CN207042676U - A kind of slidingtype pulsed plasma water-vapor removing device - Google Patents
A kind of slidingtype pulsed plasma water-vapor removing device Download PDFInfo
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- CN207042676U CN207042676U CN201721196734.7U CN201721196734U CN207042676U CN 207042676 U CN207042676 U CN 207042676U CN 201721196734 U CN201721196734 U CN 201721196734U CN 207042676 U CN207042676 U CN 207042676U
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- reaction vessel
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- removing device
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Abstract
The utility model discloses a kind of slidingtype pulsed plasma water-vapor removing device, include support, the rectangle reaction vessel being fixed on support, rectangular frame, negative plate and the positive plate being arranged in rectangle reaction vessel, the upper and lower rails being fixed on rectangular frame top and bottom, and multiple supports that are slidably connected being embedded into upper and lower rails;The top and bottom of negative plate are fixedly connected on rectangular frame, and the top support that is slidably connected corresponding with upper rail of positive plate is fixedly connected, and the bottom support that is slidably connected corresponding with lower guideway of positive plate is fixedly connected.The utility model between big spacing pole plate by carrying out corona charging, steam is set to form water droplet by charged cohesion, then pulsed discharge pattern is carried out between small spacing pole plate, produce plasma and high energy electron collision hydrone, hydrone is set to excite cracking and ionization, improve charged effect, make integral device except steam it is more efficient.
Description
Technical field
Gas-liquid separation device field is the utility model is related to, specifically a kind of slidingtype pulsed plasma fills except steam
Put.
Background technology
Gas-liquid separation is a technological process common in industrial circle, such as is applied in wet desulfurizing process, de-
Less slurries particle diameter contributes to the quick progress of gas liquid reaction during sulphur, and therefore the flue gas after desulfurization can be full of slurry water
Vapour, the steam of small particle is easily carried by air-flow discharges, and causes the stained and heavy corrosion of blower fan, heat exchanger and flue, therefore
Purifying smoke is needed by water-vapor removing device before absorption tower is left.The pressure loss is small, air velocity is high, except steam efficiency high
Water-vapor removing device be ensure wet flue gas handling process system normal operation important step.Existing major part fills except steam
The steam removal efficiency to more than 20 microns is put up to more than 70%, but the steam removal efficiency smaller to particle diameter is only 30% left
The right side, desulfurizing tower outlet particulate matter it is exceeded the main reason for be the particulate matter that steam is taken out of caused by, effective solution method is exactly
Reduce steam or reduce the discharge of steam particulate matter, that is, improve the gas-liquid separation efficiency of flue gas after purification.It is existing to remove steam
The problem that device generally faces is that the clearance of small particle steam is low.
Utility model content
The technical problems to be solved in the utility model is to provide a kind of slidingtype pulsed plasma water-vapor removing device, passes through
Corona charging is carried out between big spacing pole plate, steam is formed water droplet by charged cohesion, then enters horizontal pulse between small spacing pole plate
Discharge mode, plasma and high energy electron collision hydrone are produced, hydrone is excited cracking and ionization, improves lotus
Electric effect, make integral device except steam it is more efficient.
The technical solution of the utility model is:
A kind of slidingtype pulsed plasma water-vapor removing device, includes support, and the rectangle reaction being fixed on support is held
Device, rectangular frame, negative plate and the positive plate being arranged in rectangle reaction vessel, be fixed on rectangular frame top on lead
Rail, the lower guideway being fixed on rectangular frame bottom, and multiple supports that are slidably connected being embedded into upper rail and lower guideway;
The top and bottom of described negative plate are fixedly connected on rectangular frame, and the top of described positive plate is corresponding with upper rail
The support that is slidably connected be fixedly connected, the bottom support that is slidably connected corresponding with lower guideway of positive plate is fixedly connected, described
Rectangle reaction vessel at the top and bottom of be respectively arranged with gas outlet and air inlet, and the bottom of rectangle reaction vessel is provided with
Discharge outlet.
Described negative plate is one, is fixed in reaction vessel and positioned at the position of axis;Described positive plate is
One or more groups of, every group includes two pieces of positive plates, and in every group two pieces of positive plates horizontal line with reaction vessel
Intersect axis;Described upper rail and lower guideway is multiple, and multiple upper rails and multiple lower guideways are and reaction vessel
Axis intersect, be embedded with two supports that are slidably connected in each upper rail and each lower guideway, overlapping upper rail and
The support connection corresponding with the top of corresponding one group of positive plate and bottom respectively that is slidably connected in lower guideway.
The top and bottom of described rectangular frame are fixedly installed electrode suppor, the top and bottom of described negative plate
Hold and be provided with high-tension insulator, the high-tension insulator of negative plate top and bottom is fixed with corresponding electrode suppor respectively to be connected
Connect.
The inner top of described rectangle reaction vessel is fixedly installed axial flow blower.
The top of described rectangle reaction vessel is inverted cone-shaped structure, and its gas outlet is arranged at the top of inverted cone-shaped structure.
The inner bottom part of described rectangle reaction vessel is provided with deflector, and described discharge outlet is located at the lower section of deflector.
The advantages of the utility model:
The utility model carries out corona charging by the positive plate and negative plate of big spacing, moves, makes toward positive plate direction
Steam forms water droplet by charged condense upon on positive plate, pulsed discharge mould is then carried out between the positive plate and negative plate of small spacing
Formula, plasma and high energy electron collision hydrone are produced, hydrone is excited cracking and ionization, improves charged effect
Fruit, make integral device except steam it is more efficient.The present invention can make positive pole according to import steam concentration in allowed band
Plate, so as to adjust the spacing between positive plate and negative plate, to reduce energy consumption, while is realized not in the enterprising line slip of upper and lower rails
With the adjustment of mode of operation.
Brief description of the drawings
Fig. 1 is structural representation of the present utility model.
Embodiment
Below in conjunction with the accompanying drawing in the utility model embodiment, the technical scheme in the embodiment of the utility model is carried out
Clearly and completely describing, it is clear that described embodiment is only the utility model part of the embodiment, rather than whole
Embodiment.Based on the embodiment in the utility model, those of ordinary skill in the art are not under the premise of creative work is made
The every other embodiment obtained, belong to the scope of the utility model protection.
A kind of slidingtype pulsed plasma water-vapor removing device, includes support 1, the rectangle reaction being fixed on support 1
Container 2,3, negative plates 4 of rectangular frame and the one group of positive plate 5 being arranged in rectangle reaction vessel 2, is fixed on rectangle frame
Upper rail 7 on the top of frame 3, the lower guideway 8 being fixed on the bottom of rectangular frame 3, and it is multiple be embedded into upper rail 7 or under lead
The support 9 that is slidably connected in rail 8;
The top and bottom of rectangular frame 3 are fixedly installed electrode suppor 6, and the top and bottom of negative plate 4 are respectively provided with
There is a high-tension insulator 10, negative plate 4 is fixed in reaction vessel 3 position for being located at axis, and the top of negative plate 4 and bottom
High-tension insulator 10 is fixedly connected with corresponding electrode suppor 6 respectively;
One group of positive plate includes two pieces of positive plates 5, and the axis of the horizontal line of two pieces of positive plates 5 and reaction vessel 2
Line intersects;
The axis of upper rail 7 and lower guideway 8 with reaction vessel 2 is intersected, and is embedded with upper rail 7 and lower guideway 8
Two supports 9 that are slidably connected, up and down in overlapping upper rail 7 and lower guideway 8 be slidably connected support 9 respectively with two pieces of positive plates
The corresponding connection in 5 top and bottom;
The bottom of rectangle reaction vessel 2 is provided with air inlet 11, and the top of rectangle reaction vessel 2 is inverted cone-shaped structure, falls
Axial flow blower 12 is provided with pyramidal structure, the top of inverted cone-shaped structure is provided with gas outlet 13, and rectangle reaction vessel 2 is interior
Bottom is provided with deflector 14, the bottom of rectangle reaction vessel 2 and the lower section of deflector 14 is provided with discharge outlet 15.
Operation principle of the present utility model:
Make the internal work of rectangle reaction vessel 2 first under corona charging pattern(Increase a negative plate 4 and one group of positive pole
The spacing of plate 5), the steam that is entered from air inlet 11 in rectangle reaction vessel 2, steam therein is charged, is transported to positive plate 5
It is dynamic, condense upon and form water droplet on positive plate 5;And then the internal work of rectangle reaction vessel 2 is made under pulsed discharge pattern(Reduce
The spacing of one negative plate 4 and one group of positive plate 5), low temperature plasma and high energy electron collision hydrone are produced, makes hydrone
Cracking and ionization are excited, makes small particle steam easily charged, the water droplet on last positive plate 5 is after deflector 14 from row
The mouth of a river 15 is discharged, and the gas after separation is discharged by gas outlet 13.
While there has been shown and described that embodiment of the present utility model, for the ordinary skill in the art,
It is appreciated that these embodiments can be carried out with a variety of changes in the case where not departing from principle of the present utility model and spirit, repaiied
Change, replace and modification, the scope of the utility model are defined by the appended claims and the equivalents thereof.
Claims (6)
- A kind of 1. slidingtype pulsed plasma water-vapor removing device, it is characterised in that:Include support, the square being fixed on support Shaped reaction container, rectangular frame, negative plate and the positive plate being arranged in rectangle reaction vessel, is fixed on rectangular frame top Upper rail, the lower guideway being fixed on rectangular frame bottom, and multiple slips for being embedded into upper rail and lower guideway connect Connect support;The top and bottom of described negative plate are fixedly connected on rectangular frame, and the top of described positive plate is with above leading The support that is slidably connected corresponding in rail is fixedly connected, and the bottom of the positive plate support that is slidably connected corresponding with lower guideway, which is fixed, to be connected Connect, gas outlet and air inlet, and the bottom of rectangle reaction vessel are respectively arranged with the top and bottom of described rectangle reaction vessel End is provided with discharge outlet.
- A kind of 2. slidingtype pulsed plasma water-vapor removing device according to claim 1, it is characterised in that:Described is negative Pole plate is one, is fixed in reaction vessel and positioned at the position of axis;Described positive plate is one or more groups of, and every group equal Include two pieces of positive plates, and the horizontal line of two pieces of positive plates intersects with the axis of reaction vessel in every group;Described Upper rail and lower guideway are multiple, and multiple upper rails and multiple lower guideways intersect with the axis of reaction vessel, each It is embedded with two supports that are slidably connected in upper rail and each lower guideway, being slidably connected in overlapping upper rail and lower guideway Support connection corresponding with the top of corresponding one group of positive plate and bottom respectively.
- A kind of 3. slidingtype pulsed plasma water-vapor removing device according to claim 1, it is characterised in that:Described square The top and bottom of shape framework are fixedly installed electrode suppor, and it is exhausted that the top and bottom of described negative plate are provided with high pressure The high-tension insulator of edge, negative plate top and bottom is fixedly connected with corresponding electrode suppor respectively.
- A kind of 4. slidingtype pulsed plasma water-vapor removing device according to claim 1, it is characterised in that:Described square The inner top of shaped reaction container is fixedly installed axial flow blower.
- A kind of 5. slidingtype pulsed plasma water-vapor removing device according to claim 1, it is characterised in that:Described square The top of shaped reaction container is inverted cone-shaped structure, and its gas outlet is arranged at the top of inverted cone-shaped structure.
- A kind of 6. slidingtype pulsed plasma water-vapor removing device according to claim 1, it is characterised in that:Described square The inner bottom part of shaped reaction container is provided with deflector, and described discharge outlet is located at the lower section of deflector.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201721196734.7U CN207042676U (en) | 2017-09-15 | 2017-09-15 | A kind of slidingtype pulsed plasma water-vapor removing device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201721196734.7U CN207042676U (en) | 2017-09-15 | 2017-09-15 | A kind of slidingtype pulsed plasma water-vapor removing device |
Publications (1)
Publication Number | Publication Date |
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CN207042676U true CN207042676U (en) | 2018-02-27 |
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CN201721196734.7U Active CN207042676U (en) | 2017-09-15 | 2017-09-15 | A kind of slidingtype pulsed plasma water-vapor removing device |
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CN (1) | CN207042676U (en) |
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2017
- 2017-09-15 CN CN201721196734.7U patent/CN207042676U/en active Active
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TR01 | Transfer of patent right |
Effective date of registration: 20230704 Address after: 230000 41 Tangkou Road, Feixi Economic Development Zone, Hefei City, Anhui Province Patentee after: Zhongke Hualu (Hefei) Environmental Protection Technology Co.,Ltd. Address before: 230088 No. C212, National University Science Park, 602 Huangshan Road, Hefei High-tech Zone, Anhui Province Patentee before: ANHUI HUAFENG ENERGY SAVING & ENVIRONMENTAL SCIENCE & TECHNOLOGY CO.,LTD. |
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TR01 | Transfer of patent right |