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Antibiotic printing ink and making method thereof

A technology of ink and composite antibacterial agent, applied in the direction of ink, botanical equipment and methods, bactericide, etc., can solve the problems of serious wear of the three-roller machine, product discoloration, and affecting the shelf life of the printing ink, and achieve good light resistance and high efficiency The effect of antimicrobial properties

Active Publication Date: 2007-12-12
CHINA BANKNOTE INK +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

When a single metal ion-loaded inorganic antibacterial agent is added to the ink, the antibacterial effect is not significant, or the product changes color. For example, the antibacterial effect of the sample obtained by adding silver ion-loaded zeolite or silicon oxide antibacterial agent to the ink is reproducible. Bad or insignificant, and the wear of equipment such as three-roll machines is serious during the ink production process, so it is not suitable for ink production
[0004] Japanese patents JP10204353 and JP9039369 use an inorganic-organic composite antibacterial agent, but the defect of the patent is that the fineness of the composite antibacterial agent cannot be effectively controlled, which will obviously affect the printing suitability and storage stability of the ink, and then affect the actual Printing effect and shelf life of ink

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0050] Inorganic antibacterial agent, adopts commercially available product, the layered silver-loaded zirconium phosphate of Shanghai Runhe Nano Material Technology Co., Ltd.;

[0051] 20Kg inorganic-organic composite antibacterial agent (layered silver-loaded zirconium phosphate: ethylparaben=1: 1, weight), 20Kg rosin modified phenolic resin were mixed and stirred for 20 minutes, and rolled by a three-roll mill to make it Fineness≤15μm.

[0052] It is the petroleum solvent of 190-230 ℃ that the composite antimicrobial agent 15Kg of above-mentioned preparation, connecting material 40Kg, filler ground calcium carbonate 30Kg, organic pigment permanent red 10.5Kg, microcrystalline Kanaba wax 3.5Kg, 10Kg boiling point, 3Kg manganese borate and 2Kg potassium dodecylbenzenesulfonate were mixed and stirred for 50 minutes, and rolled by a three-roll mill to make the fineness ≤ 15 μm.

[0053] Using the above-mentioned antibacterial detection method to detect, its anti-Escherichia co...

Embodiment 2

[0058] Inorganic antibacterial agent, adopt commercially available product, cubic structure silver-loaded zirconium phosphate of Shanghai Weilai New Material Technology Co., Ltd.;

[0059] 20Kg inorganic-organic composite antibacterial agent (cubic structure silver-loaded zirconium phosphate: methylparaben=1.5: 1, weight), 45Kg rosin modified phenolic resin were mixed and stirred for 20 minutes, and rolled by a three-roll mill to make it Fineness≤15μm.

[0060] Get the compound antibacterial agent 17Kg of above-mentioned preparation, connecting material 41Kg, heavy calcium carbonate 30Kg, organic pigment permanent orange 9.3Kg, microcrystalline Kanaba wax 3.5Kg, 10Kg boiling point is the petroleum solvent of 190-250 ℃, 3Kg boric acid Manganese and 2Kg potassium dodecylbenzenesulfonate were mixed and stirred for 40 minutes, and rolled by a three-roll mill to make the fineness ≤ 15 μm. Using the above-mentioned antibacterial detection method to detect, its anti-Escherichia coli...

Embodiment 3

[0065] With 20Kg inorganic-organic composite antibacterial agent (average particle diameter is the silver-carrying glass micropowder of 3 μ m: ethylparaben = 1: 1), 68Kg rosin modified phenolic resin mixed and stirred for 20 minutes, adopted three-roll mill rolling, Make it finer than 15μm.

[0066] Get the compound antibacterial agent 18Kg of above-mentioned preparation, rosin modified phenolic resin 40Kg, heavy calcium carbonate 18Kg, organic pigment permanent orange 8Kg, inorganic pigment titanium dioxide 5Kg, microcrystallization carnaba wax 5Kg, 8Kg boiling point is 190-250 ℃ The petroleum solvent, 2Kg manganese borate, 1Kg zirconium octoate, 2Kg sodium dodecylbenzenesulfonate were mixed and stirred for 45 minutes, and rolled by a three-roll mill to make the fineness ≤ 15 μm. Using the above-mentioned antibacterial detection method to detect, its anti-Escherichia coli activity value is 3.6, and the anti-Staphylococcus aureus activity value is 4.1.

[0067] The average pa...

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Abstract

The invention relates to an antibiotic printing ink and its preparation method. The antibiotic printing ink comprises 5-20 wt% compound antimicrobial agents in the base material of the printing ink. The compound antimicrobial agent is a mixture of inorganic-organic compound antimicrobial agent and rosin modified phenolic resin. The inorganic-organic compound antimicrobial agent comprises inorganic antimicrobial agent and organic antimicrobial agent. The inorganic antimicrobial agent is phosphate or glassing micro powder loading silver ion, zinc ion, or silver-zinc compound ion. The inventive printing ink adopts compound antimicrobial agent, and endow the printing ink with bacteria resistance with broad spectrum, long term and high performance. The product is hard to discolor and cause no wear to the process equipment during preparing process. The inventive printing ink has no foreign odor, and no toxicity and irritation proven by rat acute toxicity test and acute rabbit skin stimulus test.

Description

technical field [0001] The invention relates to an ink, in particular to an antibacterial ink and a preparation method thereof. Background technique [0002] With the improvement of people's awareness of environmental protection and the rise of environmentally friendly printing, the printed materials that people come into contact with are non-toxic. However, such printed materials are more likely to breed bacteria and mildew when stored. Printed matter is contaminated with microorganisms, including many pathogenic bacteria, which can easily become the medium of transmission of germs and pose a potential threat to human health. Therefore, in addition to certain antibacterial treatment to the printing substrate (paper and plastic, etc.), certain antibacterial treatment is also required for the ink printed on the surface. [0003] Japanese patents JP9291243, JP9263725, JP8337078, and Chinese patent CN1195120C relate to antibacterial inks, and the above four patents generally u...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A01N59/16A01N25/10A01P3/00C09D11/00
Inventor 姚卫杨光孟庆飞阴建波陈雅仙李青齐永路
Owner CHINA BANKNOTE INK
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