Germanium mud collecting water tank for germanium processing
By using a combination of flexible mesh sleeves and multi-layer filters in the germanium mud collection tank for germanium processing, the problems of germanium mud loss and low recovery efficiency caused by the impact of new wastewater are solved, and more efficient germanium mud recovery and the risk of water outlet blockage are achieved.
Patent Information
- Application Number
- CN202421617449.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-09
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-07-09
AI Technical Summary
During the existing germanium mud collection tank for germanium processing, the impact of new wastewater causes serious loss of germanium mud and may lead to blockage of the water outlet. At the same time, the recycling level of germanium mud is insufficient.
A germanium mud collection tank for germanium processing was designed, and the first flexible mesh sleeve was combined with the filter mesh assembly. Through the dispersion and buffering of the flexible mesh sleeve, the impact of new wastewater on static germanium mud was reduced, and the recycling efficiency of germanium mud was improved through the multi-layer filter mesh.
It effectively reduces the loss of germanium mud, reduces the risk of water outlet blockage, and improves the degree of recycling of germanium mud.
Smart Images

Figure CN222918278U_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the field of germanium materials, and more particularly to a germanium sludge collection water tank for germanium processing. Background Art
[0002] Figure 7 It is a perspective view of the existing germanium sludge collection water tank 100'.
[0003] The wastewater formed during germanium processing is introduced into the water tank 11' through the water inlet pipe 13' provided in the water tank 11'. The wastewater containing germanium sludge introduced into the water tank 11' is allowed to stand, and the germanium sludge settles to recover the germanium sludge. The supernatant formed by standing is discharged through the water outlet 15' provided in the water tank 11'.
[0004] However, during the standing process, new wastewater will still be introduced into the water tank 11', which will cause the germanium sludge deposited by standing to be impacted by the new wastewater, and part of the germanium sludge on the surface of the deposited germanium sludge will float up. This will result in an increase in the amount of germanium sludge contained in the supernatant discharged from the water outlet 15' of the water tank 11', and serious loss of germanium sludge. In addition, there is also a risk that the water outlet 15' will be blocked after long-term use due to the increase in the amount of germanium sludge contained in the supernatant.
[0005] In addition, relying solely on standing sedimentation to recover germanium sludge still needs to be improved in terms of the recovery degree of germanium sludge. Summary of the Utility Model
[0006] In view of the problems existing in the background art, an object of the present disclosure is to provide a germanium sludge collection water tank for germanium processing, which can reduce the impact of the wastewater containing germanium sludge introduced into the water tank on the germanium sludge deposited by standing in the water tank.
[0007] Another object of the present disclosure is to provide a germanium sludge collection water tank for germanium processing, which can reduce the risk of blockage of the water outlet after long-term use.
[0008] Still another object of the present disclosure is to provide a germanium sludge collection water tank for germanium processing, which can improve the recovery degree of germanium sludge.
[0009] Accordingly, a germanium sludge collection water tank for germanium processing is provided. The germanium sludge collection water tank for germanium processing includes a first collection module; the first collection module includes a first water tank, a filter screen assembly, a first water inlet pipe, a first flexible mesh sleeve, and a first water outlet; the first water tank has a receiving cavity; the filter screen assembly is placed in the receiving cavity, and the filter screen assembly has first filter screens arranged on the front, back, left, and right sides. The first filter screens on the front, back, left, and right sides enclose an inner space. The first filter screens on the front, back, left, and right sides are spaced apart from the front, back, left, and right inner walls of the first water tank to form a communicating channel surrounding the first filter screens on the front, back, left, and right sides; the first water inlet pipe is used to receive the wastewater containing germanium sludge during germanium processing, and the first outlet end of the first water inlet pipe extends into the inner space; one end of the first flexible mesh sleeve is sleeved on the first outlet end of the first water inlet pipe. The first flexible mesh sleeve is located in the inner space, and the circumferential and bottom ends of the first flexible mesh sleeve are closed. The first flexible mesh sleeve is used to receive the wastewater containing germanium sludge discharged from the first outlet end of the first water inlet pipe, buffer the wastewater containing germanium sludge entering the first flexible mesh sleeve, and enable the wastewater and the germanium sludge particles in the wastewater to enter the inner space through the mesh holes of the first flexible mesh sleeve; the first filter screens on the front, back, left, and right sides are used to filter and intercept the wastewater and the germanium sludge particles in the wastewater entering the inner space via the first flexible mesh sleeve in the inner space, so that the filtered wastewater enters the channel; the first water outlet is communicated with the channel, and the first water outlet is used to discharge the filtered wastewater.
[0010] The beneficial effects of the present disclosure are as follows.
[0011] In the germanium sludge collection water tank for germanium processing according to the present disclosure, through the setting of the first flexible mesh sleeve sleeved on the first outlet end of the first water inlet pipe, compared with the situation of directly discharging the wastewater containing germanium sludge into the inner space (even the receiving cavity) via the first outlet end of the first water inlet pipe without using the first flexible mesh sleeve, the flexible deformation characteristics of the first flexible mesh sleeve disperse and buffer the flow rate of the new wastewater containing germanium sludge discharged into the inner space via the first outlet end of the first water inlet pipe. The impact of the wastewater entering the inner space through the mesh holes of the first flexible mesh sleeve on the germanium sludge collected by static settlement in the inner space is reduced. In this way, the degree of floating of the germanium sludge on the surface part of the germanium sludge collected by static settlement is reduced, so that the amount of germanium sludge contained in the wastewater discharged from the first water outlet can be reduced, thereby reducing the loss of germanium sludge and reducing the risk of blockage of the first water outlet due to the attachment of the germanium sludge contained in the wastewater discharged from the first water outlet after long-term use.
[0012] In addition, the first flexible mesh sleeve can play a role in preliminary filtration and collection, cooperate with the filtration of the first filter screens on the front, rear, left, and right sides, and greatly improve the degree of static settlement and collection of germanium mud in the inner space. At the same time, in conjunction with the aforementioned dispersion and buffering effects of the first flexible mesh sleeve, the risk of blockage caused by the germanium mud contained in the wastewater discharged from the first water outlet adhering to the inside of the first water outlet after long-term use is further reduced. In addition, through the passage formed between the first filter screens on the front, rear, left, and right sides and the first inner walls on the front, rear, left, and right sides of the first water tank, which is a connected passage surrounding the first filter screens on the front, rear, left, and right sides, the filtered wastewater coming out of the first filter screens on the front, rear, left, and right sides will also undergo static settlement of germanium mud in the passage. The germanium mud statically settled in the passage is hardly affected by the impact of the germanium-mud-containing wastewater discharged into the inner space through the first outlet end of the first water inlet pipe because of the aforementioned dispersion and buffering effects of the first flexible mesh sleeve and the fact that the first filter screens on the front, rear, left, and right sides play a role in further completely dispersing the impact. This further reduces the risk of blockage caused by the germanium mud contained in the wastewater discharged from the first water outlet adhering to the inside of the first water outlet after long-term use. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 is an exploded view of a germanium mud collection water tank for germanium processing according to the present disclosure.
[0014] Figure 2 is a three-dimensional sectional view of the first water tank of the first collection module of a germanium mud collection water tank for germanium processing.
[0015] Figure 3 is a three-dimensional sectional view of the second water tank of the second collection module of a germanium mud collection water tank for germanium processing.
[0016] Figure 4 is a three-dimensional view of the filter screen assembly of the first collection module of a germanium mud collection water tank for germanium processing, where the first filter screen is not shown.
[0017] Figure 5 is a three-dimensional view of the filter screen plate of the second collection module of a germanium mud collection water tank for germanium processing, where the second filter screen is not shown.
[0018] Figure 6 is an assembly view of a germanium mud collection water tank for germanium processing according to the present disclosure.
[0019] Figure 7 is a three-dimensional view of an existing germanium mud collection water tank for germanium processing.
[0020] Among them, the reference numeral descriptions are as follows:
[0021] 100' Germanium mud collection water tank for germanium processing 14 First flexible mesh sleeve
[0022] 11' Water tank 15 First water outlet
[0023] 13' water inlet pipe 2 Second collection module
[0024] 15' water outlet 21 Second water tank
[0025] 100 Germanium sludge collection water tank for germanium processing 211 Accommodation cavity
[0026] 1 First collection module 211a First cavity
[0027] 11 First water tank 211b Second cavity
[0028] 111 Receiving cavity 212 Second inner wall
[0029] 112 First inner wall 213 Second bottom wall
[0030] 113 First bottom wall 214 Second card slot
[0031] 114 First card slot 22 Filter screen plate
[0032] 12 Filter screen assembly 221 Second filter screen
[0033] 121 First filter screen 222 Second card board
[0034] 122 Inner space 23 Second water inlet pipe
[0035] 123 First card board 231 Second outlet end
[0036] P channel 24 Second flexible mesh sleeve
[0037] 13 First water inlet pipe 25 Second water outlet
[0038] 131 First outlet end 26 Filter screen Detailed implementation manners
[0039] The accompanying drawings illustrate embodiments of the present disclosure, and it will be understood that the disclosed embodiments are merely examples of the present disclosure, and the present disclosure can be implemented in various forms. Therefore, the specific details disclosed herein should not be construed as limiting, but only as a basis for the claims and as a representative basis for teaching those of ordinary skill in the art to implement the present disclosure in various ways.
[0040] Referring to Figures 1 to 6 , the germanium sludge collection water tank 100 for germanium processing according to the present disclosure includes a first collection module 1.
[0041] The first collection module 1 includes a first water tank 11, a filter screen assembly 12, a first water inlet pipe 13, a first flexible mesh sleeve 14, and a first water outlet 15.
[0042] The first water tank 11 has a receiving cavity 111. The filter screen assembly 12 is placed in the receiving cavity 111. The filter screen assembly 12 has a first filter screen 121 disposed on the front, rear, left, and right sides. The first filter screens 121 on the front, rear, left, and right sides enclose an inner space 122. The first filter screens 121 on the front, rear, left, and right sides are spaced apart from the first inner walls 112 on the front, rear, left, and right sides of the first water tank 11 to form a communicating channel P surrounding the first filter screens 121 on the front, rear, left, and right sides. The first water inlet pipe 13 is used to receive the wastewater containing germanium mud during the germanium processing. The first outlet end 131 of the first water inlet pipe 13 extends into the inner space 122. One end of the first flexible mesh sleeve 14 is sleeved on the first outlet end 131 of the first water inlet pipe 13. The first flexible mesh sleeve 14 is located in the inner space 122. The circumferential and bottom ends of the first flexible mesh sleeve 14 are closed. The first flexible mesh sleeve 14 is used to receive the wastewater containing germanium mud discharged from the first outlet end 131 of the first water inlet pipe 13, buffer the wastewater containing germanium mud entering the first flexible mesh sleeve 14, and allow the wastewater and the germanium mud particles in the wastewater to enter the inner space 122 through the mesh holes of the first flexible mesh sleeve 14. The first filter screens 121 on the front, rear, left, and right sides are used to filter and intercept the wastewater and the germanium mud particles in the wastewater entering the inner space 122 via the first flexible mesh sleeve 14 in the inner space 122, so that the filtered wastewater enters the channel P. The first water outlet 15 communicates with the channel P. The first water outlet 15 is used to discharge the filtered wastewater.
[0043] In the germanium mud collection water tank 100 for germanium processing according to the present disclosure, through the setting of the first flexible mesh sleeve 14 sleeved on the first outlet end 131 of the first water inlet pipe 13, compared with the situation of directly discharging the wastewater containing germanium mud into the inner space 122 (even the receiving cavity 111) via the first outlet end 131 of the first water inlet pipe 13 without using the first flexible mesh sleeve 14, the flexible deformation characteristics of the first flexible mesh sleeve 14 disperse and buffer the flow rate of the new wastewater containing germanium mud discharged into the inner space 122 via the first outlet end 131 of the first water inlet pipe 13. The impact of the wastewater entering the inner space 122 through the mesh holes of the first flexible mesh sleeve 1 on the germanium mud collected by static settlement in the inner space 122 is reduced. In this way, the degree of floating of the germanium mud on the surface part of the germanium mud collected by static settlement is reduced, so that the amount of germanium mud contained in the wastewater discharged from the first water outlet 15 can be reduced, thereby reducing the loss of germanium mud and reducing the risk of blockage of the germanium mud contained in the wastewater discharged from the first water outlet 15 adhering to the first water outlet 15 after long-term use.
[0044] In addition, the first flexible mesh sleeve 14 can play a role in preliminary filtration and collection, and cooperate with the filtration of the first filter screens 121 on the front, back, left, and right sides, greatly improving the degree of static settlement and collection of germanium mud in the inner space 122. At the same time, in cooperation with the aforementioned dispersion and buffering effects of the first flexible mesh sleeve 14, the risk of blockage caused by the germanium mud contained in the wastewater discharged from the first water outlet 15 adhering to the inside of the first water outlet 15 after long-term use is further reduced. In addition, through the passage P formed between the first filter screens 121 on the front, back, left, and right sides and the first inner walls 112 on the front, back, left, and right sides of the first water tank 11, which surrounds the first filter screens 121 on the front, back, left, and right sides and is connected, the filtered wastewater flowing out from the first filter screens 121 on the front, back, left, and right sides will also undergo static settlement of germanium mud in the passage P. The germanium mud statically settled in the passage P is hardly affected by the impact of the wastewater containing germanium mud discharged into the inner space 122 through the first outlet end 131 of the first water inlet pipe 13, because of the aforementioned dispersion and buffering effects of the first flexible mesh sleeve 14 and the fact that the first filter screens 121 on the front, back, left, and right sides play a role in further completely dispersing the impact. This further reduces the risk of blockage caused by the germanium mud contained in the wastewater discharged from the first water outlet 15 adhering to the inside of the first water outlet 15 after long-term use.
[0045] In addition, by adopting the filtration of the first filter screens 121 on the front, back, left, and right sides, the situation where the first collection module 1 cannot continue to work due to filter blockage when using single-sided filtration is avoided, improving the working reliability and durability of the first collection module 1.
[0046] As Figure 1 、 Figure 2 and Figure 6 shown, in one example, the top of the first water tank 11 is open. In an example not shown, the top of the first water tank 11 can be closed by a lid (not shown).
[0047] As Figure 1 、 Figure 2 、 Figure 4 and Figure 6 shown, first clamping grooves 114 are formed on the first inner walls 112 on the front, back, left, and right sides and the first bottom wall 113 of the first water tank 11; the filter screen assembly 12 correspondingly forms first clamping plates 123, and the corresponding first clamping plates 123 are snapped into the first clamping grooves 114. Thereby, the structural stability of the filter screen assembly 12 placed in the receiving cavity 111 is improved.
[0048] Furthermore, as Figure 1 and Figure 4 As shown, at each corner of the top and bottom of the filter screen assembly 12, two first clamping plates 123 are formed orthogonally. The two first clamping plates 123 at each corner of the top of the filter screen assembly 12 and the two first clamping plates 123 at the corresponding corners of the bottom of the filter screen assembly 12 are spaced apart in the up and down directions to form a part of the connection of the channel P.
[0049] The first flexible mesh sleeve 14 is, for example but not limited to, a silk stocking. The first flexible mesh sleeve 14 can also be a nylon mesh.
[0050] As Figure 1 shown, in one example, the first water outlet 15 is close to the top of the first water tank 11 and no filter screen is provided at the first water outlet 15.
[0051] Referring to Figure 1 、 Figure 3 、 Figure 5 and Figure 6 , the germanium sludge collection water tank 100 for germanium processing further includes a second collection module 2. The second collection module 2 is used for secondary germanium sludge static collection and waste water filtration of the water discharged from the first water outlet 15 of the first collection module 1. Through secondary germanium sludge static collection and waste water filtration, the recovery degree of germanium sludge is improved.
[0052] Specifically, as Figure 1 、 Figure 3 、 Figure 5 and Figure 6 shown, in one example, the second collection module 2 includes a second water tank 21, a filter screen plate 22, a second water inlet pipe 23, a second flexible mesh sleeve 24 and a second water outlet 25.
[0053] The second water tank 21 has a receiving cavity 211. The filter screen plate 22 is placed in the receiving cavity 211 and is close to the second water outlet 25. The filter screen plate 22 is provided with a second filter screen 221. The second filter screen 221 is spaced apart from the second inner wall 212 of the second water tank 21 at the second water outlet 25 to divide the receiving cavity 211 into a first cavity 211a and a second cavity 211b. The mesh number of the mesh holes of the second filter screen 221 is greater than that of the first filter screen 121. One end of the second water inlet pipe 23 communicates with the first water outlet 15 of the first collection module 1. The second water inlet pipe 23 is used to receive the wastewater filtered by germanium mud discharged from the first water outlet 15. The second outlet end 231 of the second water inlet pipe 23 extends into the first cavity 211a. One end of the second flexible mesh sleeve 24 is sleeved on the second outlet end 231 of the second water inlet pipe 23. The second flexible mesh sleeve 24 is located in the first cavity 211a. The second flexible mesh sleeve 24 is closed in the circumferential direction and at the bottom. The second flexible mesh sleeve 24 is used to receive the wastewater containing germanium mud discharged from the second outlet end 231 of the second water inlet pipe 23, buffer the wastewater containing germanium mud entering the second flexible mesh sleeve 24, and enable the wastewater and the germanium mud particles in the wastewater to enter the first cavity 211a through the mesh holes of the second flexible mesh sleeve 24. The filter screen plate 22 is used to filter and intercept the wastewater and the germanium mud particles in the wastewater entering the first cavity 211a via the second flexible mesh sleeve 24 in the first cavity 211a, so that the filtered wastewater enters the second cavity 211b. The second water outlet 25 is provided on the second water tank 21. The second water outlet 25 communicates with the second cavity 211b. The second water outlet 25 is used to discharge the filtered wastewater.
[0054] Similar to the first collection module 1, through the setting of the second flexible mesh sleeve 24 sleeved on the second outlet end 231 of the second water inlet pipe 23, compared with the situation of directly discharging the wastewater containing germanium mud into the first cavity 211a via the second outlet end 231 of the second water inlet pipe 23 without using the second flexible mesh sleeve 24, the flexible deformation characteristics of the second flexible mesh sleeve 24 disperse and buffer the flow rate of the wastewater containing germanium mud discharged into the first cavity 211a via the second outlet end 231 of the second water inlet pipe 23. The impact of the wastewater entering the first cavity 211a through the mesh holes of the second flexible mesh sleeve 24 on the germanium mud collected by static sedimentation in the first cavity 211a is reduced. In this way, the degree of floating of the germanium mud on the surface part of the germanium mud collected by static sedimentation is reduced, so that the amount of germanium mud contained in the wastewater discharged from the second water outlet 25 can be reduced, thereby reducing the loss of germanium mud and reducing the risk of blockage caused by the germanium mud contained in the wastewater discharged from the second water outlet 25 adhering to the inside of the second water outlet 25 after long-term use.
[0055] Similarly, the second flexible mesh sleeve 24 can play a role in preliminary filtration and collection, and cooperate with the filtration of the single-sided second filter screen 221, greatly improving the degree of static sedimentation and collection of germanium mud in the first chamber 211a. At the same time, combined with the aforementioned dispersion and buffering effects of the second flexible mesh sleeve 24, the risk of blockage caused by the germanium mud contained in the wastewater discharged from the second water outlet 25 adhering to the inside of the second water outlet 25 after long-term use is further reduced. Similarly, through the second chamber 211b separated by the second filter screen 221, the filtered wastewater coming out of the second filter screen 221 will also undergo static sedimentation of germanium mud in the second chamber 211b, and the germanium mud statically sedimented in the second chamber 211b is hardly affected by the impact of the germanium mud-containing wastewater discharged into the first chamber 211a through the second outlet end 231 of the second water inlet pipe 23, because of the aforementioned dispersion and buffering effects of the second flexible mesh sleeve 24 and the single-sided second filter screen 221 that play a role in further completely dispersing the impact. This further reduces the risk of blockage caused by the germanium mud contained in the wastewater discharged from the second water outlet 25 adhering to the inside of the second water outlet 25 after long-term use.
[0056] In addition, combined with the filtration of the first filter screen 121 on the front, back, left, and right sides of the first collection module 1, although the single-sided second filter screen 221 is used for filtration in the second collection module 2, the probability of the single-sided second filter screen 221 being clogged by filtration is reduced to an extremely low level, thus simplifying the filtration structure and cost of the second collection module 2.
[0057] As Figure 1 、 Figure 3 and Figure 6 shown, in one example, the top of the second water tank 11 is open. In an example not shown, the top of the second water tank 11 can be closed by a lid (not shown).
[0058] Similarly, as Figure 1 、 Figure 3 、 Figure 5 and Figure 6 shown, on the opposite two second inner walls 212 and the second bottom wall 213 of the second water tank 21, second card slots 214 are formed; the filter screen plate 22 correspondingly forms second card plates 222, and the second card plates 222 of the filter screen plate 22 are snapped into the second card slots 214 of the second water tank 21. Thereby, the structural stability of the filter screen plate 22 placed in the accommodation cavity 211 is improved.
[0059] The second flexible mesh sleeve 24 is, for example but not limited to, a silk stocking. The second flexible mesh sleeve 24 can also be a nylon mesh.
[0060] As Figure 1 shown, in one example, the second water outlet 25 is close to the top of the second water tank 21 and is provided with a filter screen 26, so as to further recover the germanium mud in the wastewater discharged through the second water outlet 25 before final external discharge.
[0061] Multiple exemplary embodiments are described with the above detailed description, but this document is not intended to be limited to the explicitly disclosed combinations. Thus, unless otherwise specified, the various features disclosed herein may be combined together to form multiple additional combinations not shown for the sake of brevity.
Claims
1. A germanium mud collection water tank for germanium processing, characterized in that: A germanium mud collection water tank (100) for germanium processing comprises a first collection module (1); The first collection module (1) comprises a first water tank (11), a filter screen assembly (12), a first water inlet pipe (13), a first flexible mesh sleeve (14) and a first water outlet (15); The first water tank (11) has a receiving chamber (111). The filter assembly (12) is placed in the receiving chamber (111), and comprises first filter meshes (121) arranged on the front, rear, left and rear four sides, the first filter meshes (121) on the front, rear, left and rear four sides enclose an inner space (122), and the first filter meshes (121) on the front, rear, left and rear four sides are spaced apart from the first inner walls (112) on the front, rear, left and rear four sides of the first water tank (11) to form a communicating channel (P) surrounding the first filter meshes (121) on the front, rear, left and rear four sides; The first water inlet pipe (13) is used to receive wastewater containing germanium mud during the germanium processing process. The first outlet end (131) of the first water inlet pipe (13) extends into the inner space (122). One end of the first flexible mesh sleeve (14) is sleeved on the first outlet end (131) of the first water inlet pipe (13); the first flexible mesh sleeve (14) is located in the inner space (122); the first flexible mesh sleeve (14) is closed in the circumferential direction and at the bottom end; the first flexible mesh sleeve (14) is used to receive wastewater containing germanium mud discharged from the first outlet end (131) of the first water inlet pipe (13) and to buffer the wastewater containing germanium mud entering the first flexible mesh sleeve (14) and to allow the wastewater and germanium mud particles in the wastewater to enter the inner space (122) through the mesh holes of the first flexible mesh sleeve (14); The first filter screens (121) on the front, back, left and right sides are used to filter and intercept the wastewater and germanium mud particles in the wastewater entering the inner space (122) through the first flexible mesh sleeve (14) in the inner space (122), so that the filtered wastewater enters the channel (P); The first water outlet (15) is connected to the channel (P), and the first water outlet (15) is used to discharge the filtered waste water.
2. The germanium mud collection water tank for germanium processing according to claim 1, characterized in that: The first inner wall (112) and the first bottom wall (113) of the first water tank (11) are formed with a first clamping groove (114); The filter screen assembly (12) is correspondingly formed with a first clamping plate (123), and the corresponding first clamping plate (123) is clamped in the first clamping groove (114).
3. The germanium mud collection water tank for germanium processing according to claim 2, characterized in that: The filter screen assembly (12) forms two orthogonal first clamping plates (123) at the top and bottom corners. The two first clamping plates (123) at each corner of the top of the filter assembly (12) are spaced apart from the two first clamping plates (123) at the corresponding corners of the bottom of the filter assembly (12) in the up-down direction to form a communicating part of the channel (P).
4. The germanium mud collection water tank for germanium processing according to claim 1, characterized in that: The first flexible net sleeve (14) is a stocking.
5. The germanium mud collection water tank for germanium processing according to claim 1, characterized in that: The first water outlet (15) is close to the top of the first water tank (11) and no filter is provided at the first water outlet (15).
6. The germanium mud collection water tank for germanium processing according to claim 1, characterized in that: The germanium mud collection water tank (100) for germanium processing further comprises a second collection module (2). The second collection module (2) is used for performing secondary standing germanium mud collection and wastewater filtration on the wastewater discharged from the first water outlet (15) of the first collection module (1).
7. The germanium mud collection water tank for germanium processing according to claim 6, characterized in that: The second collection module (2) comprises a second water tank (21), a filter screen (22), a second water inlet pipe (23), a second flexible mesh sleeve (24) and a second water outlet (25); The second water tank (21) has a receiving chamber (211). The filter screen plate (22) is placed in the accommodating chamber (211) and close to the second water outlet (25); the filter screen plate (22) is provided with a second filter screen (221); the second filter screen (221) is spaced apart from a second inner wall (212) of the second water tank (21) at the second water outlet (25) so as to divide the accommodating chamber (211) into a first chamber (211a) and a second chamber (211b); the mesh number of the second filter screen (221) is greater than the mesh number of the first filter screen (121); One end of the second water inlet pipe (23) is connected to the first water outlet (15) of the first collection module (1), and the second water inlet pipe (23) is used to receive waste water that has been filtered by germanium mud and discharged from the first water outlet (15). The second outlet end (231) of the second water inlet pipe (23) extends into the first cavity (211a). One end of the second flexible mesh sleeve (24) is sleeved on the second outlet end (231) of the second water inlet pipe (23); the second flexible mesh sleeve (24) is located in the first cavity (211a); the second flexible mesh sleeve (24) is closed in the circumferential direction and at the bottom end; the second flexible mesh sleeve (24) is used to receive wastewater containing germanium mud discharged from the second outlet end (231) of the second water inlet pipe (23) and to buffer wastewater containing germanium mud entering the second flexible mesh sleeve (24) and to allow wastewater and germanium mud particles in the wastewater to enter the first cavity (211a) through the mesh holes of the second flexible mesh sleeve (24); The filter screen plate (22) is used to filter and intercept the wastewater and germanium mud particles in the wastewater entering the first chamber (211a) through the second flexible mesh sleeve (24) in the first chamber (211a), so that the filtered wastewater enters the second chamber (211b); The second water outlet (25) is arranged on the second water tank (21), the second water outlet (25) is connected to the second cavity (211b), and the second water outlet (25) is used to discharge the filtered waste water.
8. The germanium mud collection water tank for germanium processing according to claim 7, characterized in that: The two opposite second inner walls (212) and the second bottom wall (213) of the second water tank (21) are formed with a second clamping groove (214); A second clamping plate (222) is formed corresponding to the filter screen plate (22), and the second clamping plate (222) of the filter screen plate (22) is clamped into a second clamping groove (214) of the second water tank (21).
9. The germanium mud collection water tank for germanium processing according to claim 7, characterized in that: The second flexible net cover (24) is a stocking.
10. The germanium mud collection water tank for germanium processing according to claim 7, characterized in that: The second water outlet (25) is close to the top of the second water tank (21) and is provided with a filter screen (26).