Antibacterial treatment method for fiber, method for producing antibacterial fiber and antibacterial fiber
a fiber and treatment method technology, applied in the direction of electric/magnetic/electromagnetic heating, disinfection, liquid/solution decomposition chemical coating, etc., can solve the problems of increasing the cost, poor antibacterial effect, harmful effects on the fiber, etc., and achieves low cost and high resistance to washing
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example 1
a. Example 1
(1) Preparation of Antibacterial Fiber Sample
[0058]A silver nitrate aqueous solution obtained by adding silver nitrate to 800 mL of water so as to attain a concentration of 0.1 mM was put in a 1-L plastic bottle, and 8 mL of 2-propanol was further added thereto for accelerating the reduction reaction of silver ions. In the thus obtained aqueous solution, 8.6 mg of silver is present in the form of ions.
[0059]A commercially available cotton cloth (with a size of 50 cm×50 cm) was immersed in the resultant aqueous solution, and the plastic bottle was sealed and irradiated with cobalt-60 γ rays by using cobalt-60 γ irradiation equipment with stirring under the following conditions:
[0060]Radiation Source: Cobalt-60 γ source (with energy of γ ray photon of 1.25 MeV)
[0061]Source Strength: approximately 7000 curie
[0062]Dose Rate: 3 kGy / h
[0063]Irradiation Time: 2 hours
[0064]Thereafter, the cotton cloth was taken out of the plastic bottle, washed with water and dried, and thus, an ...
examples 2 through 5
2. Examples 2 through 5
[0072]In the following examples, silver ions were used as the noble metal ions, and the relationship between the concentration and the antibacterial property was tested.
[0073](1) Preparation of Samples
[0074]A silver nitrate aqueous solution obtained by adding silver nitrate to 1 L of water so as to attain each concentration shown in Table 2 was put in a vessel, and 1 vol % of 2-propanol was further added thereto for accelerating the reduction reaction of silver ions.
[0075]A commercially available cotton cloth (with a size of 50 cm×50 cm) was immersed in each of the resultant aqueous solutions, and the vessel was sealed and irradiated with cobalt-60 γ rays at an absorbed dose of 10 kGy (10000 J / kg) by using the same cobalt-60 γ irradiation equipment as in Example 1. It is noted that the aqueous solution was not stirred during the irradiation. Thereafter, the cotton cloth was taken out of the vessel, washed with water and dried to obtain a sample of each of Exam...
examples 6 through 10
3. Examples 6 through 10
[0079]In the following examples, silver ions were used as the noble metal ions, and the relationship between the absorbed dose and the antibacterial property was tested.
[0080](1) Preparation of Samples
[0081]A silver nitrate aqueous solution obtained by adding silver nitrate to 1 L of water was put in a vessel, and 1 vol % of 2-propanol was further added thereto for accelerating the reduction reaction of silver ions.
[0082]A commercially available cotton cloth (with a size of 50 cm×50 cm) was immersed in the resultant aqueous solution, and the vessel was sealed and irradiated with cobalt-60 γ rays at each absorbed dose shown in Table 3 by using the same cobalt-60 γ irradiation equipment as in Example 1. It is noted that the aqueous solution was not stirred during the irradiation. Thereafter, the cotton cloth was taken out of the vessel, washed with water and dried to obtain a sample of each of Examples 6 through 10 having silver nanoparticles adhered to the sur...
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