Biological nucleic acid rust inhibitor as well as preparation method and application thereof

A rust inhibitor and nucleic acid technology, which is applied in the field of new biopolymer nucleic acid steel bar rust inhibitor and its preparation, can solve the problems of complex synthesis process, limited rust inhibitor effect, large concentration, etc., and achieves simple production process and long action time. , the effect of slowing down corrosion

Inactive Publication Date: 2017-08-11
HOHAI UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

The technical effect of this patented method overcomes some drawbacks associated with current anti-rust agents such as high usage rates or harmful chemicals used for their preparation. This new type of agent does work better than existing ones but doesn't affect its performance significantly longer compared to previous versions.

Problems solved by technology

This patents discusses various methods for controlling the growth of microscopically tiny iron oxides (iron) on surfaces exposed during civil infrastructure projects like roadways, bridges, tunnels, etc., due to its potential harmful effects when they come loose from these constructions overtime. To address this problem, there were proposals involving adding an anti-corrosive agent called chromate salt to protect against corrosis caused by calcium hydroxyapatite attack. However, traditional chemical agents had drawbacks including high cost, poor performance at longer periods, environmental concerns about their disposal after usage, and potentially negative health impacts associated with heavy metallic consumption.

Method used

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  • Biological nucleic acid rust inhibitor as well as preparation method and application thereof
  • Biological nucleic acid rust inhibitor as well as preparation method and application thereof
  • Biological nucleic acid rust inhibitor as well as preparation method and application thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0028] Use 1 mg of artificially synthesized single-stranded linear oligonucleotides (10 bases in length) as a solute, dissolve it in 10 liters of water, mix and stir evenly, that is, the concentration of nucleic acid in the obtained rust inhibitor is 0.1 mg / L.

Embodiment 2

[0030] Take 50mg of artificially synthesized single-stranded linear oligonucleotide (10000 bases in length) as the solute, dissolve it in 1 liter of water, mix and stir evenly, that is, the concentration of nucleic acid in the obtained rust inhibitor is 50mg / L.

Embodiment 3

[0032] 25 mg of artificially synthesized single-stranded linear oligonucleotides (a mixture of single-stranded linear oligonucleotides with a length of 20 to 100 bases) as a solute was dissolved in 1 liter of Tris-Cl and EDTA. In the buffer solution of 10 mM, the concentration of Tris-Cl is 10 mM, and the concentration of EDTA is 1 mM, mix and stir evenly, that is, the concentration of nucleic acid in the obtained rust inhibitor is 25 mg / L.

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Abstract

The invention discloses a biological nucleic acid rust inhibitor as well as a preparation method and an application thereof. The biological nucleic acid rust inhibitor contains a solvent and DNA (desoxyribonucleic acid) dissolved in the solvent, wherein the solvent is water or a solution. Compared with the prior art, the biopolymer DNA steel bar rust inhibitor solves the problem that a traditional rust inhibitor has negative effects on reinforced concrete due to higher consumption, biological toxic effect, complicated synthesis method, short acting time and the like; the biological nucleic acid rust inhibitor has the advantages of a purely biological rust inhibitor as follows: the consumption is lower, pollution is avoided, the acting time is long, production process is simple, corrosion of steel bars can be effectively inhibited and reduced and the like.

Description

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Claims

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Application Information

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Owner HOHAI UNIV
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