CN210974034U - PAM integration automatic reagent feeding device - Google Patents

PAM integration automatic reagent feeding device Download PDF

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Publication number
CN210974034U
CN210974034U CN201921579057.6U CN201921579057U CN210974034U CN 210974034 U CN210974034 U CN 210974034U CN 201921579057 U CN201921579057 U CN 201921579057U CN 210974034 U CN210974034 U CN 210974034U
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CN
China
Prior art keywords
mixing
stirring
pam
lower parts
liquid
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201921579057.6U
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Chinese (zh)
Inventor
潘乐军
谢文志
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Yangzhou Xiangfan Heavy Industry Technology Co ltd
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Yangzhou Xiangfan Heavy Industry Technology Co ltd
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Priority to CN201921579057.6U priority Critical patent/CN210974034U/en
Application granted granted Critical
Publication of CN210974034U publication Critical patent/CN210974034U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to a PAM integration automatic reagent feeding device. The chemical feeding tank on set up PAM charge device respectively, PAM charge device including add chemical hopper and measuring pump, add chemical tank one and add two lower parts of chemical tank be equipped with down liquid mouth and lower liquid pipeline respectively and communicate to mixing and stirring room one in, mixing and stirring room one and three lower parts of chemical tank be equipped with down liquid mouth and lower liquid pipeline respectively and communicate to mixing and stirring room two in, mixing and stirring room two and four lower parts of chemical tank be equipped with down liquid mouth and lower liquid pipeline respectively and communicate to mixing and stirring room three in, mixing and stirring room in be equipped with the stirring subassembly respectively, three lower parts of mixing and stirring room be equipped with down liquid mouth and infusion pipeline, appearance testing branch pipe UNICOM to the composition of sense terminal monitoring liquid medicine. The utility model discloses simple structure, measurement accuracy, liquid medicine mix effectual, liquid medicine stirring effect good, job stabilization, mix respectively, stir respectively.

Description

PAM integration automatic reagent feeding device
Technical Field
The utility model relates to a charge device especially relates to a PAM integration automatic reagent feeding device.
Background
Current PAM automatic reagent feeding device mainly includes feeding system and mixing system, and the feeder grinds blocky and likepowder inhomogeneous Polyacrylamide (PAM) into even likepowder, dissolves PAM and water intensive mixing in with the medicine under-deck through the mixer, makes the medicament concentration even. At present integration charge device adds the storehouse and divide into three lobe, has abundant time stirring for making PAM solution make PAM solution even, the PAM solution adopts upper and lower cross-flow to flow between the lobe, this PAM solution that just leads to adding in the storehouse can not make full use of, in case shut down for a long time will lead to PAM solution extravagant in the first lobe. The whole degree of automation of current charge device is low, and the poor condition of extravagant liquid medicine easily appears in the treatment effect, and the liquid medicine is owing to the quantity of unable accurate measurement liquid medicine in the configuration process moreover, and the composition of liquid medicine also can't be guaranteed, influences follow-up sewage treatment's effect.
SUMMERY OF THE UTILITY MODEL
The utility model discloses a solve above problem and provide a PAM integration automatic reagent feeding device that simple structure, measurement are accurate, the liquid medicine mixes effectually, the liquid medicine stirring is effectual, job stabilization, mix respectively, stir respectively.
The technical scheme of the utility model is that: the PAM integrated automatic dosing device comprises a device body, wherein a plurality of independent dosing tanks I, II, III and IV are arranged in the device body, PAM dosing devices are respectively arranged on the dosing tanks, each PAM dosing device comprises a dosing hopper and a metering pump, the metering pumps are arranged at the lower parts of the dosing hoppers, the dosing tanks are hung in the device body through hanging pipelines, weighing devices are arranged on the hanging pipelines, the device body further comprises a plurality of mixing and stirring chambers I, II and III, the lower parts of the dosing tanks I and II are respectively provided with a liquid discharging port and a liquid discharging pipeline and are communicated to the mixing and stirring chamber I, the lower parts of the mixing and stirring chamber I and III are respectively provided with a liquid discharging port and a liquid discharging pipeline and are communicated to the mixing and stirring chamber II, the lower parts of the mixing and stirring chamber II and IV are respectively provided with a liquid discharging port and a liquid discharging pipeline and are communicated to the mixing and stirring chamber III, the mixing and stirring chamber in be equipped with the stirring subassembly respectively, lower fluid pipeline on be equipped with the valve, three lower parts of mixing and stirring chamber be equipped with down liquid mouth and infusion pipeline, infusion pipeline include two spinal branch pipes, one for surveying appearance branch pipe, one is main delivery branch pipe, survey appearance branch pipe and main delivery branch pipe on be equipped with the valve respectively, survey appearance branch pipe UNICOM to the composition of test end monitoring liquid medicine.
Furthermore, the stirring assembly comprises a stirring shaft, stirring blades and a stirring motor which are connected with each other, wherein the tail ends of the stirring blades are provided with flow deflectors, the two flow deflectors are conical, and the two flow deflectors are arranged in a positive and negative mode.
The utility model has the advantages that: the independent weighing devices can respectively weigh and count the medicine tanks, so that the liquid medicine can be conveniently metered, accurate quantity reference is improved for the subsequent mixing of the liquid medicine, and the accurate and effective management of different liquid medicines is facilitated; the two flow deflectors rotate at high speed along with the stirring paddle to generate a flow guide channel which is symmetrical with each other, namely the upper part of one flow deflector corresponds to the lower part of the other flow deflector, so that the stirring efficiency and the stirring effect are improved; simple structure, measurement accuracy, liquid medicine mix effectually, the liquid medicine stirring effect is good, job stabilization, mix respectively, stir respectively, guarantee that PAM solution can make full use of, even single medicine jar or the mixing and stirring room shut down for a long time of adding, PAM solution is extravagant in can not leading to adding medicine jar or the mixing and stirring room yet, practices thrift the cost.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural view of the mixing and stirring chamber.
In the figure, 1 is a device body, 2 is a first dosing tank, 3 is a second dosing tank, 4 is a third dosing tank, 5 is a fourth dosing tank, 6 is a dosing hopper, 7 is a metering pump, 8 is a weighing device, 9 is a first mixing and stirring chamber, 10 is a second mixing and stirring chamber, 11 is a third mixing and stirring chamber, 12 is a liquid discharging pipeline, 13 is a liquid conveying pipeline, 14 is a main conveying branch pipe, 15 is a sample measuring branch pipe, 16 is a stirring shaft, 17 is a stirring blade, 18 is a stirring motor, and 19 is a flow guide body.
Detailed Description
PAM integration automatic reagent feeding device, charge device include device body 1, device body 1 in be equipped with a plurality of independent medicine adding jar 2, add medicine adding jar two 3, add medicine adding jar three 4, add medicine adding jar four 5, add and set up PAM charge device on the medicine adding jar respectively, PAM charge device including adding medicine fill 6 and measuring pump 7, measuring pump 7 set up and adding medicine fill 6 lower part, the medicine adding jar hang in device body 1 through hanging the pipeline, the hanging pipeline on be equipped with weighing device 8, a plurality of independent weighing device 8 can weigh the count respectively to a plurality of medicine jars, be convenient for measure the liquid medicine, provide accurate quantity reference for the mixture of follow-up liquid medicine, be favorable to mixing and carrying out accurate effectual management to each different liquid medicines, device body 1 still include a plurality of mixing stirring room 9, mixing stirring room two 10, A third mixing and stirring chamber 11, wherein the lower parts of the first dosing tank 2 and the second dosing tank 3 are respectively provided with a liquid discharging port and a liquid discharging pipeline 12 which are communicated with the first mixing and stirring chamber 9, the lower parts of the first mixing and stirring chamber 9 and the third dosing tank 4 are respectively provided with a liquid discharging port and a liquid discharging pipeline 12 which are communicated with the second mixing and stirring chamber 10, the lower parts of the second mixing and stirring chamber 10 and the fourth dosing tank 5 are respectively provided with a liquid discharging port and a liquid discharging pipeline 12 which are communicated to the third mixing and stirring chamber 11, the mixing and stirring chambers are respectively provided with a stirring component, the liquid discharging pipeline 12 is provided with a valve, the lower part of the third mixing and stirring chamber 11 is provided with a liquid outlet and a liquid conveying pipeline 13, the liquid conveying pipeline 13 comprises two branch pipes, one branch pipe is a sample measuring branch pipe 15, the other branch pipe is a main conveying branch pipe 14, the sample measuring branch pipe 15 and the main conveying branch pipe 14 are respectively provided with a valve, and the sample measuring branch pipe 15 is communicated to the detection end to monitor the components of the liquid medicine.
The stirring subassembly include interconnect's (mixing) shaft 16, stirring paddle leaf 17 and agitator motor 18, stirring paddle leaf 17 end be equipped with baffle 19, baffle 19 total two be coniform, two baffle 19 positive and negative settings, two baffle 19 can produce a water conservancy diversion passageway of mutual symmetry along with stirring paddle leaf 17 high-speed rotatory time, the lower part of another baffle 19 is corresponded to on the upper portion of a baffle 19 promptly, improves stirring efficiency and stirring effect.

Claims (2)

  1. PAM integration automatic reagent feeding device, its characterized in that: the drug adding device comprises a device body, a plurality of independent drug adding tanks I, II, III and IV are arranged in the device body, PAM drug adding devices are respectively arranged on the drug adding tanks, each PAM drug adding device comprises a drug adding hopper and a metering pump, the metering pumps are arranged at the lower parts of the drug adding hoppers, the drug adding tanks are hung in the device body through hanging pipelines, weighing devices are arranged on the hanging pipelines, the device body further comprises a plurality of mixing and stirring chambers I, II and III, lower parts of the drug adding tanks I and II are respectively provided with a liquid outlet and a liquid outlet pipeline and communicated to the mixing and stirring chamber I, lower parts of the mixing and stirring chamber I and III are respectively provided with a liquid outlet and a liquid outlet pipeline and communicated to the mixing and stirring chamber II, lower parts of the mixing and stirring chamber II and IV are respectively provided with a liquid outlet and a liquid outlet pipeline and communicated to the mixing and stirring chamber III, the mixing and stirring chamber in be equipped with the stirring subassembly respectively, lower fluid pipeline on be equipped with the valve, three lower parts of mixing and stirring chamber be equipped with down liquid mouth and infusion pipeline, infusion pipeline include two spinal branch pipes, one for surveying appearance branch pipe, one is main delivery branch pipe, survey appearance branch pipe and main delivery branch pipe on be equipped with the valve respectively, survey appearance branch pipe UNICOM to the composition of test end monitoring liquid medicine.
  2. 2. The PAM integrated automatic dosing device of claim 1, wherein: the stirring assembly comprises a stirring shaft, stirring blades and a stirring motor which are connected with each other, wherein the tail ends of the stirring blades are provided with flow deflectors, the two flow deflectors are conical, and the two flow deflectors are arranged in a positive and negative mode.
CN201921579057.6U 2019-09-23 2019-09-23 PAM integration automatic reagent feeding device Expired - Fee Related CN210974034U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921579057.6U CN210974034U (en) 2019-09-23 2019-09-23 PAM integration automatic reagent feeding device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921579057.6U CN210974034U (en) 2019-09-23 2019-09-23 PAM integration automatic reagent feeding device

Publications (1)

Publication Number Publication Date
CN210974034U true CN210974034U (en) 2020-07-10

Family

ID=71419858

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921579057.6U Expired - Fee Related CN210974034U (en) 2019-09-23 2019-09-23 PAM integration automatic reagent feeding device

Country Status (1)

Country Link
CN (1) CN210974034U (en)

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Granted publication date: 20200710