CN216711748U - Resin adsorption device for extracting L-carnitine from pharmaceutical wastewater - Google Patents

Resin adsorption device for extracting L-carnitine from pharmaceutical wastewater Download PDF

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Publication number
CN216711748U
CN216711748U CN202123317994.4U CN202123317994U CN216711748U CN 216711748 U CN216711748 U CN 216711748U CN 202123317994 U CN202123317994 U CN 202123317994U CN 216711748 U CN216711748 U CN 216711748U
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carnitine
adsorption
treatment tank
liquid inlet
pharmaceutical wastewater
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CN202123317994.4U
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陈国威
黄炫杰
张芳
舒俭
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Guangzhou Rand Environmental Protection Resources Technology Co ltd
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Guangzhou Rand Environmental Protection Resources Technology Co ltd
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Abstract

The utility model discloses a resin adsorption device for extracting pharmaceutical wastewater L-carnitine, which relates to the field of pharmaceutical wastewater treatment and aims at solving the problems that the existing resin adsorption device for extracting part of pharmaceutical wastewater L-carnitine cannot circularly extract wastewater and resin is inconvenient to take. The waste water circulating filter is novel in structure, waste water can be circularly filtered, the adsorption effect of the device on the waste water is improved, resin is more convenient to take, the working time is saved, the working efficiency is improved, and the practicability of the device is further improved.

Description

Resin adsorption device for extracting L-carnitine from pharmaceutical wastewater
Technical Field
The utility model relates to the field of pharmaceutical wastewater treatment, in particular to a resin adsorption device for extracting L-carnitine from pharmaceutical wastewater.
Background
L-carnitine is an amino acid which promotes fat to be converted into energy, pure products are white crystalline lens or white transparent fine powder, and have no toxic or side effect on human bodies, red meat is a main source of the L-carnitine, the human bodies can also synthesize to meet physiological requirements, and the L-carnitine has physiological functions in various aspects such as fat oxidative decomposition, weight reduction, fatigue resistance and the like, and is often used as a food additive to be widely applied to infant food, weight-reducing food, sportsman food, nutritional supplement for middle-aged and elderly people, nutritional supplement for vegetarian food practicers, animal feed additive and the like;
pharmaceutical wastewater generated in the production process of the L-carnitine is relatively high in cost and contains more recyclable components, the L-carnitine in the L-carnitine wastewater can be recycled, and a resin adsorption device is needed for recycling the L-carnitine.
SUMMERY OF THE UTILITY MODEL
The utility model provides a resin adsorption device for extracting pharmaceutical wastewater L-carnitine, which solves the problems that the existing resin adsorption device for extracting part of pharmaceutical wastewater L-carnitine cannot circularly extract the wastewater and is inconvenient in resin taking.
In order to achieve the purpose, the utility model adopts the following technical scheme:
the utility model provides a pharmacy waste water levogyration carnitine draws uses resin adsorption equipment, places the installation mechanism of installation including being used for the device, installation mechanism side is provided with the circulation mechanism that is used for waste water circulation to handle, the inside adsorption mechanism that is used for levogyration carnitine absorption that is provided with of installation mechanism, circulation mechanism is provided with two, two adsorption mechanism all is located same one side of installation mechanism, circulation mechanism is a circulation structure of drawing water, adsorption mechanism is a tensile formula and removes adsorption structure.
Preferably, installation mechanism is including handling the case, handle being the box setting of cavity of case, the bottom of handling the case is provided with the support column, the support column is provided with four, four handling the bottom half the support column is located respectively and handles bottom half four corners department.
Preferably, it is provided with the roof to handle the roof, the roof is back word form setting, the below of roof is provided with the inlet, the inlet is the slope form setting, the feed liquor pipe has been seted up to the inlet bottom.
Preferably, the liquid inlet pipe is provided with a plurality of liquid inlets at the bottom, and the liquid inlets are arranged in an array at the bottom of the liquid inlet.
Preferably, the circulation mechanism includes the mounting panel, the mounting panel is located handles the case outside, the upper surface of mounting panel is provided with the water pump, one side that the water pump is close to the processing case is provided with the pipeline, one side that the water pump kept away from the processing case is provided with the back flow.
Preferably, one end of the return pipe, which is far away from the water pump, is provided with a water return port, and the water return port is positioned in the liquid inlet.
Preferably, adsorb the mechanism and include the adsorption tank, the adsorption tank is located handles incasement portion bottom, the adsorption tank is inside to be the cavity setting, the adsorption tank is inside to be provided with and to place the board, it is the network structure setting to place the board surface.
Preferably, the adsorption box is internally provided with two sides each provided with a placing groove, the placing plate is positioned inside the placing grooves, and the placing plate is connected with the placing grooves in a sliding mode.
Preferably, a drainage groove is formed below the placing plate, a drainage port is formed in the bottom of the drainage groove, and the drainage port penetrates through the adsorption box and the treatment box.
Preferably, the processing box is kept away from the one side that is provided with the mounting panel and has been seted up the groove of taking, it is provided with the fixed plate to place the one side that the board is close to the groove of taking, one side that the fixed plate is close to the groove of taking is provided with the handle.
The utility model has the beneficial effects that:
1. set up the water pump at the mounting panel upper surface through the operation, the water pump absorbs the waste water of absorption incasement portion through the pipeline, makes waste water get back to inlet opening department again through back flow and return water mouth, accomplishes the circulation, makes waste water carry out loop filter, and hoisting device is to the adsorption effect of waste water, increases the practicality of device.
2. Through the pulling handle of the inslot portion of taking, make the handle drive the fixed plate and remove, the fixed plate removes to drive and places the board and remove, makes and places the board and slide in the standing groove is inside to place the board and take out, collect the resin of placing the board surface and placing, and change, make taking of resin more convenient, save operating time, improve work efficiency, further increase the practicality of device.
To sum up, the device not only can make waste water carry out loop filter, and hoisting device makes taking of resin more convenient to the adsorption effect of waste water, saves operating time, improves work efficiency, further increases the practicality of device, has solved the resin adsorption equipment that current partial pharmacy waste water levogyration carnitine was used and has drawed, can't circulate waste water and draw, and has the inconvenient problem of resin taking.
Drawings
Fig. 1 is a front view of the present invention.
Fig. 2 is a side view of the present invention.
Fig. 3 is a cross-sectional view of the structure of the present invention.
Reference numbers in the figures: 1. an installation mechanism; 101. a treatment tank; 102. a support pillar; 103. a top plate; 104. a liquid inlet; 105. a liquid inlet pipe; 2. a circulating mechanism; 201. mounting a plate; 202. a water pump; 203. a return pipe; 204. a water return port; 3. an adsorption mechanism; 301. an adsorption tank; 302. placing the plate; 303. a placement groove; 304. a water discharge tank; 305. a water discharge port; 306. taking the groove; 307. a fixing plate; 308. a handle.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
Referring to fig. 1 to 3, the present invention provides the following technical solutions:
the utility model provides a pharmacy waste water levogyration carnitine draws uses resin adsorption equipment, places installation mechanism 1 of installation including being used for the device, 1 side of installation mechanism is provided with the circulation mechanism 2 that is used for waste water circulation to handle, 1 inside adsorption mechanism 3 that is used for levogyration carnitine absorption that is provided with of installation mechanism, circulation mechanism 2 is provided with two, two adsorption mechanism 3 all is located same one side of installation mechanism 1, circulation mechanism 2 is the structure that draws water of circulation, adsorption mechanism 3 is a tensile formula and removes adsorption structure.
As shown in fig. 2 and 3, the installation mechanism 1 includes a treatment box 101, the hollow box-type arrangement of the treatment box 101, the bottom of the treatment box 101 is provided with four support pillars 102, the support pillars 102 are arranged at the bottom of the treatment box 101, four the support pillars 102 are respectively arranged at four corners of the bottom of the treatment box 101, a top plate 103 is arranged at the top of the treatment box 101, the top plate 103 is arranged in a shape of Chinese character hui, a liquid inlet 104 is arranged below the top plate 103, the liquid inlet 104 is arranged in an inclined shape, a liquid inlet pipe 105 is arranged at the bottom of the liquid inlet 104, and the liquid inlet pipe 105 is arranged at the bottom of the liquid inlet 104 in a plurality of and a plurality of arrangements, namely, the liquid inlet pipe 105 is arranged in an array at the bottom of the liquid inlet 104.
As shown in fig. 1 and fig. 3, the circulation mechanism 2 includes a mounting plate 201, the mounting plate 201 is located outside the treatment tank 101, the upper surface of the mounting plate 201 is provided with a water pump 202, one side of the water pump 202 close to the treatment tank 101 is provided with a pipeline, one side of the water pump 202 far away from the treatment tank 101 is provided with a return pipe 203, the return pipe 203 is far away from one end close to the water pump 202 and is provided with a return water port 204, the return water port 204 is located inside the liquid inlet 104, the water pump 202 is arranged on the upper surface of the mounting plate 201 through operation, the water pump 202 sucks the waste water inside the adsorption tank 301 through the pipeline, so that the waste water returns to the liquid inlet 104 again through the return pipe 203 and the return water port 204, circulation is completed, the waste water is circularly filtered, the adsorption effect of the device on the waste water is improved, and the practicability of the device is improved.
As shown in fig. 2 and fig. 3, the adsorption mechanism 3 comprises an adsorption tank 301, the adsorption tank 301 is located at the bottom end inside the treatment tank 101, the adsorption tank 301 is hollow, a placing plate 302 is arranged inside the adsorption tank 301, the surface of the placing plate 302 is in a net structure, placing grooves 303 are formed on both sides inside the adsorption tank 301, the placing plate 302 is located inside the placing groove 303, the placing plate 302 is slidably connected with the placing groove 303, a drainage groove 304 is arranged below the placing plate 302, a drainage outlet 305 is formed at the bottom of the drainage groove 304, the drainage outlet 305 penetrates through the adsorption tank 301 and the treatment tank 101, an access groove 306 is formed on one side of the treatment tank 101 far from the installation plate 201, a fixing plate 307 is arranged on one side of the placing plate 302 near the access groove 306, a handle 308 is arranged on one side of the fixing plate 307 near the access groove 306, through pulling the inside handle 308 of groove 306 of taking, make handle 308 drive fixed plate 307 move, fixed plate 307 moves and drives and places board 302 and move, makes and places board 302 and slide inside placing groove 302 to place board 302 and take out, collect the resin of placing board 302 surface and placing, and change, make taking of resin more convenient, save operating time, improve work efficiency, further increase the practicality of device.
When the utility model is used, firstly, the device is installed at a proper position, then the handle 308 drives the fixing plate 307 to move by pulling the handle 308 in the taking groove 306, the fixing plate 307 drives the placing plate 302 to move, the placing plate 302 slides in the placing groove 302, so that the placing plate 302 is taken out, resin is placed in the placing plate 302, the water pump 202 arranged on the upper surface of the installing plate 201 is operated, the water pump 202 sucks waste water in the adsorption box 301 through a pipeline, the waste water returns to the liquid inlet 104 through the return pipe 203 and the return water port 204, after adsorption is finished, the handle 308 drives the fixing plate 307 to move by pulling the handle 308 in the taking groove 306, the fixing plate 307 moves to drive the placing plate 302 to move, so that the placing plate 302 slides in the placing groove 302, so that the placing plate 302 is taken out, the resin placed on the surface of the placing plate 302 is collected and replaced.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered as the technical solutions and the utility model concepts of the present invention in the scope of the present invention.

Claims (10)

1. The utility model provides a pharmacy waste water levogyration carnitine draws uses resin adsorption equipment, places installation mechanism (1) of installation including being used for the device, its characterized in that, installation mechanism (1) side is provided with circulation mechanism (2) that are used for waste water circulation to handle, installation mechanism (1) inside is provided with and is used for the absorptive adsorption apparatus of levogyration carnitine (3), circulation mechanism (2) are provided with two, two adsorption apparatus (3) all are located same one side of installation mechanism (1), circulation mechanism (2) are the structure that draws water of a circulation, adsorption apparatus (3) are the absorption structure is removed to a tensile formula.
2. The resin adsorption device for L-carnitine extraction of pharmaceutical wastewater according to claim 1, wherein said installation mechanism (1) comprises a treatment tank (101), said treatment tank (101) is in a hollow box type arrangement, the bottom of said treatment tank (101) is provided with four support columns (102), said four support columns (102) are arranged at the bottom of the treatment tank (101), and said four support columns (102) are respectively located at four corners of the bottom of the treatment tank (101).
3. The resin adsorption device for extracting L-carnitine from pharmaceutical wastewater according to claim 2, wherein a top plate (103) is disposed at the top of the treatment tank (101), the top plate (103) is disposed in a shape like a Chinese character 'hui', a liquid inlet (104) is disposed below the top plate (103), the liquid inlet (104) is disposed in an inclined shape, and a liquid inlet pipe (105) is disposed at the bottom of the liquid inlet (104).
4. The resin adsorption device for extracting L-carnitine from pharmaceutical wastewater according to claim 3, wherein a plurality of liquid inlet pipes (105) are disposed at the bottom of the liquid inlet (104), and the plurality of liquid inlet pipes (105) are disposed at the bottom of the liquid inlet (104) in an array.
5. The resin adsorption device for extracting L-carnitine from pharmaceutical wastewater according to claim 1, wherein said circulating mechanism (2) comprises a mounting plate (201), said mounting plate (201) is located outside said treatment tank (101), a water pump (202) is disposed on the upper surface of said mounting plate (201), a pipeline is disposed on the side of said water pump (202) close to said treatment tank (101), and a return pipe (203) is disposed on the side of said water pump (202) far from said treatment tank (101).
6. The resin adsorption device for L-carnitine extraction from pharmaceutical wastewater according to claim 5, wherein a water return port (204) is opened at an end of said return pipe (203) away from said water pump (202), and said water return port (204) is located inside said liquid inlet (104).
7. The resin adsorption device for extracting L-carnitine from pharmaceutical wastewater according to claim 1, wherein the adsorption mechanism (3) comprises an adsorption tank (301), the adsorption tank (301) is located at the bottom end inside the treatment tank (101), the adsorption tank (301) is hollow, a placing plate (302) is arranged inside the adsorption tank (301), and the surface of the placing plate (302) is of a net structure.
8. The resin adsorption device for extracting L-carnitine from pharmaceutical wastewater according to claim 7, wherein placing grooves (303) are formed in both sides of the interior of the adsorption tank (301), the placing plate (302) is located in the placing grooves (303), and the placing plate (302) is slidably connected with the placing grooves (303).
9. The resin adsorption device for extracting L-carnitine from pharmaceutical wastewater according to claim 8, wherein a drainage trough (304) is arranged below the placing plate (302), a drainage port (305) is formed in the bottom of the drainage trough (304), and the drainage port (305) penetrates through the adsorption tank (301) and the treatment tank (101).
10. The resin adsorption device for L-carnitine extraction from pharmaceutical wastewater according to claim 7, wherein a taking groove (306) is formed in one side of the treatment tank (101) away from the side where the mounting plate (201) is arranged, a fixing plate (307) is arranged on one side of the placing plate (302) close to the taking groove (306), and a handle (308) is arranged on one side of the fixing plate (307) close to the taking groove (306).
CN202123317994.4U 2021-12-27 2021-12-27 Resin adsorption device for extracting L-carnitine from pharmaceutical wastewater Active CN216711748U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123317994.4U CN216711748U (en) 2021-12-27 2021-12-27 Resin adsorption device for extracting L-carnitine from pharmaceutical wastewater

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123317994.4U CN216711748U (en) 2021-12-27 2021-12-27 Resin adsorption device for extracting L-carnitine from pharmaceutical wastewater

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Publication Number Publication Date
CN216711748U true CN216711748U (en) 2022-06-10

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115650873A (en) * 2022-10-11 2023-01-31 广州兰德环保资源科技有限公司 L-carnitine recovery process in wastewater generated in L-carnitine production process

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115650873A (en) * 2022-10-11 2023-01-31 广州兰德环保资源科技有限公司 L-carnitine recovery process in wastewater generated in L-carnitine production process

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