CN202724931U - Full-automatic alkali powder absorber - Google Patents

Full-automatic alkali powder absorber Download PDF

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Publication number
CN202724931U
CN202724931U CN 201220302385 CN201220302385U CN202724931U CN 202724931 U CN202724931 U CN 202724931U CN 201220302385 CN201220302385 CN 201220302385 CN 201220302385 U CN201220302385 U CN 201220302385U CN 202724931 U CN202724931 U CN 202724931U
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CN
China
Prior art keywords
full
respiratory box
automatic alkali
pipe
ball valve
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Expired - Fee Related
Application number
CN 201220302385
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Chinese (zh)
Inventor
姬文武
杜海红
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YULIN COUNTY YINTAI CHEMICAL CO Ltd
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YULIN COUNTY YINTAI CHEMICAL CO Ltd
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Priority to CN 201220302385 priority Critical patent/CN202724931U/en
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Publication of CN202724931U publication Critical patent/CN202724931U/en
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Expired - Fee Related legal-status Critical Current

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Abstract

The utility model is suitable for the technical field of an alkali powder treating device, and provides a full-automatic alkali powder absorber. Alkali powder can be absorbed by adopting a negative pressure absorption principle, the alkali powder can be dissolved in water and also can be recycled and reused, the phenomena of powder leakage and secondary pollution are effectively prevented from happening, the full-automatic control is realized at the same time by utilizing a liquid level meter, and the treating is more efficient and quicker. The full-automatic alkali powder absorber provided by the utility model can be widely applied to the environment of a product capable of being dissolved in the water and generating dust and aerial fog, the recovery efficiency is high, the automation level is high, the maintenance is convenient and fast, the operating cost and the maintaining cost are low, the working environment of a worker is improved, the structure is simple, the practicability is strong, and the popularization and application value is stronger.

Description

A kind of full-automatic alkali foam absorber
Technical field
The utility model belongs to alkali foam treating apparatus technical field, relates in particular to a kind of full-automatic alkali foam absorber.
Background technology
The ground caustic foam that production sheet alkali produces in packaging process produces operating environment and pollutes, and operating environment is worsened, and especially the packer is caused the dust injury, and alkali itself has extremely strong corrosivity, when the alkali foam is scattered on the human body, very itches incomparably; If long-term the suction exhaled and esophagus causes serious injury nasal cavity, oral cavity, suction.
Most is delivered to the alkali foam in the water tank with pipeline with the direct extraction of air exhauster and is dissolved, and shortcoming is that alkali foam powder often is bonded on the draught fan impeller, and the blower fan load is increased, and very easily burns out motor, and fault rate is high; Simultaneously, the easy crystallization of alkali foam need often disassemble pipe blow-through in pipeline, and workload is large, uses extremely inconvenient; Also useful air blast directly blows to the alkali foam away from the packer one side, but environment is still caused secondary pollution.
The utility model content
The purpose of this utility model is to provide, and is intended to solve at present the alkali foam directly extracted out with pipeline with air exhauster and delivers to when dissolving in the water tank, and alkali foam powder often is bonded on the draught fan impeller, and the blower fan load is increased, and very easily burns out motor, and fault rate is high; The simultaneously easy crystallization of alkali foam need often disassemble pipe blow-through in pipeline, workload is large, uses extremely inconvenient; And when adopting air blast directly the alkali foam to be blowed to away from packer one side, can cause to environment the problem of secondary pollution.
The utility model is to realize like this, a kind of full-automatic alkali foam absorber, this full-automatic alkali foam absorber comprises: blower fan, blast pipe, respiratory box, absorption airduct, overflow pipe, geosyncline, submerged pump, circulating water pipe, the first ball valve, circulation fluid infusion case, the second ball valve, discharging tube;
Described blower fan is connected with described respiratory box by described blast pipe, described respiratory box is connected with an end of described absorption airduct, the other end of described absorption airduct is connected with an end of described overflow pipe, the other end of described overflow pipe is communicated with described geosynclinal facies, described submerged pump is installed in the described geosyncline, described submerged pump is connected with described circulating water pipe, described circulating water pipe is connected with described circulation fluid infusion case by described the first ball valve, described circulation fluid infusion case is connected with described respiratory box by described the second ball valve, and described respiratory box is communicated with described geosynclinal facies by described discharging tube.
Further, on the described blast pipe spinner flowmeter is installed, described blast pipe is installed on the described respiratory box by flange.
Further, the top of described respiratory box is equipped with liquid level gauge, and indicator lamp A, indicator lamp B, indicator lamp C are installed on the described liquid level gauge.
Further, be provided with manhole on the described respiratory box.
Further, the position that is connected with described overflow pipe of described absorption airduct is provided with inspection opening.
Further, an end that is connected with described overflow pipe of described absorption airduct also is connected with cartridge type auger discharging mouth.
Further, on the described discharging tube discharge opeing motor-driven valve is installed.
Further, described circulating water pipe also is connected with described heating kettle by the 3rd ball valve, and described heating kettle is connected with described respiratory box by described filling pipe.
Further, on the described filling pipe moisturizing ball valve is installed.
Further, the bottom welding of described respiratory box has support, and the bottom of described respiratory box also is equipped with water discharging valve.
The full-automatic alkali foam absorber that the utility model provides, adopt the negative pressure absorbing principle to absorb the alkali foam, the alkali foam is water-soluble, so that powder no longer leaks, also Powder Recovery can be recycled, effectively prevent the generation of secondary pollution phenomenon, utilized simultaneously liquid level gauge to realize Automatic Control, more efficient quick; This absorber can be widely used in the Product environment of the water-soluble generation dust of energy and aerosol, and organic efficiency is high, and automatization level is high, easy to maintenance quick, operation expense is low, has improved workman's working environment, simple in structure, practical, have stronger propagation and employment and be worth.
Description of drawings
Fig. 1 is the structural representation of the full-automatic alkali foam absorber that provides of the utility model embodiment.
Among the figure: 1, blower fan; 2, blast pipe; 3, spinner flowmeter; 4, filling pipe; 5, moisturizing ball valve; 6, flange; 7, circulating water pipe; 8, the second ball valve; 9, respiratory box; 10, liquid level gauge; 11, absorb airduct; 12, circulation fluid infusion case; 13, inspection opening; 14, discharge opeing motor-driven valve; 15, discharging tube; 16, geosyncline; 17, submerged pump; 18, manhole; 19, water discharging valve; 20, support; 21, overflow pipe; 22, the first ball valve; 23, the 3rd ball valve.
The specific embodiment
In order to make the purpose of this utility model, technical scheme and advantage clearer, below in conjunction with drawings and Examples, the utility model is further elaborated.Should be appreciated that specific embodiment described herein only in order to explaining the utility model, and be not used in restriction the utility model.
Fig. 1 shows the structure of the full-automatic alkali foam absorber that the utility model embodiment provides.For convenience of explanation, only show the part relevant with the utility model embodiment.
This full-automatic alkali foam absorber comprises: blower fan 1, blast pipe 2, respiratory box 9, absorption airduct 11, overflow pipe 21, geosyncline 16, submerged pump 17, circulating water pipe 7, the first ball valve 22, circulation fluid infusion case 12, the second ball valve 8, discharging tube 15;
Blower fan 1 is connected with respiratory box 9 by blast pipe 2, respiratory box 9 is connected with an end that absorbs airduct 11, the other end that absorbs airduct 11 is connected with an end of overflow pipe 21, the other end of overflow pipe 21 is connected with geosyncline 16, submerged pump 17 is installed in the geosyncline 16, submerged pump 17 is connected with circulating water pipe 7, circulating water pipe 7 is connected with circulation fluid infusion case 12 by the first ball valve 22, circulation fluid infusion case 12 is connected with respiratory box 9 by the second ball valve 8, and respiratory box 9 is connected with geosyncline 16 by discharging tube 15.
In the utility model embodiment, spinner flowmeter 3 is installed on the blast pipe 2, blast pipe 2 is installed on the respiratory box 9 by flange 6.
In the utility model embodiment, the top of respiratory box 9 is equipped with liquid level gauge 10, and indicator lamp A, indicator lamp B, indicator lamp C are installed on the liquid level gauge 10.
In the utility model embodiment, be provided with manhole 18 on the respiratory box 9.
In the utility model embodiment, the position that is connected with overflow pipe 21 that absorbs airduct 11 is provided with inspection opening 13.
In the utility model embodiment, an end that is connected with overflow pipe 21 that absorbs airduct 11 also is connected with cartridge type auger discharging mouth.
In the utility model embodiment, discharge opeing motor-driven valve 14 is installed on the discharging tube 15.
In the utility model embodiment, circulating water pipe 7 also is connected with heating kettle by the 3rd ball valve 23, and heating kettle is connected with respiratory box 9 by filling pipe 4.
In the utility model embodiment, moisturizing ball valve 5 is installed on the filling pipe 4.
In the utility model embodiment, the bottom welding of respiratory box 9 has support 20, and the bottom of respiratory box 9 also is equipped with water discharging valve 19.
Below in conjunction with drawings and the specific embodiments application principle of the present utility model is further described.
As shown in Figure 1, when using for the first time, open moisturizing ball valve 5 add water bright to indicator lamp A till, open blower fan 1, observe spinner flowmeter 3, utilize the height of water level with the control of negative pressure of vacuum amount within the specific limits, can begin packing, moisturizing ball valve 5 carries out the moisturizing operation for daily to system.
Packing is closed blower fan 1 after finishing, automatically open discharge opeing motor-driven valve 14, absorption liquid is mediated in the geosyncline 16, lamp C to be instructed lights rear autoshutdown discharge opeing motor-driven valve 14, while automatically opens submerged pump 17, the first ball valves 22 and the 3rd ball valve 23 is in Chang Kai and normally off, and geosyncline 16 precipitation clear water are drawn in the respiratory box 9, add water bright to indicator lamp B till, submerged pump 17 stops automatically; The liquid level of circulation fluid infusion case 12 is adjusted to the height identical with inspection opening 13, and namely water flooding is to the position that absorbs airduct 11 interior inspection openings 13, the alkali foam that adhere on water solution absorption airduct 11 inwalls this moment; If the liquid level that absorbs in the airduct 11 is too high, can from overflow pipe 21 interior overflows to geosyncline 16, be unlikely to the water outflow and flood working environment; During to again start packing, manual unlocking discharge opeing motor-driven valve 14 is mediated absorption liquid in the geosyncline 16, by the time indicator lamp A extinguishes rear discharge opeing motor-driven valve 14 autoshutdowns, automatically opens simultaneously blower fan 1, can begin packing.
When if geosyncline 16 interior alkali concns are too high, close the first ball valve 22, open the 3rd ball valve 23, submerged pump 17 is dropped to place, geosyncline 16 bottoms, manually opened submerged pump 17 can be delivered to heating kettle with aqueous slkali and evaporate, the secondary recovery utilization.
The full-automatic alkali foam absorber that the utility model embodiment provides, adopt the negative pressure absorbing principle to absorb the alkali foam, the alkali foam is water-soluble, so that powder no longer leaks, also Powder Recovery can be recycled, effectively prevent the generation of secondary pollution phenomenon, utilized simultaneously liquid level gauge 10 to realize Automatic Control, more efficient quick; This absorber can be widely used in the Product environment of the water-soluble generation dust of energy and aerosol, and organic efficiency is high, and automatization level is high, easy to maintenance quick, operation expense is low, has improved workman's working environment, simple in structure, practical, have stronger propagation and employment and be worth.
Below only be preferred embodiment of the present utility model, not in order to limiting the utility model, all any modifications of within spirit of the present utility model and principle, doing, be equal to and replace and improvement etc., all should be included within the protection domain of the present utility model.

Claims (10)

1. full-automatic alkali foam absorber, it is characterized in that, this full-automatic alkali foam absorber comprises: blower fan, blast pipe, respiratory box, absorption airduct, overflow pipe, geosyncline, submerged pump, circulating water pipe, the first ball valve, circulation fluid infusion case, the second ball valve, discharging tube;
Described blower fan is connected with described respiratory box by described blast pipe, described respiratory box is connected with an end of described absorption airduct, the other end of described absorption airduct is connected with an end of described overflow pipe, the other end of described overflow pipe is communicated with described geosynclinal facies, described submerged pump is installed in the described geosyncline, described submerged pump is connected with described circulating water pipe, described circulating water pipe is connected with described circulation fluid infusion case by described the first ball valve, described circulation fluid infusion case is connected with described respiratory box by described the second ball valve, and described respiratory box is communicated with described geosynclinal facies by described discharging tube.
2. full-automatic alkali foam absorber as claimed in claim 1 is characterized in that, on the described blast pipe spinner flowmeter is installed, described blast pipe is installed on the described respiratory box by flange.
3. full-automatic alkali foam absorber as claimed in claim 1 is characterized in that, the top of described respiratory box is equipped with liquid level gauge, and indicator lamp A, indicator lamp B, indicator lamp C are installed on the described liquid level gauge.
4. full-automatic alkali foam absorber as claimed in claim 1 is characterized in that, is provided with manhole on the described respiratory box.
5. full-automatic alkali foam absorber as claimed in claim 1 is characterized in that, the position that is connected with described overflow pipe of described absorption airduct is provided with inspection opening.
6. full-automatic alkali foam absorber as claimed in claim 5 is characterized in that, an end that is connected with described overflow pipe of described absorption airduct also is connected with cartridge type auger discharging mouth.
7. full-automatic alkali foam absorber as claimed in claim 1 is characterized in that, the discharge opeing motor-driven valve is installed on the described discharging tube.
8. full-automatic alkali foam absorber as claimed in claim 1 is characterized in that, described circulating water pipe also is connected with described heating kettle by the 3rd ball valve, and described heating kettle is connected with described respiratory box by described filling pipe.
9. full-automatic alkali foam absorber as claimed in claim 8 is characterized in that, the moisturizing ball valve is installed on the described filling pipe.
10. full-automatic alkali foam absorber as claimed in claim 1 is characterized in that, the bottom welding of described respiratory box has support, and the bottom of described respiratory box also is equipped with water discharging valve.
CN 201220302385 2012-06-27 2012-06-27 Full-automatic alkali powder absorber Expired - Fee Related CN202724931U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201220302385 CN202724931U (en) 2012-06-27 2012-06-27 Full-automatic alkali powder absorber

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201220302385 CN202724931U (en) 2012-06-27 2012-06-27 Full-automatic alkali powder absorber

Publications (1)

Publication Number Publication Date
CN202724931U true CN202724931U (en) 2013-02-13

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Application Number Title Priority Date Filing Date
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Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108939772A (en) * 2018-06-11 2018-12-07 白茹 Wet dust separater

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108939772A (en) * 2018-06-11 2018-12-07 白茹 Wet dust separater
CN108939772B (en) * 2018-06-11 2021-02-05 嘉祥中聚立新型建材有限公司 Wet dust collector

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20130213

Termination date: 20150627

EXPY Termination of patent right or utility model