Nanoparticle ultrasonic atomization classification device and method thereof
A technology of ultrasonic atomization and nano-particles, which is applied in the direction of separation methods, chemical instruments and methods, spraying devices, etc., and can solve the problem that the flow rate of the material liquid does not completely match the ultrasonic atomization power of the transducer, and the droplets cannot be fully recovered. , low utilization rate of material and liquid, etc., to improve the water mist adsorption flow field, increase the water mist collection rate, and achieve the effect of thorough recovery
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Embodiment 1
[0050] Such as figure 1 As shown, the present embodiment provides a nanoparticle ultrasonic atomization classification device, the device includes: ultrafine powder solution tank 1, feed pipe 2, ultrasonic atomization reaction tank 3, ultrasonic atomization device 4, blower Device 5, water mist collection tank 6, gas-liquid separation device 7, water mist collection pipe 8 and return pipe 9.
[0051] Such as figure 2 As shown, the top of the ultrafine powder solution tank 1 is provided with an ultrafine powder solution feed port 110, a bottom bubbling generator 120 is installed at the bottom, and a side bubbling generator 130 is installed in the middle through a rib structure 131; The feed pipe 2 is arranged on the side of the ultrafine powder solution tank 1, 20 to 30 cm lower than the top surface of the tank body, and the feed pipe 2 is provided with a feed flow valve 210 for controlling the feed flow rate; the return pipe 9 is installed on the outer wall of the ultrafine...
Embodiment 2
[0061] This embodiment provides a classification method of a nanoparticle ultrasonic atomization classification device, the specific process is as follows:
[0062] Step 1: close the feed flow valve 210, pour a uniformly mixed ultrafine powder suspension into the ultrafine powder solution tank 1, the mass concentration of the ultrafine powder suspension is 0.1% to 1%, and the particle The median particle size range is between 0.5 and 0.6 μm, open the feed flow valve 210 to the maximum flow rate to check whether the pipeline is unblocked and clean the pipeline, open the return flow valve 910 and the return pump 920 after 10 to 15 seconds, and check the return Is it normal;
[0063] Step 2: After confirming that the return material is normal, adjust the flow rate of the feed flow valve 210 to one-half of the maximum flow rate; turn on all the blowers 510 to continuously blow air to the ultrasonic atomization reaction tank 3, and at the same time, ventilate to the water mist deli...
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