Phosphorus-free nitrogen-free slow-release high-efficiency composite scale inhibitor and preparation method thereof
A compound antiscalant and slow-release technology, which is applied in chemical instruments and methods, descaling and water softening, water/sludge/sewage treatment, etc., can solve the problem of poor anti-scaling effect of other kinds of scales or complex scales, Environmental pollution, single scale inhibition effect, etc., to achieve good scale inhibition effect, ensure drying effect, and fast heating speed
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Embodiment 1
[0026] A phosphorus-free, nitrogen-free, slow-release, high-efficiency composite scale inhibitor is composed of the following raw materials: ingredients: 20-40 parts of acrylic acid, 40-70 parts of acrylate, 20-30 parts of zinc sulfonate, 18-22 parts of oxidized starch, 25 parts of ethanol -30 parts, 35-42 parts of deionized water.
[0027] Deionized water is prepared by reverse osmosis ion exchange through a variety of equipment such as multi-media filters, activated carbon filters, precision filters, and reverse osmosis equipment.
Embodiment 2
[0029] A method for preparing a phosphorus-free, nitrogen-free slow-release high-efficiency composite scale inhibitor, comprising the following steps:
[0030] Step 1: take each raw material in proportion for subsequent use;
[0031] Step 2: Add oxidized starch, ethanol, and deionized water into the reaction kettle in proportion through the feeding equipment, heat the mixture to 50°C, and fully stir and mix the mixture at the same time;
[0032] Step 3: Add acrylic acid, acrylate, and zinc sulfonate in proportion, then increase the heating temperature of the reactor to 400°C, and continue the reaction for 2 hours under 3 atmospheric pressure;
[0033] Step 4: After completing the reaction, wait for the temperature and pressure to drop to normal temperature and pressure;
[0034] Step 5: using the unloading assembly to take out the solid matter obtained from the reaction;
[0035] Step 6: Dry it at 120°C through the drying equipment, and store the processed solid matter into ...
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