CN104196595B - DEP automobile exhaust purification system - Google Patents
DEP automobile exhaust purification system Download PDFInfo
- Publication number
- CN104196595B CN104196595B CN201410422896.2A CN201410422896A CN104196595B CN 104196595 B CN104196595 B CN 104196595B CN 201410422896 A CN201410422896 A CN 201410422896A CN 104196595 B CN104196595 B CN 104196595B
- Authority
- CN
- China
- Prior art keywords
- anode
- negative electrode
- protuberance
- dep
- cathode
- Prior art date
- 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
Links
Classifications
-
- Y02T10/22—
Landscapes
- Disinfection, Sterilisation Or Deodorisation Of Air (AREA)
- Treating Waste Gases (AREA)
Abstract
The invention provides a DEP automobile exhaust purification system which comprises an air inlet cylinder, an air outlet cylinder, a three-way catalytic converter and a DEP purification processor. The DEP purification processor comprises a shell which is provided with an air inlet and an air outlet. A connection mechanism is arranged on the inner side of the shell and detachably connected with M DEP purification electrode plates, and the M DEP purification electrode plates are concentrically arranged in a sleeved mode to form a hollow cylinder and are not in contact. DEP purification treatment electrodes are distributed on one face or the inner face and the outer face of each DEP purification electrode plate, each DEP purification treatment electrode comprises an anode part and a cathode part, the anode parts and the cathode parts are distributed in a staggered mode, the anode parts are formed by periodically repeating anodes, the cathode parts are formed by periodically repeating cathodes, and one anode and one cathode form a DEP electrode structure. An electric field is formed around the DEP purification electrode plates, and electrophoretic force is used for effectively adsorbing granules especially particles which can enter lungs.
Description
Technical field
The present invention relates to material purification treatment technology field, and in particular to a kind of DEP automobile tail gas purification systems.
Background technology
With the development of social economy, the consumption of one side fossil energy and its pollutant discharge amount are constantly raised, another
Aspect, in order to more comfortably and healthily live, people are to clean environment degree requirement more and more higher.In order to tackle the ring that high pollution brings
Border problem, discharge of the country to vehicle exhaust proposes more stringent requirement.In order to realize the exhaust emissions of lower concentration,
There are emission controls by improving combustion and two kinds of approach of external purification at present, emission controls by improving combustion is the growing amount for reducing pernicious gas, in vehicle exhaust row
Before entering air, innocuous gas are translated into using catalytic convention design;External purification is to being processed through row after discharge waste gas
Purification, such as using air injection, oxidized form reactor and three-effect catalysis reactor method.But these methods both for NO α,
The purified treatment that HC, CO are done, there is presently no the collection device to PM in vehicle exhaust (particulate matter).
The content of the invention
It is net it is an object of the invention to provide a kind of DEP vehicle exhausts in order to overcome defect present in above-mentioned prior art
Change system, the unit can be effectively filtered out to little particle, the particulate matter that can particularly enter lung.
In order to realize above-mentioned purpose of the invention, the invention provides a kind of DEP automobile tail gas purification systems, it include into
Inflator, gas outlet, at least one three-way catalytic converter, also including DEP purifying processors, the DEP purifying processors include
Housing with air inlet and gas outlet, bindiny mechanism is provided with the case inside, and the bindiny mechanism removably connects
M block DEP purifying electric pole plates are connect, the M blocks DEP purifying electric pole plates are the hollow tubular of concentric suit, and are not in contact with each other, described
The one side of DEP purifying electric pole plates or inside and outside two sides are laid with DEP purified treatment electrodes, and the DEP purified treatments electrode includes
Anode part and cathode portion, the anode part and cathode portion are interspersed, and the anode part is by anodic cycle weight
Form again, the cathode portion is repeated to form by cathode deposition period, one anode and a negative electrode constitute a DEP electrode
Structure, the M is positive integer.
Electric field is formed around DEP automobile tail gas purification systems DEP purifying electric pole plates of the invention, can be right using electrophoretic force
Little particle, the particulate matter that can particularly enter lung is effectively adsorbed.
Preferably, the DEP electrode structures include anode and negative electrode, and the anode has anode first surface, described the moon
Has negative electrode first surface, the anode first surface is oppositely arranged with negative electrode first surface, the anode first surface tool
The top for having at least one anode protuberance, the anode protuberance protrudes from the non-of the coupled anode first surface
Protuberance part, when anode protuberance is 2 or more than 2, the table of anode first between two adjacent anode protuberance tops
Face region not in one plane and section be non-rectangle, the negative electrode first surface have at least one negative electrode protuberance, institute
The top for stating negative electrode protuberance protrudes from the non-projecting portion part of the coupled negative electrode first surface, when negative electrode protuberance
For 2 or more than 2 when, the negative electrode first surface region between two neighbouring cathode protuberance tops in one plane and is not cutd open
Face is non-rectangle.
This electrode structure can provide big electrophoretic force, so as to little particle, the particulate matter that can particularly enter lung is carried out
Effectively absorption.
Preferably, the anode first surface region between the two adjacent anodes protuberance top is cylinder, sphere, ellipsoid
Face, curved section move the cambered surface to be formed or be connected by a plurality of curved section after the cambered surface that is formed of movement, and by straightway and/or song
Line segment mobile cambered surface for being formed after being connected;Negative electrode first surface region between the two neighbouring cathodes protuberance top is post
Face, sphere, ellipsoid, curved section moves the cambered surface to be formed or is connected the cambered surface that movement formed by a plurality of curved section, and by straight
Line segment and/or curved section are connected and move the cambered surface of formation.
Various moulding provide multiple choices to prepare.
Preferably, the section in the anode first surface region between the two adjacent anodes protuberance top is semicircle;
The section in the negative electrode first surface region between the two neighbouring cathodes protuberance top is semicircle.
It is further preferred that the anode protuberance top is just pair and the negative electrode between its two closest negative electrode protuberance
The part that first surface region is most recessed;The negative electrode protuberance top is just pair and its two closest anode protuberance between
The part that is most recessed of anode first surface region.
So as to enough provide big electrophoretic force, to little particle, the particulate matter that can particularly enter lung is effectively adsorbed.
Preferably, the anode has anode second surface, the anode second surface and the anode first surface shape
Shape is identical or different, and the anode second surface is symmetrical or asymmetric with the anode first surface;The negative electrode has the moon
Pole second surface, the negative electrode second surface is identical or different with the negative electrode first surface shape, the negative electrode second surface
It is symmetrical or asymmetric with the negative electrode first surface.
Various moulding provide multiple choices to prepare.Various sizes of particulate matter can also effectively be filtered simultaneously
Remove.
Preferably, the distance of the two adjacent anodes protuberance is S1, and the distance of the two neighbouring cathodes protuberance is S2,
More than 0 and less than or equal to 10*S3, described S1, S2 are positive number to the distance of the negative electrode and anode, the S3 be in S1 and S2 compared with
Big person.
Guarantee has sufficiently large electrophoretic force.
Preferably, the DEP electrode structures include anode and negative electrode, and the anode has back to the first anode face for setting
With second plate face, the negative electrode has back to the first cathode plane and the second cathode plane for setting, the first anode face and the
One cathode plane is oppositely arranged, and at least one anode protuberance is also included on the first anode face, and the anode protuberance is by phase
Mutually vertical anode leader is constituted with anode extension portion, anode extension portion with anode leader vertical direction on size
More than coupled anode leader size in this direction, anode protuberance both sides are anode sky septal area;
Also include at least one negative electrode protuberance on first cathode plane, the negative electrode protuberance is by orthogonal the moon
Pole lead division is constituted with extended cathode portion, and extended cathode portion is more than and its phase with the size in negative electrode lead division vertical direction
Negative electrode lead division even size in this direction, negative electrode protuberance both sides are negative electrode sky septal area;
In the negative electrode sky septal area that the anode protuberance is deep into corresponding thereto and it is not in contact with negative electrode protuberance, it is described
In the anode sky septal area that negative electrode protuberance is deep into corresponding thereto and it is not in contact with anode protuberance.
This electrode structure can provide big electrophoretic force, so as to little particle, the particulate matter that can particularly enter lung is carried out
Effectively absorption.
Preferably, the anode leader is cuboid, square, spheroid or spheroid, or by limited bar straightway
And/or curved section join end to end after the mobile solid for being formed;The negative electrode lead division is cuboid, square, spheroid or ellipse
Spheroid, or the solid that movement is formed after being joined end to end by limited bar straightway and/or curved section.
The anode extension portion is cuboid, square, spheroid or spheroid, or by limited bar straightway and/or song
Line segment mobile solid for being formed after joining end to end;The extended cathode portion be cuboid, square, spheroid or spheroid, or
It is the mobile solid for being formed after being joined end to end by limited bar straightway and/or curved section.
Various moulding provide multiple choices to prepare.
Preferably, the anode has second plate face, and the second plate face is identical with first anode face shape
Or it is different, the second plate face is symmetrical or asymmetric with the first anode face;The negative electrode has the second cathode plane, institute
State the second cathode plane identical or different with the first cathode plane shape, second cathode plane is symmetrical with first cathode plane
Or it is asymmetric.
Various moulding provide multiple choices to prepare.Various sizes of particulate matter can also effectively be filtered simultaneously
Remove.
Preferably, the anode extension portion is L1, the negative electrode along the full-size perpendicular to the direction of anode leader
Extension is L2 along the full-size perpendicular to the direction of negative electrode lead division, and the anode extension portion is more than 0 with the distance of negative electrode
And less than or equal to 10*L3, the L1 is positive number, the L2 is positive number, and the L3 is the greater in L1 and L2, the L1=m*
L2, the m are positive number.
Guarantee has sufficiently large electrophoretic force.
Preferably, the L1=L2.So that preparing simpler.
Preferably, the DEP electrode structures include anode and negative electrode, and the anode has back to the first anode face for setting
With second plate face, the negative electrode has back to the first cathode plane and the second cathode plane for setting, the first anode face and the
One cathode plane is oppositely arranged;
Also include at least one anode protuberance on the first anode face, on section, in anode described in width
The size of protuberance the widest part is K1, is degree α × K1, described K1, α in the size of anode protuberance most strong point described in length direction
It is positive number, the anode protuberance both sides are anode sky septal area near the region in first anode face;
Also include at least one negative electrode protuberance on first cathode plane, on section, in negative electrode described in width
The size of protuberance the widest part is K2, is degree β × K2, described K2, β in the size of negative electrode protuberance most strong point described in length direction
It is positive number, the negative electrode protuberance both sides are negative electrode sky septal area near the region of the first cathode plane;
In the negative electrode sky septal area that the anode protuberance is deep into corresponding thereto and it is not in contact with negative electrode, the negative electrode is dashed forward
Go out in the anode sky septal area that portion is deep into corresponding thereto and be not in contact with anode, the anode protuberance is handed over negative electrode protuberance
Folded length thereof K3 meets 0 < K3≤2 × K4, wherein, K4 is the greater in K1 and K2.
This electrode structure can provide big electrophoretic force, so as to little particle, the particulate matter that can particularly enter lung is carried out
Effectively absorption.
Preferably, the K1=K2,1 < α≤4,1 < β≤4.
Preferably, α=β=2.
Preferably, the K3=K4.
Preferably, the anode and negative electrode at intervals of more than 0 and less than or equal to 4 × K4.
The anode protuberance is cuboid, square, spheroid or spheroid, or by limited bar straightway and/or song
Line segment mobile solid for being formed after joining end to end;The negative electrode protuberance be cuboid, square, spheroid or spheroid, or
It is the mobile solid for being formed after being joined end to end by limited bar straightway and/or curved section.
Preferably, the anode protuberance and negative electrode protuberance are cube.
Various moulding provide multiple choices to prepare.
Preferably, each anode part of adjacent two DEP purifying electrics pole plate opposite face and cathode portion just pair or
It is tiltedly right.
The DEP electrode structure distribution periods of adjacent two DEP purifying electrics pole plate opposite face are identical, and DEP purifying electrics pole plate is different
DEP electrode structure distribution periods between opposite face are identical or differ.
In the present embodiment, the bindiny mechanism is vertical with airintake direction, has through hole in the bindiny mechanism, described
The draw-in groove of concentric annular distribution is provided with bindiny mechanism, at least two interrupted draw-in grooves, the card are distributed with each ring
M blocks DEP purifying electric pole plates described in groove clamping.
In the present embodiment, the bindiny mechanism is that the case inside is provided with bar-like support thing, the M blocks
The through hole matched with the bar-like support thing size is provided with DEP purifying electric pole plates, the DEP purifying electrics pole plate is set with successively
It is relatively fixed on the bar-like support thing and with the bar-like support thing.
So that polylith DEP purifying electric pole plates are fixedly attached in housing, catharsis is realized jointly.
Preferably, also there is cleaning door, the row of plane and DEP purifying electric pole plates where the cleaning door on the housing
Cloth plane is vertical, and the cleaning door is closed and opened by Valve controlling.
The removing that realization accumulates dust.
Preferably, the air inlet is connected by screw thread or buckle with inlet channel, and the gas outlet passes through screw thread or card
Button is connected with outlet passageway.So as to realize being connected with gas channel.
Additional aspect of the invention and advantage will be set forth in part in the description, and will partly become from the following description
Obtain substantially, or recognized by practice of the invention.
Brief description of the drawings
Of the invention above-mentioned and/or additional aspect and advantage will become from description of the accompanying drawings below to embodiment is combined
Substantially and be readily appreciated that, wherein:
Fig. 1 is the structural representation of automobile tail gas purification system of the present invention;
Fig. 2 is the structural representation of DEP purifying processors of the present invention;
Fig. 3 is the schematic diagram of electrode structure in the first preferred embodiment of the invention;
Fig. 4 is the schematic diagram of electrode structure in second preferred embodiment of the invention;
Fig. 5 is the schematic diagram of electrode structure in the third preferred embodiment of the invention.
Specific embodiment
Embodiments of the invention are described below in detail, the example of the embodiment is shown in the drawings, wherein from start to finish
Same or similar label represents same or similar element or the element with same or like function.Below with reference to attached
It is exemplary to scheme the embodiment of description, is only used for explaining the present invention, and is not considered as limiting the invention.
The invention provides a kind of DEP automobile tail gas purification systems, as shown in figure 1, including inlet cylinder 01, gas outlet 04,
At least one three-way catalytic converter 02, also including DEP purifying processors 03.In the present embodiment, DEP purifying processors 03
The front end that may be located at three-way catalytic converter 02 can also be located at its rear end.When there is multiple three-way catalytic converters 02, DEP
Purifying processor 03 may be located between two three-way catalytic converters.
DEP purifying processors 03 include the housing with air inlet and gas outlet, and case inside is provided with bindiny mechanism,
The detachably connected M blocks DEP purifying electric pole plates of bindiny mechanism, as shown in Fig. 2 M block DEP purifying electrics pole plate 033 is concentric suit
Hollow tubular and be not in contact with each other, the space between DEP purifying electrics pole plate 033 be fluid passage 034, DEP purifying electrics pole plate 033
One side or inside and outside two sides be laid with DEP purified treatment electrodes, DEP purified treatments electrode includes anode part and negative pole part
Point, anode part and cathode portion are interspersed, and anode part is repeated to form by anodic cycle, and cathode portion is by cathode deposition period
Property repeat to form, an anode and negative electrode constitute a DEP electrode structure, and M is positive integer.
Housing and bindiny mechanism are not shown in Fig. 2, specific housing may be configured as tubular, its air inlet and gas outlet are divided
Not Wei Yu DEP purifying electrics pole plate 03 two ends, make gas according in figure arrow direction flow.
In the present embodiment, bindiny mechanism is support frame, is detachably secured on housing, bindiny mechanism and air inlet side
To vertical, there is through hole in bindiny mechanism, the draw-in groove of concentric annular distribution is provided with bindiny mechanism, be distributed with each ring
At least two interrupted draw-in grooves, draw-in groove clamping M block DEP purifying electric pole plates.
In the other implementation method of the present invention, bindiny mechanism is that case inside is provided with bar-like support thing, M blocks DEP
The through hole matched with bar-like support thing size is provided with purged electrode, DEP purifying electrics pole plate is sleeved on bar-like support thing successively
It is relatively fixed above and with the bar-like support thing.
So that polylith DEP purifying electric pole plates are fixedly attached in housing, catharsis is realized jointly.
Preferably, also there is cleaning door, the plane where cleaning door is hung down with the alignment plane of DEP purifying electric pole plates on housing
Directly, cleaning door is closed and opened by Valve controlling.The removing that realization accumulates dust.
Preferably, air inlet is connected by screw thread or buckle with inlet channel, and gas outlet passes through screw thread or buckle and outlet
Passage is connected.So as to realize being connected with gas channel.
In the present embodiment, power supply connector, anode part and the moon on DEP purifying electric pole plates are additionally provided with housing
Pole part is connected by power supply connector with external power source.
In the first preferred embodiment of the invention, the electrode structure of use, as shown in figure 3, it includes anode 1 and the moon
Pole 2, wherein, anode 1 has an anode first surface 3, and negative electrode 2 has a negative electrode first surface 4, anode first surface 3 and negative electrode the
One surface 4 is oppositely arranged.Anode first surface 3 has at least one anode protuberance 5, and the top of anode protuberance 5 protrudes from
The non-projecting portion part of coupled anode first surface 3, in the present embodiment, anode protuberance 3 is in addition to a rectangle
Arbitrary shape, the arcs for preferably having two depressions as shown in Figure 3 connect the shape to be formed, and the top of anode protuberance can be with
It is arbitrary shape, is specifically as follows but is not limited to plane, cambered surface or spininess, it is preferred to use spininess.
As shown in figure 3, anode first surface region between the top of two adjacent anode protuberance 3 not in one plane and
Section is arbitrary shape in addition to a rectangle, and the anode first surface region between two adjacent anode protuberance tops specifically can be with
For but be not limited to cylinder, sphere, ellipsoid, movement is formed after curved section moves the cambered surface to be formed or is connected by a plurality of curved section
Cambered surface, and the cambered surface that movement is formed after being connected by straightway and/or curved section.In a more preferred implementation of the invention
In mode, the section in the anode first surface region between two adjacent anode protuberance tops is semicircle.
In the present invention, and/or refer to can using " and " by the way of combine, it would however also be possible to employ the mode of "or" is combined,
Such as " shape that limited piece of flat board and/or arc are connected to form " refers to the shape that limited piece of flat board is connected to form, limited piece
The shape that arc is connected to form, or the shape that limited piece of flat board and limited fast arc are connected to form.
Negative electrode first surface 4 has at least one negative electrode protuberance 6, and the top of negative electrode protuberance 6 protrudes from coupled
Negative electrode first surface 4 non-projecting portion part, in the present embodiment, negative electrode protuberance 4 is arbitrary shape in addition to a rectangle
Shape, the arc for preferably having two depressions as shown in Figure 3 connects the shape to be formed, and the top of negative electrode protuberance can be arbitrary shape
Shape, is specifically as follows but is not limited to plane, cambered surface or spininess, it is preferred to use spininess.
As shown in figure 3, negative electrode first surface region between two neighbouring cathode protuberance tops not in one plane and
Section is non-rectangle, i.e., arbitrary shape in addition to a rectangle, the negative electrode first surface area between two neighbouring cathode protuberance tops
Domain is specifically as follows but is not limited to cylinder, sphere, ellipsoid, and curved section moves the cambered surface to be formed or is connected by a plurality of curved section
The cambered surface to be formed is moved afterwards, and by straightway and/or the curved section cambered surface that movement is formed after connected.At one of the invention more
In preferred embodiment, the section in the anode first surface region between two neighbouring cathode protuberance tops is semicircle.
In the present embodiment, the distance of two adjacent anode protuberances is S1, and the distance of two neighbouring cathode protuberances is S2,
The negative electrode is more than 0 and less than or equal to 10*S3 with the distance of anode, and described S1, S2 are positive number, and S3 is larger in S1 and S2
Person, S1 and S2 are micron to millimeter magnitude.
In the other preferred embodiment of the present invention, anode protuberance 5 is cloudy in the periodic distribution of anode first surface 3
Pole protuberance 6 be able to can also be differed in the periodic distribution of negative electrode first surface 4, both distribution periods with identical, it is preferable that
Anode protuberance is identical in the distribution period of negative electrode first surface with negative electrode protuberance in the distribution period of anode first surface.Sun
Pole and negative electrode form the relative waveform set up and rise and fall, and material can be between anode and negative electrode and anode and cathode surface stream
It is logical.
In a kind of more preferred implementation method of the present invention, the top of anode protuberance 5 just pair closest with it two
The part that negative electrode first surface region between negative electrode protuberance 6 is most recessed;The top of negative electrode protuberance 6 is just pair closest with it
Two anode protuberances 5 between the part that is most recessed of anode first surface region.
In embodiments, anode has anode second surface, the anode second surface and anode first surface shape phase
With or it is different, it is preferred to use identical structure, anode second surface and anode first surface can symmetrically can also be asymmetric, it is excellent
Choosing use asymmetric structure, more preferably using two sides anode protuberance differing distribution half period.Negative electrode also has
Negative electrode second surface, negative electrode second surface is identical or different with negative electrode first surface shape, it is preferred to use identical structure, negative electrode
Second surface and negative electrode first surface can symmetrically can also be asymmetric, it is preferred to use asymmetric structure, more preferably use
The differing distribution half period of the negative electrode protuberance on two sides.
In the second preferred embodiment of the invention, electrode structure as shown in figure 4, it includes anode 10 and negative electrode 20,
Wherein, anode 1 has back to the first anode face 11 and second plate face 12 for setting, and in the present embodiment, selectes with reference to seat
The positive direction of graticule, refers to a positive direction for the normal direction point coordinates line in face, the normal side in another face back to setting
To the negative direction of point coordinates line.Equally, negative electrode 2 has back to the first cathode plane 21 and the second cathode plane 22 for setting.Such as Fig. 4
Shown, first anode face 11 is oppositely arranged with the first cathode plane 21.
Also include at least one anode protuberance on first anode face 11, the anode protuberance is by being mutually perpendicular to or approaching
Vertical anode leader 13 is constituted with anode extension portion 14, and in the present embodiment, close is vertically because preparation technology is deposited
Cause in error.Anode extension portion 14 is being more than coupled anode with the size L1 in the vertical direction of anode leader 13
The size P1 in this direction of lead division 13, anode protuberance both sides are anode sky septal area, when anode protuberance more than two,
It is anode sky septal area between adjacent two anodes protuberance.
Also include at least one negative electrode protuberance on first cathode plane 21, the negative electrode protuberance is by being mutually perpendicular to or approaching
Vertical negative electrode lead division 23 is constituted with extended cathode portion 24, extended cathode portion 24 with the vertical direction of negative electrode lead division 23 on
Size is more than coupled negative electrode lead division 23 size in this direction, and negative electrode protuberance both sides are anode sky septal area, when
It is negative electrode sky septal area during negative electrode protuberance more than two, between adjacent two negative electrodes protuberance.
In the present embodiment, in the negative electrode sky septal area that anode protuberance is deep into corresponding thereto and with negative electrode protuberance not
It is in contact, in the anode sky septal area that negative electrode protuberance is deep into corresponding thereto and is not in contact with anode protuberance.
Structure by setting anode and negative electrode of the invention, improves the electrophoretic force that particle is subject in the electric field, can be right
The particulate matter that lung can be entered is effectively filtered out.
In the present embodiment, anode protuberance is in first anode face periodic distribution.Negative electrode protuberance is in the first negative electrode
Face periodic distribution.In a more preferred implementation method of the invention, distribution of the anode protuberance in first anode face
Cycle is identical in the distribution period of the first cathode plane with negative electrode protuberance.So as to reduce the complexity of structure, it is more easy to prepare.
In the present embodiment, anode leader 13 can be any moulding, be specifically as follows but be not limited to cuboid, just
Move the geometry for being formed in cube, spheroid or spheroid, or the face for being formed that joined end to end by limited bar straightway and/or curved section
Body.Negative electrode lead division 23 can also be any moulding, be specifically as follows but be not limited to cuboid, square, spheroid or ellipsoid
Move the solid for being formed in body, or the face for being formed that joined end to end by limited bar straightway and/or curved section.
In the present embodiment, anode extension portion 14 can be any moulding, be specifically as follows but be not limited to cuboid, just
Move the geometry for being formed in cube, spheroid or spheroid, or the face for being formed that joined end to end by limited bar straightway and/or curved section
Body.Extended cathode portion 24 is cuboid, square, spheroid or spheroid, or by limited bar straightway and/or curved section from beginning to end
Move the solid to be formed in the face being connected to form.Various moulding provide multiple choices to prepare.
In the present embodiment, anode has second plate face 12, second plate face 12 and the shape phase of first anode face 11
It is same or different, it is preferred to use identical structure, second plate face 12 is symmetrical with first anode face 11 or asymmetric, it is preferred to use
Symmetric design.
Negative electrode has the second cathode plane 22, and the second cathode plane 22 is identical or different with the shape of the first cathode plane 21, preferably adopts
Identical structure is used, the second cathode plane 22 is symmetrical or asymmetric with the first cathode plane 21, it is preferred to use symmetric design.
Preferably, anode extension portion is L1, extended cathode portion edge along the full-size perpendicular to the direction of anode leader
Full-size perpendicular to the direction of negative electrode lead division is L2, and anode extension portion is more than 0 and less than or equal to 10* with the distance of negative electrode
L3, L1 are positive number, and L2 is positive number, and L3 is the greater in L1 and L2, and L1=m*L2, m are positive number.Guarantee has sufficiently large electrophoresis
Power.Preferably, L1=L2.So that preparing simpler.P1 and L1, L2 are micron to millimeter magnitude.
In the 3rd preferred embodiment of the invention, electrode structure as shown in figure 5, it includes anode 1 and negative electrode 2, its
In, anode 1 has back to the first anode face 11 and second plate face 12 for setting, and in the present embodiment, selectes reference coordinate
The positive direction of line, refers to a positive direction for the normal direction point coordinates line in face, the normal direction in another face back to setting
The negative direction of point coordinates line.Equally, negative electrode 2 has back to the first cathode plane 21 and the second cathode plane 22 for setting.Such as Fig. 5 institutes
Show, first anode face 11 is oppositely arranged with the first cathode plane 21.
Also include at least one anode protuberance 15, on section, i.e., face shown in Fig. 4, in width on first anode face
On direction, the size of the widest part of anode protuberance 15 is K, and in the longitudinal direction, the size of the most strong point of anode protuberance 15 is degree α
× K1, wherein, K1, α are positive number, and the both sides of anode protuberance 15 are anode sky septal area near the region in first anode face, work as sun
It is anode sky septal area during 15 more than two of protuberance of pole, between adjacent two anodes protuberance 15.
Also include at least one negative electrode protuberance 25, on section, i.e., face shown in Fig. 4, in width on first cathode plane
On direction, the size of the widest part of negative electrode protuberance 14 is K2, and in the longitudinal direction, the size of negative electrode protuberance most strong point is degree β
× K2, wherein, K2, β are positive number, and the both sides of negative electrode protuberance 25 are negative electrode sky septal area near the region of the first cathode plane, work as negative electrode
It is anode sky septal area during 25 more than two of protuberance, between adjacent two negative electrodes protuberance 25.
In the negative electrode sky septal area that anode protuberance 15 is deep into corresponding thereto and it is not in contact with negative electrode, negative electrode protuberance depth
Enter in anode sky septal area corresponding thereto and be not in contact with anode protuberance, anode protuberance is overlapped with negative electrode protuberance
Length thereof K3 meets 0 < K3≤2 × K4, wherein, K4 is the greater in K1 and K2.
Structure by setting anode and negative electrode of the invention, improves the electrophoretic force that particle is subject in the electric field, can be right
The particulate matter that lung can be entered is effectively filtered out.
In the present embodiment, in the periodic distribution of first anode face 11, negative electrode protuberance 25 is for anode protuberance 15
The periodic distribution of one cathode plane 21.In the more preferred implementation method of the present invention, anode protuberance 15 is in first anode face 11
Distribution period it is identical in the distribution period of the first cathode plane 21 with negative electrode protuberance 25.So as to reduce the complexity of structure, more
Easily prepare.
In the present embodiment, K1=K2,1 < α≤4,1 < β≤4, anode and negative electrode at intervals of more than 0 and less than etc.
In 4 × K4.It is further preferred that α=β=2.It is further preferred that K3=K4.
In the present embodiment, K1 and K2 is micron to millimeter magnitude.
So as to ensure the electrophoretic force that particle is subject in the electric field, the particulate matter that pair can enter lung is effectively filtered out.
In the present embodiment, anode protuberance 15 is cuboid, square, spheroid or spheroid, or by limited bar
Straightway and/or the curved section mobile solid for being formed after joining end to end.Negative electrode protuberance 25 is cuboid, square, spheroid
Or spheroid, or the solid that movement is formed after being joined end to end by limited bar straightway and/or curved section.Various moulding are system
It is standby to provide multiple choices.
Preferably, the anode protuberance and negative electrode protuberance are cube.This structure preparation process is simple, and improve
The electrophoretic force that particle is subject in the electric field, the particulate matter that pair can enter lung is effectively filtered out.
In the present embodiment, anode has second plate face 12, second plate face 12 and the shape phase of first anode face 11
Same or different, in the other preferred embodiment of the present invention, second plate face 12 differs with the shape of first anode face 11, the
Two anode surfaces 12 are symmetrical with first anode face 11 or asymmetric, it is preferred to use symmetric design.
Negative electrode has the second cathode plane 22, and the second cathode plane 22 is identical or different with the shape of the first cathode plane 21, preferably adopts
Identical structure is used, the second cathode plane 22 is symmetrical or asymmetric with the first cathode plane 21, it is preferred to use symmetric design.
It should be noted that DEP purifying electric pole plates are non-conductive in itself, anode part and cathode portion are respectively at power supply thereon
Anode is connected with negative electrode.
It should be noted that the voltage magnitude and frequency in the present invention not to positive source and power cathode are limited
It is fixed, can specifically be selected using the system of selection of the amplitude and frequency that generally use in the prior art, do not do excessive herein
Repeat.
Although also, it should be noted that being only referred to dedusting, art technology in background technology of the invention
Personnel it is not intended that this is limitation of the present invention, in other technologies field, such as bio-separation field, the huge sum of money in liquid
Category isolation technics, and soil sanitation field, as long as using the electrode structure of identical with the present invention or obvious deformation, still in this hair
Within bright protection domain.
In the description of this specification, reference term " one embodiment ", " some embodiments ", " example ", " specifically show
The description of example " or " some examples " etc. means to combine specific features, structure, material or spy that the embodiment or example are described
Point is contained at least one embodiment of the invention or example.In this manual, to the schematic representation of above-mentioned term not
Necessarily refer to identical embodiment or example.And, the specific features of description, structure, material or feature can be any
One or more embodiments or example in combine in an appropriate manner.
Although an embodiment of the present invention has been shown and described, it will be understood by those skilled in the art that:Not
Can these embodiments be carried out with various changes, modification, replacement and modification in the case of departing from principle of the invention and objective, this
The scope of invention is limited by claim and its equivalent.
Claims (13)
1. a kind of DEP automobile tail gas purification systems, it is characterised in that turn including inlet cylinder, gas outlet, at least one three-element catalytic
Change device, also including DEP purifying processors, the DEP purifying processors include the housing with air inlet and gas outlet, the shell
Also there is cleaning door on body, the case inside is provided with bindiny mechanism, the detachably connected M blocks DEP of bindiny mechanism
Purifying electric pole plate, the M blocks DEP purifying electric pole plates are the hollow tubular of concentric suit and are not in contact with each other, the DEP purged electrodes
The one side of plate or inside and outside two sides are laid with DEP purified treatment electrodes, the DEP purified treatments electrode include anode part and
Cathode portion, the anode part and cathode portion are interspersed, and the anode part is repeated to form by anodic cycle, described
Cathode portion is repeated to form by cathode deposition period, and an anode and a negative electrode constitute a DEP electrode structure, and the M is for just
Integer;
The DEP electrode structures are using one of following three kinds of structures:
Structure one:The DEP electrode structures include anode and negative electrode, and the anode has anode first surface, the negative electrode tool
There is negative electrode first surface, the anode first surface is oppositely arranged with negative electrode first surface, the anode first surface has extremely
A few anode protuberance, the top of the anode protuberance protrudes from the non-protruding of the coupled anode first surface
Portion part, when anode protuberance is more than 2, the anode first surface region between two adjacent anode protuberance tops does not exist
In one plane and section is non-rectangle, the negative electrode first surface has at least one negative electrode protuberance, and the negative electrode is protruded
The top in portion protrudes from the non-projecting portion part of the coupled negative electrode first surface, when negative electrode protuberance is more than 2
When, negative electrode first surface region between two neighbouring cathode protuberance tops is not in one plane and section is non-rectangle, institute
State anode protuberance top and just pair be most recessed with the negative electrode first surface region between its two closest negative electrode protuberance
Part;The negative electrode protuberance top just pair and the anode first surface region between its two closest anode protuberance most
The part of depression;
Structure two:The DEP electrode structures include anode and negative electrode, and the anode has back to the first anode face for setting and the
Two anode surfaces, the negative electrode has back to the first cathode plane and the second cathode plane for setting, and the first anode face is cloudy with first
Pole-face is oppositely arranged, and at least one anode protuberance is also included on the first anode face, and the anode protuberance is by mutually hanging down
Straight anode leader is constituted with anode extension portion, anode extension portion with anode leader vertical direction on size be more than with
Its connected anode leader size in this direction, anode protuberance both sides are anode sky septal area;
Also include at least one negative electrode protuberance on first cathode plane, the negative electrode protuberance is drawn by orthogonal negative electrode
Go out portion to be constituted with extended cathode portion, extended cathode portion is being more than coupled the moon with the size in negative electrode lead division vertical direction
Pole lead division size in this direction, negative electrode protuberance both sides are negative electrode sky septal area;
In the negative electrode sky septal area that the anode protuberance is deep into corresponding thereto and it is not in contact with negative electrode protuberance, the negative electrode
In the anode sky septal area that protuberance is deep into corresponding thereto and it is not in contact with anode protuberance;
Structure three:The DEP electrode structures include anode and negative electrode, and the anode has back to the first anode face for setting and the
Two anode surfaces, the negative electrode has back to the first cathode plane and the second cathode plane for setting, and the first anode face is cloudy with first
Pole-face is oppositely arranged;
Also include at least one anode protuberance on the first anode face, on section, protruded in anode described in width
The size of portion's the widest part is K1, is degree α × K1 in the size of anode protuberance most strong point described in length direction, and described K1, α are just
Number, the anode protuberance both sides are anode sky septal area near the region in first anode face;
Also include at least one negative electrode protuberance on first cathode plane, on section, protruded in negative electrode described in width
The size of portion's the widest part is K2, is degree β × K2 in the size of negative electrode protuberance most strong point described in length direction, and described K2, β are just
Number, the negative electrode protuberance both sides are negative electrode sky septal area, 1 < α≤4,1 < β≤4 near the region of the first cathode plane;
In the negative electrode sky septal area that the anode protuberance is deep into corresponding thereto and it is not in contact with negative electrode, the negative electrode protuberance
It is deep into anode sky septal area corresponding thereto and is not in contact with anode, the anode protuberance is overlapped with negative electrode protuberance
Length thereof K3 meets 0 < K3≤2 × K4, wherein, K4 is the greater in K1 and K2.
2. DEP automobile tail gas purification systems as claimed in claim 1, it is characterised in that when the DEP electrode structures are using tying
Structure for the moment, the anode first surface region cambered surface to be formed for curved section is moved between the two adjacent anodes protuberance top,
Or the cambered surface that is formed of movement after being connected by straightway, or the cambered surface for being formed is moved after being connected with curved section by straightway;
The negative electrode first surface region cambered surface to be formed for curved section is moved between the two neighbouring cathodes protuberance top, or by
Straightway is connected the mobile cambered surface for being formed, or is connected with curved section the cambered surface that movement formed by straightway;
The distance of the two adjacent anodes protuberance is S1, and the distance of the two neighbouring cathodes protuberance is S2, the negative electrode with
More than 0 and less than or equal to 10*S3, described S1, S2 are positive number to the distance of anode, and the S3 is the greater in S1 and S2.
3. DEP automobile tail gas purification systems as claimed in claim 2, it is characterised in that the two adjacent anodes protuberance top
Anode first surface region between end is cylinder or ellipsoid;Negative electrode first between the two neighbouring cathodes protuberance top
Surface region is cylinder or ellipsoid.
4. DEP automobile tail gas purification systems as claimed in claim 3, it is characterised in that the two adjacent anodes protuberance top
Anode first surface region between end is sphere;Negative electrode first surface region between the two neighbouring cathodes protuberance top
It is sphere.
5. DEP automobile tail gas purification systems as claimed in claim 1, it is characterised in that when the DEP electrode structures are using tying
During structure two, the mobile solid for being formed after the anode leader is limited bar straightway and/or curved section joins end to end;It is described
The mobile solid for being formed after negative electrode lead division is limited bar straightway and/or curved section joins end to end;
The mobile solid for being formed after the anode extension portion is limited bar straightway and/or curved section joins end to end;Described the moon
The mobile solid for being formed after pole extension is limited bar straightway and/or curved section joins end to end;
The anode extension portion is L1 along the full-size perpendicular to the direction of anode leader, and the extended cathode portion is along vertical
Full-size in the direction of negative electrode lead division is L2, and the anode extension portion is more than 0 and less than or equal to 10* with the distance of negative electrode
L3, the L1 are positive number, and the L2 is positive number, and the L3 is the greater in L1 and L2, and the L1=m*L2, the m are for just
Number.
6. DEP automobile tail gas purification systems as claimed in claim 5, it is characterised in that the anode leader is cuboid
Or spheroid;The negative electrode lead division is cuboid or spheroid;The anode extension portion is cuboid or spheroid;Described the moon
Pole extension is cuboid or spheroid.
7. DEP automobile tail gas purification systems as claimed in claim 6, it is characterised in that the anode leader is square
Or spheroid;The negative electrode lead division is square or spheroid;The anode extension portion is square or spheroid;The extended cathode
Portion is square or spheroid.
8. DEP automobile tail gas purification systems as claimed in claim 1, it is characterised in that when the DEP electrode structures are using tying
During structure three, the K1=K2;
The anode is with negative electrode at intervals of more than 0 and less than or equal to 4 × K4;
The mobile solid for being formed after the anode protuberance is limited bar straightway and/or curved section joins end to end;Described the moon
The mobile solid for being formed after pole protuberance is limited bar straightway and/or curved section joins end to end.
9. DEP automobile tail gas purification systems as claimed in claim 8, it is characterised in that the anode protuberance is cuboid
Or spheroid;The negative electrode protuberance is cuboid or spheroid.
10. DEP automobile tail gas purification systems as claimed in claim 9, it is characterised in that the anode protuberance is square
Or spheroid;The negative electrode protuberance is square or spheroid.
11. DEP automobile tail gas purification systems as claimed in claim 1, it is characterised in that when the DEP electrode structures are used
When structure two or structure three, the anode has second plate face, the second plate face and the first anode face shape phase
Same or different, the second plate face is symmetrical or asymmetric with the first anode face;The negative electrode has the second cathode plane,
Second cathode plane is identical or different with the first cathode plane shape, second cathode plane and first cathode plane pair
Claim or asymmetric.
12. DEP automobile tail gas purification systems as claimed in claim 1, it is characterised in that adjacent two DEP purifying electrics pole plate phase
Each anode part on opposite and a cathode portion are just pair or tiltedly right;
The DEP electrode structure distribution periods of adjacent two DEP purifying electrics pole plate opposite face are identical, and DEP purifying electrics pole plate is different relative
DEP electrode structure distribution periods between face are identical or differ.
13. DEP automobile tail gas purification systems as claimed in claim 1, it is characterised in that
, perpendicular to the outgassing direction of DEP purifying electric pole plates, the cleaning door passes through Valve controlling for plane where the cleaning door
Close and open;
The bindiny mechanism is vertical with airintake direction, has through hole in the bindiny mechanism, is provided with the bindiny mechanism same
The draw-in groove of heart annular distribution, is distributed with least two interrupted draw-in grooves on each ring, M blocks DEP is net described in the draw-in groove clamping
Polarizing electrode plate;
Or the bindiny mechanism is that the case inside is provided with bar-like support thing, is set on the M blocks DEP purifying electric pole plates
The through hole matched with the bar-like support thing size is equipped with, the DEP purifying electrics pole plate is sleeved on the bar-like support thing successively
It is relatively fixed above and with the bar-like support thing.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201410422896.2A CN104196595B (en) | 2014-08-22 | 2014-08-22 | DEP automobile exhaust purification system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201410422896.2A CN104196595B (en) | 2014-08-22 | 2014-08-22 | DEP automobile exhaust purification system |
Publications (2)
Publication Number | Publication Date |
---|---|
CN104196595A CN104196595A (en) | 2014-12-10 |
CN104196595B true CN104196595B (en) | 2017-05-24 |
Family
ID=52081942
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201410422896.2A Expired - Fee Related CN104196595B (en) | 2014-08-22 | 2014-08-22 | DEP automobile exhaust purification system |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN104196595B (en) |
Families Citing this family (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108150246A (en) * | 2017-12-30 | 2018-06-12 | 佛山市顺智环保科技有限公司 | A kind of automobile exhaust gas processing apparatus |
US20220250087A1 (en) * | 2018-10-22 | 2022-08-11 | Shanghai Bixiufu Enterprise Management Co., Ltd. | Engine exhaust dust removing system and method |
Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
TW200503824A (en) * | 2003-05-13 | 2005-02-01 | Aura Biosystems Inc | Dielectrophoretic apparatus |
US7198702B1 (en) * | 1999-09-30 | 2007-04-03 | Wako Pure Chemical Industries, Ltd. | Method for separating substances using dielectrophoretic forces |
CN103485864A (en) * | 2013-10-09 | 2014-01-01 | 内蒙古上派环境科技有限公司 | Dielectrophoresis automobile exhaust dust remover |
CN203515736U (en) * | 2013-10-09 | 2014-04-02 | 内蒙古上派环境科技有限公司 | Dielectrophoresis vehicle exhaust dust removal assembly |
CN204225960U (en) * | 2014-08-22 | 2015-03-25 | 成都代代吉前瞻科技股份有限公司 | A kind of novel DEP automobile tail gas purification system |
-
2014
- 2014-08-22 CN CN201410422896.2A patent/CN104196595B/en not_active Expired - Fee Related
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US7198702B1 (en) * | 1999-09-30 | 2007-04-03 | Wako Pure Chemical Industries, Ltd. | Method for separating substances using dielectrophoretic forces |
TW200503824A (en) * | 2003-05-13 | 2005-02-01 | Aura Biosystems Inc | Dielectrophoretic apparatus |
CN103485864A (en) * | 2013-10-09 | 2014-01-01 | 内蒙古上派环境科技有限公司 | Dielectrophoresis automobile exhaust dust remover |
CN203515736U (en) * | 2013-10-09 | 2014-04-02 | 内蒙古上派环境科技有限公司 | Dielectrophoresis vehicle exhaust dust removal assembly |
CN204225960U (en) * | 2014-08-22 | 2015-03-25 | 成都代代吉前瞻科技股份有限公司 | A kind of novel DEP automobile tail gas purification system |
Also Published As
Publication number | Publication date |
---|---|
CN104196595A (en) | 2014-12-10 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN104196595B (en) | DEP automobile exhaust purification system | |
CN104259000B (en) | Dielectrophoresis purification treatment device | |
CN104165079B (en) | A kind of automobile tail gas purification system | |
CN104165417B (en) | A kind of efficient DEP air cleaning systems | |
CN204122238U (en) | A kind of dielectrophoresis air purifier | |
CN104148179B (en) | Efficient DEP purification treatment unit | |
CN104174494B (en) | Dielectrophoresis air purifier | |
CN204126695U (en) | A kind of automobile tail gas purification system | |
CN204152597U (en) | A kind of new and effective dielectrophoresis automobile tail gas purification system | |
CN104179551B (en) | Dielectrophoresis automotive exhaust purification system | |
CN104190195B (en) | DEP air purifier | |
CN204225960U (en) | A kind of novel DEP automobile tail gas purification system | |
CN204219965U (en) | A kind of novel DEP air purifier | |
CN104174489B (en) | Air purifier for filtering out respirable particulate matters | |
CN104148180B (en) | A kind of efficient dielectrophoresis clean unit | |
CN104190537B (en) | A kind of DEP purifying treating units | |
CN204121923U (en) | A kind of deduster of effective filtering pellet | |
CN204152605U (en) | A kind of novel DEP exhaust purifier | |
CN104190194B (en) | A kind of interior or interior DEP air purifier | |
CN204121921U (en) | A kind of electrostatic-dielectrophoresis deduster | |
CN104174492B (en) | A kind of high efficiency electrostatic dielectrophoresises cleaner unit | |
CN204147718U (en) | A kind of high-efficient filter is except the air purifier that can enter lung particle | |
CN204147992U (en) | New and effective deduster | |
CN204147983U (en) | Effective filtering can enter the deduster of lung particle | |
CN204122240U (en) | A kind of efficient DEP purifying treating unit |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
C06 | Publication | ||
PB01 | Publication | ||
C10 | Entry into substantive examination | ||
SE01 | Entry into force of request for substantive examination | ||
GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20170524 Termination date: 20200822 |
|
CF01 | Termination of patent right due to non-payment of annual fee |