SAFE REACTOR FOR LEACHING OF WASTE BATTERY POWDER AND CAPABLE OF CONTROLLING HYDROGEN CONCENTRATION
20240043958 ยท 2024-02-08
Assignee
- GUANGDONG BRUNP RECYCLING TECHNOLOGY CO., LTD. (Foshan, Guangdong, CN)
- HUNAN BRUNP RECYCLING TECHNOLOGY CO., LTD. (Changsha, Hunan, CN)
- HUNAN BRUNP VEHICLES RECYCLING CO., LTD. (Changsha, Hunan, CN)
Inventors
- Haijun YU (Foshan, Guangdong, CN)
- Changdong LI (Foshan, Guangdong, CN)
- Yinghao XIE (Foshan, Guangdong, CN)
- Xuemei ZHANG (Foshan, Guangdong, CN)
- Kang CHEN (Foshan, Guangdong, CN)
Cpc classification
Y02W30/84
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
C22B23/0415
CHEMISTRY; METALLURGY
Y02P10/20
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
C22B7/00
CHEMISTRY; METALLURGY
International classification
C22B7/00
CHEMISTRY; METALLURGY
Abstract
A hydrogen concentration-controllable safe reaction tank for leaching of waste battery powder, includes at bed provided with supporting frames and a driver; a rotary acid pumping barrel articulated with the supporting frames, the driver being configured to drive the rotary acid pumping barrel to rotate, and a delivery pipe mounted on the bed and passing through the rotary acid pumping barrel where a screw for pushing material is disposed in the delivery pipe; the delivery pipe includes a pouring section located in the rotary acid pumping barrel, the pouring section is provided with a pouring opening at an upper portion and acid leakage holes at a bottom, and at least one acid pumping plate is mounted on an inner wall of the rotary acid pumping barrel.
Claims
1. A hydrogen concentration-controllable safe reaction tank for leaching of waste battery powder, comprising: a bed provided with supporting frames and a driver; a rotary acid pumping barrel articulated with the supporting frames, wherein the rotary acid pumping barrel is of a sealed circular container structure, the supporting frames comprise two supporting frames which are separately arranged on the left and the right, the left end and right end of the rotary acid pumping barrel are rotatably and sealingly connected to the two supporting frames, respectively, and the driver is configured to drive the rotary acid pumping barrel to rotate; a delivery pipe mounted on the bed and passing through the rotary acid pumping barrel, wherein a screw for pushing material is disposed in the delivery pipe; the delivery pipe comprises a pouring section, a feed section, and a discharge section located in the rotary acid pumping barrel, the pouring section is provided with a pouring opening at an upper portion and acid leakage holes at a bottom; at least one acid pumping plate is mounted on an inner wall of the rotary acid pumping barrel, and the driver is configured to drive the rotary acid pumping barrel to rotate, so that the acid pumping plate can scoop up an acid liquor and pour the acid liquor into the pouring section; a gas storage device, comprising a vacuum pump and a reservoir, wherein a gas outlet end of the vacuum pump is connected to the reservoir, and a gas suction end of the vacuum pump is communicated with the interior of the rotary acid pumping barrel; and a controller, wherein a hydrogen detector is mounted in the rotary acid pumping barrel, and the controller is electrically connected to the hydrogen detector, the vacuum pump and the driver, respectively.
2. The hydrogen concentration-controllable safe reaction tank for leaching of waste battery powder of claim 1, wherein taking a first cross section of the rotary acid pumping barrel, the acid pumping plate is arc-shaped in the first cross section, and a concave portion of the acid pumping plate faces outside the rotary acid pumping barrel.
3. The hydrogen concentration-controllable safe reaction tank for leaching of waste battery powder of claim 1, wherein taking a second cross section of the pouring section, an included angle between both ends of the pouring opening is defined as in the second cross section, and <180.
4. (canceled)
5. (canceled)
6. The hydrogen concentration-controllable safe reaction tank for leaching of waste battery powder of claim 1, wherein one end of the delivery pipe is an opening, while the other end is a seal; the opening is provided with a downwardly bending elbow, and the delivery pipe is provided with a feed inlet at a portion close to the seal; and a feed hopper is disposed over the feed inlet, with an outlet end of the feed hopper being sealingly connected to the feed inlet.
7. The hydrogen concentration-controllable safe reaction tank for leaching of waste battery powder of claim 1, wherein the supporting frames support left and right ends of the rotary acid pumping barrel, the driver comprises driving wheels and motors, and the driving wheels are mounted under the rotary acid pumping barrel and abut against the external surface of the rotary acid pumping barrel.
8. The hydrogen concentration-controllable safe reaction tank for leaching of waste battery powder of claim 1, wherein the rotary acid pumping barrel is provided with a sealing door.
9. The hydrogen concentration-controllable safe reaction tank for leaching of waste battery powder of claim 7, wherein the surface of the driving wheel is provided with a rubber layer.
10. The hydrogen concentration-controllable safe reaction tank for leaching of waste battery powder of claim 1, wherein the screw and an inner wall of the delivery pipe are coated with plastic layers.
11. The hydrogen concentration-controllable safe reaction tank for leaching of waste battery powder of claim 2, wherein taking a second cross section of the pouring section, an included angle between both ends of the pouring opening is defined as in the second cross section, and <180.
12. The hydrogen concentration-controllable safe reaction tank for leaching of waste battery powder of claim 2, wherein one end of the delivery pipe is an opening, while the other end is a seal; the opening is provided with a downwardly bending elbow, and the delivery pipe is provided with a feed inlet at a portion close to the seal; and a feed hopper is disposed over the feed inlet, with an outlet end of the feed hopper being sealingly connected to the feed inlet.
13. The hydrogen concentration-controllable safe reaction tank for leaching of waste battery powder of claim 2, wherein the supporting frames support left and right ends of the rotary acid pumping barrel, the driver comprises driving wheels and motors, and the driving wheels are mounted under the rotary acid pumping barrel and abut against the external surface of the rotary acid pumping barrel.
14. The hydrogen concentration-controllable safe reaction tank for leaching of waste battery powder of claim 2, wherein the rotary acid pumping barrel is provided with a sealing door.
15. The hydrogen concentration-controllable safe reaction tank for leaching of waste battery powder of claim 2, wherein the screw and an inner wall of the delivery pipe are coated with plastic layers.
16. The hydrogen concentration-controllable safe reaction tank for leaching of waste battery powder of claim 13, wherein the surface of the driving wheel is provided with a rubber layer.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0019] The additional aspects and advantages of the present disclosure will become apparent and easily comprehensible from the description of embodiments with reference to the following accompanying drawings, in which:
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026] Reference numerals: bed 100, supporting frame 110, driver 120, driving wheel 121, motor 122, rotary acid pumping barrel 200, acid pumping plate 210, first cross section 220, sealing door 230, delivery pipe 300, screw 310, pouring section 320, pouring opening 321, acid leakage hole 322, second cross section 323, elbow 330, feed inlet 340, feed hopper 350, gas storage device 400, waste battery powder 500 and acid liquor 600.
DETAILED DESCRIPTION
[0027] The embodiments of the present disclosure are described in detail below, and the examples of the embodiments are shown in the accompanying drawings, throughout which identical or similar reference numerals represent identical or similar elements or elements having identical or similar functions. The embodiments described below by reference to the accompanying drawings are exemplary and are merely intended to explain the present disclosure rather than be construed as limiting the present disclosure.
[0028] In the description of the present disclosure, multiple means two or more. Greater than, less than and the like should be understood as excluding this number, while more than and the like should be understood as including this number. It should be understood that with regard to directional description, directions or positional relationships indicated by, for example, upper, lower, front, rear, left, right and middle are based on directions or positional relationships shown in the accompanying drawings. The directions or positional relationships are merely intended to facilitate and simplify the description of the present disclosure rather than indicate or imply that the indicated device or elements must have specific directions and be structured and operated according to the specific directions, and therefore cannot be understood as a limitation to the present disclosure.
[0029] In the description of the present disclosure, unless explicitly defined otherwise, the words such as mount and connect should be understood in a broad sense, and those skilled in the art can reasonably determine the specific meanings of the aforementioned words in the present disclosure in conjunction with the specific contents of the technical solution.
[0030] Referring to
[0031] For example, as shown in
[0032] According to the present disclosure, by adjusting the rotational speed of the screw 310 and the rotational speed of the rotary acid pumping barrel 200, the speed of the waste battery powder 500 moving forward in the screw propulsion barrel and the pouring speed of the acid pumping plate 210 can be controlled, so that the degree of sufficiency of the reaction of the waste battery powder 500 can be controlled. The screw 310 includes a feed section, a pouring section 320 and a discharge section. Because both the feed section and the discharge section use the screw 310 to deliver the waste battery powder 500, when enough waste battery powder 500 is fed into the feed inlet 340, the waste battery powder 500 will be piled up at the feed section and discharge section of the screw 310, the piled waste battery powder 500 can block the outside air from entering the screw propulsion barrel via the feed inlet 340 or the discharge outlet, thus preventing the change of the volume concentration of hydrogen in the screw propulsion barrel caused by the mutual communication of air and the leakage of the hydrogen, and therefore the volume concentration of the hydrogen can be conveniently controlled. For example, before production is started, high-purity hydrogen can be injected into the rotary acid pumping barrel 200, and since the hydrogen can be prevented from leaking out during operation, the volume concentration of the hydrogen in the rotary acid pumping barrel 200 is always higher than a maximum explosive limit concentration, preventing the danger of hydrogen explosion.
[0033] In some embodiments of the present disclosure, as shown in
[0034] In a further embodiment of the present disclosure, as shown in
[0035] For example, the opening adopts the form of a quarter of a circular arc (i.e., =45) or the form of a tenth of a circular arc (i.e., =36), which can prevent the acid liquor 600 from easily splashing when poured and the waste battery powder from splashing out.
[0036] In some embodiments of the present disclosure, as shown in
[0037] In a further embodiment of the present disclosure, the hydrogen concentration-controllable safe reaction tank for leaching of waste battery powder further includes a controller (not shown in the drawings). A hydrogen detector (not shown in the drawings) is mounted in the rotary acid pumping barrel 200. The controller is electrically connected to the hydrogen detector, the vacuum pump and the driver 120, respectively.
[0038] For example, the hydrogen detector, which may be of an on-line type, is used for displaying a volume concentration value of hydrogen in real time. If the volume concentration of the hydrogen decreases and approaches an upper explosive limit or the concentration of the hydrogen is about 85% in the process of reaction, the hydrogen detector sends a feedback to the controller, and the controller controls the rotational speed of the rotary acid pumping barrel 200 or the hydrogen section speed of the vacuum pump, so that the reaction zone and the feeding and discharge zone are always kept outside the explosive limit of the hydrogen.
[0039] In a further embodiment of the present disclosure, as shown in
[0040] In a further embodiment of the present disclosure, as shown in
[0041] In a further embodiment of the present disclosure, as shown in
[0042] In a further embodiment of the present disclosure, the surface of the driving wheel 121 is provided with a rubber layer. The rubber layer plays the role of increasing friction, and besides, the surface of the rubber layer can also have the effect of elastic buffering for shock absorption, preventing the rotary acid pumping barrel 200 and the screw 310 from being deformed and damaged due to mutual violent shock.
[0043] In a further embodiment of the present disclosure, the screw 310 and an inner wall of the delivery pipe 300 are coated with plastic layers. The plastic layers are made of polyformaldehyde (abbreviated as POM) to prevent the screw 310 and the inner wall of the delivery pipe 300 from being corroded, so that the service life of the reaction tank can be prolonged.
[0044] In the description of the present specification, the description of reference terms, such as some embodiments or It is conceivable that, means that the specific features, structures, materials or characteristics described in reference to the embodiment or example are included in at least one embodiment or example of the present disclosure. In the present specification, the schematic description of the aforementioned terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described may be combined in any one or more embodiments or examples in an appropriate manner.
[0045] Although the embodiments of the present disclosure have been illustrated and described, it can be understood by those of ordinary skill in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principle and purpose of the present disclosure, and the scope of the present disclosure is defined by the claims and equivalents therefore.