CN202845021U - Multi-solution mixing reaction system - Google Patents
Multi-solution mixing reaction system Download PDFInfo
- Publication number
- CN202845021U CN202845021U CN 201220464411 CN201220464411U CN202845021U CN 202845021 U CN202845021 U CN 202845021U CN 201220464411 CN201220464411 CN 201220464411 CN 201220464411 U CN201220464411 U CN 201220464411U CN 202845021 U CN202845021 U CN 202845021U
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- Prior art keywords
- circular joint
- reaction vessel
- diversion column
- flow guide
- hole
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- Expired - Fee Related
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Abstract
The utility model discloses a multi-solution mixing reaction system which overcomes the defects of insufficient reaction and poor mixing uniformity caused by direct addition of raw materials in the prior art, as well as complex structure of equipment, high production cost and the like caused by direct charging of air. The multi-solution mixing reaction system comprises a cylindrical reaction container, a flow guide column positioned in the reaction container, a circular joint arranged at the lower end of the flow guide column and an outflow hole formed at the upper end of the surface wall of the reaction container, wherein an inner cavity communicated with the flow guide column is arranged in the circular joint, arc-shaped flow guide holes are formed in the surface wall of the circular joint, the number of the arc-shaped flow guide holes is above three, the arc-shaped flow guide holes are uniformly distributed on the surface wall of the circular joint, an air direct charging hole is further formed at the bottom of the reaction container, and stirring blades are further arranged at the bottom of the reaction container. The multi-solution mixing reaction system disclosed by the utility model has the advantages of simple structure, low cost and convenience in implementation and operation. Therefore, the multi-solution mixing reaction system is suitable for popularization and application.
Description
Technical field
The utility model relates to a kind of liquid mixing, treatment facility, specifically, is one kind of multiple solution hybrid reaction systems.
Background technology
Along with economic development, people's living standard improves, and is more and more higher to the water treatment requirement in the fields such as industrial extra-pure water preparation, wastewater treatment, drinking water and irrigation; Chlorine dioxide is as a kind of new and effective disinfectant, and the water treatment that is widely used in each field purifies, sterilization.The reaction unit of traditional chlorine dioxide, adopt and directly add the raw material generation, this mode shortcoming is that reaction speed is slow, mixture homogeneity is not high, based on this defective, people adopt and be filled with air in reaction vessels, mix, but this mode need by complicated equipment, therefore, just inevitably increased production cost.
The utility model content
The purpose of this utility model is to overcome defects, provide a kind of simple in structure, with low cost, realize easily mixing stirring device.
To achieve these goals, the technical solution adopted in the utility model is as follows:
Multiple solution hybrid reaction system comprises columniform reaction vessel, is positioned at the diversion column of this reaction vessel, is arranged on the circular joint of diversion column lower end, and the flow-out hole that is arranged on reaction vessel table wall upper end; Has the inner chamber that is communicated with diversion column in described circular joint inside, and the table wall at circular joint is provided with arc guiding hole, this arc guiding hole number is more than three, and be evenly distributed on the table wall of circular joint, also offer an air in the bottom of reaction vessel and directly fill the hole, directly fill at this air and to be provided with one outside the hole in order to prevent the sealed disc of leak of liquid, the air charging device directly fills the hole by air and stretches into reaction vessel interior, also be provided with a conical nozzle in the upper end of described diversion column, also be provided with paddle at reaction container bottom, this paddle is connected in order to the power source that drives paddle work with outside.
Further, described diversion column is coaxial with circular joint.
Further, described circular joint and diversion column lower end close contact, and the bottom of circular joint is apart from reaction container bottom 2 to 5cm.
Further, described circular joint inner chamber radius is at least greater than diversion column bore 1cm.
In order better to realize the utility model, described arc guiding hole is arranged on the lower end of circular joint sidewall.
Compared with prior art, the beneficial effects of the utility model are:
(1) the utility model is not only simple in structure, and is with low cost, and realization, easy to operate;
(2) the utility model is provided with the with it circular joint of close contact in the diversion column lower end, table wall at this circular joint is provided with then arc guiding hole, after liquid flows into circular joint from diversion column, again in arc guiding hole flows into reaction vessel, thereby liquid is tangentially flowed by the mobile circumference that changes into of vertical axial, and then promotion liquid rises in reaction vessel in a spiral manner, with the purpose that realizes stirring, this mode has not only been accelerated the intensity of two kinds or two or more liquid mix and blends, and accelerated chemical reaction between the liquid, shortened the time of chemical reaction;
(3) material therefor is common common material in the utility model, and its cost is very cheap, and based on simple structure, produces also very conveniently, for it promotes the use on a large scale, has established solid foundation;
(4) the utility model is provided with some arc guiding holes, these arc guiding holes are evenly distributed on the circumference of circular joint, and liquid flows out from arc guiding hole, are divided into some runners, effectively strengthen mixing effect, accelerated the reaction speed of two or more liquid;
(5) the utility model also offers an air in the bottom of reaction vessel and directly fills the hole, directly fill at this air and to be provided with one outside the hole in order to prevent the sealed disc of leak of liquid, the air charging device directly fills the hole by air and stretches into reaction vessel interior, in order to mixing, the reaction of accelerating liquid in the reaction vessel;
(6) the utility model also is provided with a conical nozzle in the upper end of diversion column, this conical nozzle is up big and down small, behind the liquid flow nozzle, because its circulation is constant, the lower end of nozzle has then dwindled the flow cross of liquid, thereby accelerated the flow velocity of liquid, further guaranteed the speed of reaction;
(7) the utility model also is provided with paddle at reaction container bottom, and this paddle is connected in order to the power source that drives paddle work with outside, and paddle has been strengthened mixing and the mixing effect of liquid in the reaction vessel.
Description of drawings
Fig. 1 is front view of the present utility model.
Fig. 2 is top view of the present utility model.
In the accompanying drawing, the title that Reference numeral is corresponding:
1-reaction vessel, 2-diversion column, 3-circular joint, 4-flow-out hole, 5-arc guiding hole, the 6-air directly fills the hole, 7-conical nozzle, 8-paddle.
The specific embodiment
The utility model is described in further detail below in conjunction with accompanying drawing.Embodiment of the present utility model includes but not limited to following case.
Embodiment
As shown in Figure 1, 2, on the chlorine dioxide generator installing plate reactor is housed, multiple solution hybrid reaction system then is installed in this reactor, it comprises columniform reaction vessel 1, be positioned at the diversion column 2 of this reaction vessel 1, be arranged on the circular joint 3 of diversion column 2 lower ends, and the flow-out hole 4 that is arranged on reaction vessel 1 table wall upper end; Have the inner chamber that is communicated with diversion column 2 in described circular joint 3 inside, and be provided with arc guiding hole 5 at the table wall of circular joint 3, these arc guiding hole 5 numbers are more than three, and are evenly distributed on the table wall of circular joint 3.
After liquid flows into circular joint 3 from diversion column 2, flow in the reaction vessel 1 through arc guiding hole 5 again, thereby liquid is tangentially flowed by the mobile circumference that changes into of vertical axial, and then promotion liquid rises in reaction vessel 1 in a spiral manner, with the purpose that realizes stirring, this mode has not only been accelerated the intensity of two kinds or two or more liquid mix and blends, and has accelerated the chemical reaction between the liquid, has shortened the time of chemical reaction; The opposing party, liquid flows out from arc guiding hole 5, is divided into some runners, has effectively strengthened mixing effect, has accelerated the reaction speed of two or more liquid.
The utility model also offers an air in the bottom of reaction vessel 1 and directly fills hole 6, outside directly filling hole 6, this air is provided with one in order to prevent the sealed disc of leak of liquid, the air charging device directly fills hole 6 by air and stretches into reaction vessel 1 inside, in order to mixing, the reaction of accelerating liquid in the reaction vessel.
In the present embodiment, also be provided with a conical nozzle 7 in the upper end of diversion column 2, this conical nozzle 7 is up big and down small, behind the liquid flow nozzle, because its circulation is constant, the lower end of nozzle has then dwindled the flow cross of liquid, thereby has accelerated the flow velocity of liquid, has further guaranteed the speed of reaction.
The utility model also is provided with paddle 8 in reaction vessel 1 bottom, and this paddle 8 is connected in order to the power source that drives paddle work with outside, and paddle has been strengthened mixing and the mixing effect of liquid in the reaction vessel.
In the present embodiment, described diversion column 2 is coaxial with circular joint 3.In order to prevent that liquid in the diversion column 2 is from being connected slit seepage, described circular joint 3 and diversion column 2 lower end close contacts between circular joint 3 and the diversion column 2; On the other hand, the bottom of circular joint 3 is apart from reaction vessel 1 bottom 2 to 5cm.
In order better to realize present embodiment, described circular joint 3 inner chamber radiuses are at least greater than diversion column 2 bore 1cm; Described arc guiding hole 5 is arranged on the lower end of circular joint 3 sidewalls.
According to above-described embodiment, just can realize well the utility model.
Claims (5)
1. many kinds of solution hybrid reaction systems, it is characterized in that: comprise columniform reaction vessel (1), be positioned at the diversion column (2) of this reaction vessel (1), be arranged on the circular joint (3) of diversion column (2) lower end, and the flow-out hole (4) that is arranged on reaction vessel (1) table wall upper end; Has the inner chamber that is communicated with diversion column (2) in described circular joint (3) inside, and the table wall at circular joint (3) is provided with arc guiding hole (5), this arc guiding hole (5) number is more than three, and be evenly distributed on the table wall of circular joint (3), also offer an air in the bottom of reaction vessel (1) and directly fill hole (6), outside directly filling hole (6), this air is provided with one in order to prevent the sealed disc of leak of liquid, the air charging device directly fills hole (6) by air and stretches into reaction vessel (1) inside, also be provided with a conical nozzle (7) in the upper end of described diversion column (2), also be provided with paddle (8) in reaction vessel (1) bottom, this paddle (8) is connected in order to the power source that drives paddle (8) work with outside.
2. multiple solution hybrid reaction according to claim 1 system, it is characterized in that: described diversion column (2) is coaxial with circular joint (3).
3. multiple solution hybrid reaction according to claim 2 system is characterized in that: described circular joint (3) and diversion column (2) lower end close contact, and the bottom of circular joint (3) is apart from reaction vessel (1) bottom 2 to 5cm.
4. multiple solution hybrid reaction according to claim 3 system, it is characterized in that: described circular joint (3) inner chamber radius is at least greater than diversion column (2) bore 1cm.
5. multiple solution hybrid reaction according to claim 4 system, it is characterized in that: described arc guiding hole (5) is arranged on the lower end of circular joint (3) sidewall.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 201220464411 CN202845021U (en) | 2012-09-13 | 2012-09-13 | Multi-solution mixing reaction system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 201220464411 CN202845021U (en) | 2012-09-13 | 2012-09-13 | Multi-solution mixing reaction system |
Publications (1)
Publication Number | Publication Date |
---|---|
CN202845021U true CN202845021U (en) | 2013-04-03 |
Family
ID=47976260
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN 201220464411 Expired - Fee Related CN202845021U (en) | 2012-09-13 | 2012-09-13 | Multi-solution mixing reaction system |
Country Status (1)
Country | Link |
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CN (1) | CN202845021U (en) |
-
2012
- 2012-09-13 CN CN 201220464411 patent/CN202845021U/en not_active Expired - Fee Related
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20130403 Termination date: 20130913 |