Preparation method of circulating cooling water corrosion and scale inhibitors
A corrosion and scale inhibitor, a technology of circulating cooling water, applied in chemical instruments and methods, descaling and water softening, natural water treatment, etc. The problem of high price and inapplicability of amino acid can enhance the performance of anti-Cl-pitting corrosion, strengthen the effect of scale inhibition, and inhibit the effect of corrosion.
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[0032] A preparation method of circulating cooling water corrosion and scale inhibitor, comprising the steps of:
[0033] S100 Stir each component of the corresponding mass percentage at normal temperature and pressure for 30 minutes, and mix uniformly to obtain a mixture; and
[0034] In S200, the mixture is placed in a reaction kettle equipped with ultrasonic waves and a super-strong magnetic field, and concentrated into viscous matter under the synergistic effect of ultrasonic waves and magnetic fields to prepare the circulating cooling water corrosion and scale inhibitor.
[0035] Wherein, the power of the ultrasonic waves in the step S200 is 20w-100w, and the strength of the ultra-strong magnetic field is 10T-20T.
[0036] Preferably, the power of the ultrasonic wave is 50w, and the strength of the ultra-strong magnetic field is 20T.
[0037] The circulating cooling water corrosion and scale inhibitor has a wide range of raw material sources, low production cost, and can...
Embodiment 1
[0041] The mass percentage of raw materials for the circulating cooling water corrosion and scale inhibitor is: 20% polyacrylamide, 5% sodium gluconate, 10% aminotrimethylene phosphoric acid, 6% ammonium molybdate, 15% cyclohexylamine , 35% plant extracts, 5% surfactants and 4% preservatives, and the rest is deionized water. Wherein, the components in the plant extract are: 20% gallic acid, 25% chlorogenic acid, 35% gallotannin, 20% ellagitannin in terms of mass percentage. Take the above components separately according to the mass ratio, stir at room temperature and pressure for 30 minutes to make them evenly mixed, and then place them in a reactor equipped with ultrasonic waves and super-strong magnetic fields for further concentration to make the mixed solution appear viscous , wherein the power of the ultrasonic wave is 50w, and the strength of the ultra-strong magnetic field is 20T. The results show that the measured corrosion inhibition rate of the present invention is ...
Embodiment 2
[0043] The mass percentage of raw materials for the circulating cooling water corrosion and scale inhibitor is: 30% polyacrylamide, 10% sodium gluconate, 15% aminotrimethylene phosphoric acid, 2% ammonium molybdate, 12% cyclohexylamine , 28% plant extracts, 0.5% surfactants and 2.5% preservatives, and the rest is deionized water. Wherein, the components in the plant extract are: 20% gallic acid, 25% chlorogenic acid, 35% gallotannin, 20% ellagitannin in terms of mass percentage. Take the above components separately according to the mass ratio, stir at room temperature and pressure for 30 minutes to make them evenly mixed, and then place them in a reactor equipped with ultrasonic waves and super-strong magnetic fields for further concentration to make the mixed solution appear viscous , wherein the power of the ultrasonic wave is 50w, and the strength of the ultra-strong magnetic field is 20T. The results show that the measured corrosion inhibition rate of the present inventio...
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Abstract
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