acid or polyepoxysuccinic acid and gluconic acid alone Or the corrosion and scale inhibition method that gluconate and zinc salt (Zn2+) are used in conjunction, but polyepoxysuccinic acid has basically no dispersion function and corrosion inhibition function, and easily causes the deposition of zinc salt, resulting in low corrosion inhibition performance; CN101591073A discloses A non-phosphorus corrosion and scale inhibitor containing 12-16% lignin and tannin mixture, 55-65% water, 0.7-0.8% NaOH, 1.7-2.2% H2SO4 , triethanolamine 12-16%, maleic anhydride 4-6%, borax 3-5%; CN101591074A discloses a phosphorus-free water treatment agent with excellent corrosion and scale inhibition performance and effective control of microorganisms and slime hazards. Phosphorus-free corrosion and scale inhibitors in phosphorus water treatment agents are 15-25%, ternary (AMPS) 8-12%, zinc chloride 6-10%, polyma 6-10%, room temperature water 40-65% %
[0006] In addition, because the scale and corrosion inhibition products disclosed above have a high use concentration, a large amount of compounding, are not easy to compound, are difficult to detect and operate, have a narrow range of adaptation to water quality, and have poor scale and corrosion inhibition effects, they are not targeted for high COD water quality.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0044] Take the treatment of low-alkali and low-hard water as an example. After rinsing the reactor, inject 10% deionized water, turn on the mixer, and add 10% of the antiscaling components cyclodextrin or cyclodextrin derivatives, sulfonate copolymer 4 %, containing 15% of carboxylic acid homopolymer, 15% of acrylic acid / ethyl acrylate / 2-acrylamide-2-methylpropanesulfonic acid copolymer, turn on the heating or condensing device, keep the temperature at 25°C, and then add formaldehyde 1% benzotriazole, 10% soluble zinc salt, 5% sodium gluconate, heat up at 40°C and keep the reaction for 40 minutes, turn on the condensing circulating water, lower the temperature to 25°C, add hexadecyldimethylbenzyl ammonium chloride 10%, stir for 10 minutes, open the discharge valve, filter the above-mentioned liquid medicine and put it into a packaging barrel to obtain a phosphorus-free corrosion and scale inhibitor.

[0045] The experiment was carried out under the following conditions of low...

Embodiment 2

[0048] Take the treatment of medium-alkali and medium-hard water as an example. After rinsing the reactor, inject 8% deionized water, turn on the mixer, and add 10% of cyclodextrin or cyclodextrin derivatives and 4% of sulfonate copolymer in turn. %, containing 18% of carboxylic acid homopolymer, 18% of acrylic acid / ethyl acrylate / 2-acrylamide-2-methylpropanesulfonic acid copolymer, turn on the heating or condensation device, keep the temperature at 28°C, and then add imidazole in sequence 1% morphine substances, 10% soluble zinc salt, 4% sodium gluconate, heat up at 45°C and keep the reaction for 45 minutes, turn on the condensing circulating water, lower the temperature to 25°C, add hexadecyldimethylbenzyl chloride Ammonium 10%, stir for 10 minutes, open the discharge valve, filter the above-mentioned medicinal solution and put it into a packaging barrel to obtain the non-phosphorus corrosion and scale inhibitor of the present invention.

[0049] The experiment was carried o...

Embodiment 3

[0052] Take the treatment of high-alkali and low-hard water as an example. After rinsing the reactor, inject 5% deionized water, turn on the mixer, and add 10% of cyclodextrin or cyclodextrin derivatives and 4% of sulfonate copolymer in sequence. %, containing 15% of carboxylic acid homopolymer, 18% of acrylic acid / ethyl acrylate / 2-acrylamide-2-methylpropanesulfonic acid copolymer, turn on the heating or condensing device, keep the temperature at 28°C, and then add solid Add 1% of chloromethylbenzotriazole, 12% of soluble zinc salt, and 5% of sodium gluconate to the corrosion inhibitor, raise the temperature to 40°C and keep the reaction for 60 minutes, turn on the condensing circulating water, lower the temperature to 25°C, add ten Hexaalkyl dimethyl benzyl ammonium chloride 12%, stirred for 10 minutes, opened the discharge valve, filtered the above-mentioned medicinal solution and put it into a packaging barrel to obtain the non-phosphorus corrosion and scale inhibitor of the...

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Abstract

The invention provides a high-COD (Carbon Oxide Demand) special non-phosphorus corrosion and scale inhibitor and preparation method thereof. The corrosion and scale inhibitor mainly comprises cyclodextrin or cyclodextrin derivatives, a soluble metal salt, a copolymer containing a sulfonic acid group, a homopolymer containing carboxylic acid, an acrylic acid / ethyl acrylate / 2-acrylamide-2-methallylsulphonate copolymer, tetrahydroglyoxaline matters, sodium gluconate, and quaternary ammonium salt. The non-phosphorus corrosion and scale inhibitor is suitable for an open circulated cooling water system, and suitable for surface water high in COD and free of treatment, and the non-phosphorus corrosion and scale inhibitor is added into the circulated cooling water system by an automatic reagent feeding device. The non-phosphorus corrosion and scale inhibitor is environmentally-friendly, avoids using phosphorous compounds or non-renewable molybdate or tungstate, has the characteristic of being free from phosphorus and nitrogen, meets the requirement of environmental protection, reduces the environmental burden, has a sterilizing ingredient at the same time, and effectively reduces the problems of bacterial corrosion and algae growth in a circulated water system.

Description

technical field [0001] The invention belongs to the field of chemical industry, and relates to a non-phosphorous corrosion and scale inhibitor for circulating cooling water with high COD and a preparation method thereof. Background technique [0002] Water is the basic condition for human survival, but water resources in the world are limited. my country's per capita water volume is only a quarter of the world's per capita water volume, and water resources are even poorer. With the rapid development of industry, the ecological balance of water has been seriously damaged day by day. In order to solve the water resource crisis and adapt to sustainable development, it is necessary to save water reasonably. The amount of cooling water in industrial water accounts for 60-80% by weight of the total water consumption. Therefore, the main goal of saving industrial water is to recycle cooling water, improve the reuse rate as much as possible, and reduce sewage discharge. However, ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C02F5/08
CPCC02F5/10C02F2303/22
Inventor 王俊明王金明刘晓民胡新霞柴斌高云峰张华谢泽新丁青山苗吉宾
Owner SHANDONG TIANQING TECH DEV
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