Production method and application of high-performance scale inhibiting material

A production method and high-performance technology, applied in chemical instruments and methods, descaling and water softening, water/sludge/sewage treatment, etc., can solve problems such as technical complexity, and achieve simple production process and difficult nucleation and crystallization reactions , prone to defects and aging effects

Active Publication Date: 2014-12-24
祝辉
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The nucleation and crystallization method does not require electricity, does not require regeneration, and does not need to change the properties of water. The crystals have lon

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0026] Example 1: A production method of a high-performance antiscaling material, the production steps are as follows, 1) Cultivate and produce wafers; 2) Optimize the surface of wafers and spheres, 3) Protective liquid packaging and glass coating fragmentation, the step 1 ) The specific operations are as follows, 1) Cultivate and produce wafers, place the spherical particles of the special-shaped resin polymer raw material in a specially formulated liquid to promote the formation of nano-scale depressions on the surface of these particles, and the uneven surface of the depressions will be polymerized with the resin The combination of the chemical components of the substance forms a crystal unit that attracts and catalyzes ion reactions. Repeated soaking can increase the number of crystal units generated on the surface of spherical particles and form microcracks on the surface of spherical particles; the special solution is composed of oxalic acid soluble boron , Zinc, Magnesi...

Embodiment 2

[0031] Example 2: A production method of a high-performance antiscaling material, the production steps are as follows, 1) Cultivate and produce wafers; 2) Optimize the surface of wafers and spheres, 3) Protective liquid packaging and glass coating fragmentation, the step 1 ) The specific operations are as follows, 1) Cultivate and produce wafers, place the spherical particles of the special-shaped resin polymer raw material in a specially formulated liquid to promote the formation of nano-scale depressions on the surface of these particles, and the uneven surface of the depressions will be polymerized with the resin The combination of the chemical components of the substance forms a crystal unit that attracts and catalyzes ion reactions. Repeated soaking can increase the number of crystal units generated on the surface of spherical particles and form microcracks on the surface of spherical particles; the special solution is composed of oxalic acid soluble boron , Zinc, Magnes...

Embodiment 3

[0036] Example 3: A production method of a high-performance antiscaling material, the production steps are as follows, 1) Cultivate and produce wafers; 2) Optimize the surface of wafers and spheres, 3) Protective liquid packaging and glass coating fragmentation, the step 1 ) The specific operations are as follows, 1) Cultivate and produce wafers, place the spherical particles of the special-shaped resin polymer raw material into a specially formulated liquid to promote the formation of nano-scale depressions on the surface of these particles, and the uneven surface of the depressions will be polymerized with the resin The combination of the chemical components of the substance forms a crystal unit that attracts and catalyzes ion reactions. Repeated soaking can increase the number of crystal units generated on the surface of spherical particles and form microcracks on the surface of spherical particles; the special solution is composed of oxalic acid soluble boron , Zinc, Magn...

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PUM

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Abstract

The invention relates to a production method of a high-performance scale inhibiting material. The production method is characterized by comprising the following production steps: 1) wafer culture and production; 2) wafer and sphere surface optimization; 3) protective liquid encapsulation and glass coating crushing. According to the method, the spherical granules of specially-shaped polymer resin are used as a medium, the diameter is 0.5-1mm, the technologies of forming wafers, amplifying the wafers and activating the surfaces are adopted to develop the internationally leading high-performance physical scale inhibiting material with low-energy heterogeneous nucleation crystallization reaction, and the scale inhibiting material and related filters are massively produced. The technical scheme adopts the advanced physical scale inhibiting material, requires no energy consumption, and has the scale inhibiting and removing functions of a chemical product. Maintenance cost is reduced. Meanwhile, the chemical additive widely used for scale inhibiting and removing at present is avoided, and the pollution to water resources and environments is reduced. The service life can be three to five years.

Description

technical field [0001] The invention relates to a production method of a scale-inhibiting material, in particular to a production method of a high-performance scale-inhibiting material, and belongs to the technical field of water resource purification. Background technique [0002] With the development of society and the advancement of science and technology, people's living standards are constantly improving. Consumers are paying more and more attention to their own health. In recent years, water purification equipment has emerged in the market. Commonly used water softeners generally consist of three It is composed of three parts, resin tank, salt tank and control valve. Its working process is that when hard water passes through the resin tank, the calcium and magnesium ions in the water will exchange with the sodium ions on the resin. When the sodium ions on the resin are replaced After completion, the control valve sucks salt from the salt bucket to regenerate the resin....

Claims

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Application Information

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IPC IPC(8): C02F5/10
Inventor 蔡宜芳
Owner 祝辉
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