Method and device for removing impurities in granules
A method and apparatus for removing impurities from granules are provided, the method includes: adopting at least one of a low-frequency acoustic wave gas guided wave mode, a high-frequency acoustic wave gas guided wave mode and a high-frequency acoustic wave solid guide mode, so that the acoustic waves are transmitted to the granules to be removed to weaken the bonding force between the granules and the impurities in the granules to be removed, while using airflow to enhance the separation of the impurities and the granules. Among them, the low-frequency acoustic wave gas guided wave mode is that the low-frequency acoustic wave is transmitted by using gas as a wave guide medium; the high-frequency acoustic wave gas guided wave mode is that the high-frequency acoustic wave is transmitted by using gas as a wave guide medium.
1 . An impurity removal device for removing impurities in granules, comprising a shell with a separation cavity,
wherein the impurity removal device further comprises A) a first acoustic wave generating device and a second acoustic wave generating device, or B) the first acoustic wave generating device, the second acoustic wave generating device and an acoustic wave solid guide assembly;
wherein the impurity removal device is configured such that the first acoustic wave generating device automatically emits first acoustic waves having frequencies in the range of 1 Hz-350 Hz and the second acoustic wave generating device automatically emits second acoustic waves having frequencies in the range of 6 kHz-40 kHz simultaneously with the first acoustic wave generating device emitting the first acoustic waves having the frequencies in the range of 1 Hz-350 Hz,
wherein the first acoustic waves emitted by the first acoustic wave generating device and the second acoustic waves emitted by the second acoustic wave generating device are configured to be transmitted to the granules to be removed in the separation cavity by using a gas as a wave guide medium,
wherein the acoustic wave solid guide assembly comprises a connected third acoustic wave generating device and a solid wave guide medium, third acoustic waves emitted by the third acoustic wave generating device are configured to be transmitted by the solid wave guide medium to the granules to be removed in the separation cavity,
wherein the third acoustic waves have frequencies in the range of 6 kHz-40 KHz.
2 . The impurity removal device according to claim 1 , further comprising a blower and an induced draft fan, wherein the blower is configured to introduce the air flow into the separation cavity, wherein the induced draft fan is for drawing the air flow in the separation cavity and wherein the shell is provided with a granule inlet and a granule outlet respectively communicating with the separation cavity, and the separation cavity is provided with a drainage device for guiding the granules to be removed in a dispersed state in the separation cavity, and the drainage device is arranged between the granule inlet and the granule outlet.
3 . The impurity removal device according to claim 2 , wherein at least part of the drainage device is connected to the third acoustic wave generating device as the solid wave guide medium.
4 . The impurity removal device according to claim 2 , wherein the device further comprises a distributor arranged at the granule inlet, and the distributor spreads the granules to be removed on the drainage device.
5 . The impurity removal device according to claim 4 , wherein the distributor is connected to the third acoustic wave generating device as the solid wave guide medium.
6 . A method for removing impurities in granules, comprising: providing the impurity removal device according to claim 1 ; adopting at least one mode selected from the group consisting of a low-frequency acoustic wave gas guided wave mode, a high-frequency acoustic wave gas guided wave mode and a high-frequency acoustic wave solid guide mode, an acoustic wave is transmitted to the granules to be removed to weaken a binding force between the granules and the impurities in the granules to be removed, and at the same time, a separation of the impurities and the granules is assisted by an air flow; wherein: the low-frequency acoustic wave gas guided wave mode is that a low-frequency acoustic wave is transmitted by using a gas as a wave guide medium; the high-frequency acoustic wave gas guided wave mode is that a high-frequency acoustic wave is transmitted by using the gas as the wave guide medium; the high-frequency acoustic wave solid guide mode is that the high-frequency acoustic wave is transmitted by using a solid body as the wave guide medium.
7 . The method according to claim 6 , wherein the at least one mode selected from the group consisting of the low-frequency acoustic wave gas guided wave mode, the high-frequency acoustic wave gas guided wave mode and the high-frequency acoustic wave solid guide mode is adopted, and the acoustic waves are transmitted to the granules to be removed, comprising:
at least two modes selected from the group consisting of the low-frequency acoustic wave gas guided wave mode, the high-frequency acoustic wave gas guided wave mode and the high-frequency acoustic wave solid guide mode are adopted to transmit the acoustic waves to the granules to be removed.
8 . The method according to claim 6 , wherein,
a frequency of the low-frequency acoustic wave in the low-frequency acoustic wave gas guided wave mode is one frequency or a combination of multiple frequencies;
a frequency of the high-frequency acoustic wave in the high-frequency acoustic wave gas guided wave mode is one frequency or a combination of multiple frequencies;
a frequency of the high-frequency acoustic wave in the high-frequency acoustic wave solid guide mode is one frequency or a combination of multiple frequencies.
9 . The method according to claim 6 , wherein,
a waveform of the low-frequency acoustic wave in the low-frequency acoustic wave gas guided wave mode is one waveform or a combination of multiple waveforms;
a waveform of the high-frequency acoustic wave in the high-frequency acoustic wave gas guided wave mode is one waveform or a combination of multiple waveforms;
a waveform of the high-frequency acoustic wave in the high-frequency acoustic wave solid guide mode is one type of waveform or a combination of multiple types of waveforms.
10 . The method according to claim 6 , wherein,
an amplitude of the low-frequency acoustic wave in the low-frequency acoustic wave gas guided wave mode is one amplitude or a combination of multiple amplitudes;
an amplitude of the high-frequency acoustic wave in the high-frequency acoustic wave gas guided wave mode is one amplitude or a combination of multiple amplitudes;
an amplitude of the high-frequency acoustic wave in the high-frequency acoustic wave solid guide mode is one amplitude or a combination of multiple amplitudes.
11 . The method according to claim 6 , wherein a frequency of the low-frequency acoustic wave is 1 Hz~350 Hz, and a frequency of the high-frequency acoustic wave is 6 kHz~40 kHz.
12 . The method according to claim 6 , wherein the at least one selected from the group consisting of the low-frequency acoustic wave gas guided wave mode, the high-frequency acoustic wave gas guided wave mode and the high-frequency acoustic wave solid guide mode is adopted, and the acoustic waves are transmitted to the granules to be removed, comprising:
in a state of a flow of the granules to be removed, the at least one selected from the group consisting of the low-frequency acoustic wave gas guided wave mode, the high-frequency acoustic wave gas guided wave mode and the high-frequency acoustic wave solid guide mode is configured to transmit the acoustic wave to the granules to be removed.
13 . The method according to claim 6 , wherein the at least one selected from the group consisting of the low-frequency acoustic wave gas guided wave mode, the high-frequency acoustic wave gas guided wave mode and the high-frequency acoustic wave solid guide mode is adopted, and the acoustic waves are transmitted to the granules to be removed, comprising:
in a state of applying at least one selected from the group consisting of plasma, microwave, infrared, and dry ice to the granules to be removed, the at least one selected from the group consisting of the low-frequency acoustic wave gas guided wave mode, the high-frequency acoustic wave gas guided wave mode, and the high-frequency acoustic wave solid guide mode is adopted, and the acoustic waves are transmitted to the granules to be removed.
14 . An impurity removal device for removing impurities in granules, wherein the device comprises a shell with a separation cavity, and the device further comprises a first acoustic wave generating device, a second acoustic wave generating device and an acoustic wave solid guide assembly;
wherein the impurity removal device is configured such that the first acoustic wave generating device automatically emits first acoustic waves having frequencies in the range of 1 Hz-350 Hz in a gas medium, the second acoustic wave generating device automatically emits second acoustic waves having frequencies in the range of 6 kHz-40 kHz in the gas medium simultaneously with the first acoustic wave generating device emitting the first acoustic waves having the frequencies in the range of 1 Hz-350 Hz, the acoustic wave solid guide assembly automatically emits third acoustic waves, and the acoustic wave solid guide assembly comprises a connected third acoustic wave generating device and a solid wave guide medium through which the third acoustic waves are transmitted, wherein the third acoustic waves have frequencies in the range of 6 kHz-40 kHz.
15 . The impurity removal device according to claim 14 , further comprising a blower and an induced draft fan, wherein the blower is configured to introduce the air flow into the separation cavity and wherein the induced draft fan is configured to draw out the air flow, wherein the shell is provided with a granule inlet and a granule outlet respectively communicating with the separation cavity, and the separation cavity is provided with a drainage device for guiding the granules to be removed in a dispersed state in the separation cavity, and the drainage device is arranged between the granule inlet and the granule outlet.
16 . The impurity removal device according to claim 15 , wherein at least part of the drainage device is connected to the third acoustic wave generating device as the solid wave guide medium.
17 . The impurity removal device according to claim 15 , wherein the device further comprises a distributor disposed at the granule inlet, the distributor spreads the granules to be removed on the drainage device.
18 . The impurity removal device according to claim 17 , wherein the distributor is connected to the third acoustic wave generating device as the solid wave guide medium.
19 . The impurity removal device according to claim 14 , wherein the device further comprises at least one selected from the group consisting of a plasma generator, a microwave generator, an infrared generator, and a dry ice injection port.