Mask used for bacteria suppression and dust prevention
A mask and dust technology, applied in protective clothing, applications, clothing, etc., to achieve good adsorption, good filtration efficiency, and the effect of protecting coal dust
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Embodiment 1
[0029] combine figure 1 The mask used for bacteriostasis and protection of PM2.5 according to the present invention shown is composed of the main body part 1 of the mask and the earbands 2 and 3 of the mask.
[0030] combine figure 2 The described mask main body 1 of the mask that the present invention is shown for bacteriostasis and protection PM2.5 is composed of the first non-woven layer 4, the metal ion adsorption layer 5, the antibacterial layer 6 and the second non-woven layer 7 from top to bottom. Made by stacking one after the other.
[0031] Described first non-woven fabric layer 4 and second non-woven fabric layer 7 are identical, and described non-woven fabric material is medical non-woven fabric, purchased from Suzhou Aimei Medical Products Co., Ltd.
[0032] The metal ion adsorption layer 5 is composed of chitosan or its derivatives and medical non-woven fabrics (purchased from Suzhou Aimei Medical Products Co., Ltd.). The preparation method is as follows: chi...
Embodiment 2
[0042] The mask of the present invention for bacteriostasis and protection of dust (made in Example 1) has an adsorption test on metal particle dust, which has been detected by the Jiangsu Provincial Special Protective Products Testing Center.
[0043] 1. Grouping: The experiment is divided into copper sulfate aerosol group, iron hydroxide aerosol group, lead acetate aerosol group, and sodium chloride aerosol group. Each major group is an experimental group. The aerosol concentration is 20 mg / m 3 , the second aerosol concentration of the experimental group was 80 mg / m 3 , experimental group three 200mg / m 3 , 10 in each group.
[0044] 2. Experimental steps
[0045] Equipment: aerosol generator, air pump, gas flow meter, particle detector
[0046] Detection conditions: airflow 85L / min, temperature around 25℃, relative humidity around 30%, concentration 0-200mg / m 3 .
[0047] Operation: Prepare aerosols of copper sulfate, ferric hydroxide, lead acetate, and sodium chloride ...
Embodiment 3
[0060] Embodiment 3 The respiratory resistance of the mask of the present invention was detected, and it was detected by the Jiangsu Provincial Special Protective Equipment Testing Center.
[0061] 1. Equipment: test head mold breathing tube, pressure measuring tube, micro pressure gauge, flow meter, air pump, compressor
[0062] 2. Detection conditions: airflow flux 85L / min
[0063] 3. Operation: put the mask (made in Example 1) on the test head mold, check the air tightness, adjust the airflow to 85L / min, turn on the air pump or compressor, and record the inhalation resistance and exhalation resistance. Calculate the average
[0064] 3. Experimental data
[0065] sample airflow Inhalation resistance (Pa) Expiratory resistance (Pa) 85 66 85
[0066] Experimental conclusion: the breathing resistance of the mask of the present invention is low.
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