Anti-pollution small-sized air purifying device for photocatalytically decomposing toxic gases
An air purification device and toxic gas technology, applied in the field of air purification, can solve the problems of easily adsorbing colored particles, inducing skin cancer, side effects, etc., and achieve the effect of being suitable for industrial production, flexible application range, and broad application prospects
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Embodiment 1
[0030] Preparation of Photocatalytic Quartz Glass Fiber, Quartz Glass Fiber-TiO2 Nanowire Composite
[0031] ① Mix 30mL polyethylene glycol with a molecular weight of 6000 and 30mL water, and stir to form a transparent solution;
[0032] ②Add 2mmolK 2 TiO(C 2 o 4 ) 2 , stirred for 30min, and poured the mixed solution into a 100mL autoclave;
[0033] ③ Press quartz glass fiber and K 2 TiO(C 2 o 4 ) 2 The mass ratio is 100:20, take a quartz glass fiber with a diameter of 100 microns, cut it into a fiber segment with a length of 5 cm, tie the quartz glass fiber bundle at one end, and immerse the tied end down into the above-mentioned high-pressure reactor in the mixed solution;
[0034] ④Put the autoclave into a resistance furnace, and conduct a hydrothermal reaction at 100 degrees for 30 hours;
[0035] ⑤ Cool naturally after the hydrothermal reaction is completed, wash the quartz glass fiber bundles with pure water 5-6 times and dry them at 70°C for 12 hours to prepar...
Embodiment 2
[0046] ① Mix 6 mL of polyethylene glycol with a molecular weight of 4000 and 10 mL of water, and stir to form a transparent solution;
[0047] ②Add 2mmolK 2 TiO(C 2 o 4 ) 2 , stirred for 30min, and poured the mixed solution into a 50mL autoclave;
[0048] ③Take a quartz glass fiber with a diameter of 160 microns, cut it into a fiber section with a length of 5 cm, tie the quartz fiber bundle at one end, and put it into the above-mentioned high-pressure reactor, wherein the quartz fiber and K 2 TiO(C 2 o 4 ) 2 The mass ratio is 100:3;
[0049] ④Put the autoclave into a resistance furnace, and conduct a hydrothermal reaction at 165 degrees for 18 hours;
[0050] ⑤ Cool naturally after the completion of the hydrothermal reaction, wash the quartz glass fiber bundles with pure water several times and dry at 70°C for 12 hours to obtain a quartz glass fiber-titanium dioxide composite material.
[0051] ⑥ Bond the bundled end of the 2.7W LED UV lamp with the photocatalytic qua...
Embodiment 3
[0059] ① Mix 18mL polyethylene glycol with 20mL water and stir to form a transparent solution;
[0060] ②Add 2mmolK 2 TiO(C 2 o 4 ) 2 , stirred for 30min, and poured the mixed solution into a 50mL autoclave;
[0061] ③Take a quartz glass fiber with a diameter of 20 microns, cut it into a fiber section with a length of 5 cm, tie the quartz fiber bundle at one end, and put it into the above-mentioned high-pressure reactor, wherein the quartz fiber and K 2 TiO(C 2 o 4 ) 2 The mass ratio is 100:11.5;
[0062] ④Put the autoclave into a resistance furnace, and conduct a hydrothermal reaction at 230 degrees for 6 hours;
[0063] ⑤ Cool naturally after hydrothermal reaction, wash the quartz glass fiber bundles with pure water several times and dry at 70°C for 12 hours to obtain the quartz glass fiber-titanium dioxide composite material.
[0064] ⑥ Bond the bundled end of the 5W LED ultraviolet lamp with the photocatalytic quartz glass fiber bundle with a photoresist, spread t...
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