[0001] This invention concerns an electric filter, more precisely an electric filter by
means of which it is possible to remove particles and harmful substances from combustion
gases. The purpose is especially, but certainly not exclusively, to remove the mentioned
harmful substances from combustion gases generated by small scale burning.
[0002] Electrostatic precipitation is a principle, well-known as such, based on the use
of high voltage potential. The gases to be purified are conducted to a high voltage
electric field, where the small particles in the gases are charged according to certain
laws and adhere to the collecting surfaces. The accumulated material is removed from
the surfaces in an appropriate manner.
[0003] Because electric filters are used for various kinds of purification tasks, their
structures also vary considerably. A great number of filter structures is known, consisting
of separate units to which the combustion gases are conducted for purification and
from which the purified gas is conducted out, while the recovered harmful material
is separately removed from the system.
[0004] There are numerous problems in electric filtration and inventions have consequently
been made to solve them. One significant problem is related to the high voltage used,
which is often of the order of several tens of kilovolts. The high voltage easily
causes breakthroughs, especially when the plant is fouled, since soot and similar
impurities are known to be conductive materials.
[0005] A second problem is the size of the plant, which has an influence on the price. If
the intention is to make a separate electric filter device, which is not directly
related to regular flues, its price and usually also its size rises to considerable
dimensions.
[0006] A third problem is how to remove accumulated material from the device. For this purpose,
various kinds of vibrators and shakers have been used. Their effect is however quite
modest and their implementation is troublesome, requiring relatively complicated and
also expensive devices. It is also problematic that the detached scale tends to be
caught again by the flow in the chimney/equipment, so that in principle there is not
much benefit from the purification.
[0007] Also various scrapers and brushes for stripping the accumulated deposits from the
walls of the duct are known. Their functionality and their placement so that this
part of the apparatus does not disturb other operations are often defective.
[0008] In patent application publication No.
EP 0 995 494 is disclosed an electrostatic air filtering device comprising an array of a plurality
of electrically charged plates, spaced coaxially apart about a central discharge rod,
to allow a flow of air.
[0009] The purpose of this invention is to provide a well-functioning electric filter that
can be easily installed also as a retrofit into an existing chimney and provides easy
collection and removal of scale. The aim is also a compact and affordable solution.
Furthermore the invention aims at a reliable construction, which retains its good
purification capacity and which, if the need arises, can easily be automatized.
[0010] The above-mentioned and other benefits and advantages of the present invention are
achieved in the manner described as characteristic in the accompanying claims.
[0011] In the following, the invention is described in further detail with reference to
the accompanying drawings, which depict beneficial and well-regarded embodiments of
the invention.
FIG. 1 is as an axonometric drawing of one embodiment of the device according to the
invention;
FIG. 2 shows the structure in Figure 1 as viewed straight from above;
FIG. 3 shows a vertical section of the device according to the invention in side view;
and
FIG. 4 shows a section as in Figure 3, now, however, seen diagonally from above.
[0012] The embodiment of Figure 1 is described in the following. The chimney, from which
the combustion gases to be purified are discharged, is not at all shown in the drawings.
However, the basic arrangement of the device according to the invention is such, that
the device is placed and fastened at the top of an existing chimney, so that the combustion
gases discharging from the flue pass through the collecting duct in the device according
to the invention. As regards the invention, the type of chimney is not relevant. The
chimney can be a conventional construction made of bricks and equipped with a smoke
flue or e.g. a prefabricated metal chimney.
[0013] Fig. 1 shows as an example a kind of bottom plate 2 to assist in the fastening. In
fact, any manner or means that is suitable for the actual conditions can be used for
fastening. If needed, sealing between the flue and the filter can be carried out using
conventional methods.
[0014] From the figures 1 and 2 can be concluded that the cross section of the device 1
according to the invention is essentially circular so that an essentially annular
flow conduit 5 is formed between the outer jacket 3 and the inner jacket 4, through
which conduit the combustion gases from the flue flow. From the detailed description
it can, however, easily be concluded that the circular cross section is in no way
obligatory. It is fully possible to design the device for example in the shape of
a rectangle.
[0015] As in electric filters in general, a high voltage electric field is also in this
device used to collect impurities from combustion gases. So the essentially tubular
inner jacket 4, which can be seen in the middle in the figures, is negatively charged,
as well as the outer jacket 3 of the device, while several positively charged electrode
rods 6 are situated in the ringshaped conduit 5, eight units in this embodiment. It
is, however, clear that it is also possible to use other shapes instead of the rod-
shaped electrode structure, such as plate-shaped electrodes, when taken into account
as required in the other details within the invention.
[0016] Because of the two negative surfaces, the electric filter according to the invention
has a large collecting surface area, although the flow path is short. For this reason,
the collecting is effective.
[0017] The negatively charged parts 3 and 4 are interconnected in a suitable manner, for
example utilizing structures which also support other parts. In figure 1 these are
marked with reference numerals 7 and 8. The positively charged electrodes 6 are fastened
to the supporting structure 9, which in this embodiment is annular and, since it is
used for current supply, it is supported to the outer structures in an insulated manner
with the use of suitable connection means 10. Voltage is supplied to a suitable point
in these connection parts from a high voltage source provided in connection with the
device, not drawn in the figures. A control unit can also be provided in connection
with the device for controlling the functions of the electric filter.
[0018] A notable thing regarding the invention is the fact that the current is supplied
through structures that are insulated from the surroundings and from other structures
in a location that is not in contact with combustion gases. Thus, breakthroughs caused
by soot accumulation are avoided and in this respect the device remains in full working
order throughout its service life. For the sake of example, insulation provided on
the outer surface of the device is marked with reference numeral 18.
[0019] Thus, combustion gases from the flue travel to the conduit 5 of the device 1 where
the impurities of the gases accumulate on the walls of the conduit 5, that is on the
inner surface of the outer jacket 3 and on the outer surface of the inner jacket 4.
[0020] In the following, reference is made mainly to the figures 3 and 4 which show the
inner structures of the electric filter according to the invention. Essential as regards
the invention is the removal of the impurities from the collecting surfaces, automatically
if desired, in order to maintain the purifying capacity and to prevent the accumulated
material from causing current leakage through it in an uncontrolled way. For this
purpose, the device according to the invention includes a cleaning mechanism, which
is described in the following.
[0021] In this context it is worth noting that when the collecting/cleaning trough 11, described
below, is in its lower position, it leaves free a flow passage for combustion gases
allowing these to enter the purifying area 5. Therefore the shapes of the flow passage
are smooth and cause as little flow resistance as possible, and if necessary, it is
possible to add various types of flow guiding structures to the device to secure an
appropriate flow of the combustion gases.
[0022] Before the cleaning, the current to the device is naturally switched off. For cleaning,
the embodiment shown comprises a trough 11, which essentially corresponds to the dimensions
of the annular conduit 5. In the embodiment shown, the trough 11 is essentially annular.
The dimensioning of the trough is such, that the upper edges of the trough 11 correspond
quite accurately, or are suitably equipped to correspond to the dimensions of the
conduit so that as the trough 11 moves upwards, the edges simultaneously remove the
accumulated impurities from the inner surface of the outer periphery and from the
outer surface of the inner periphery. The detached impurities fall into the trough
11 for recovery.
[0023] By a trough in the context of the present invention is meant an upwardly opening
component that is suitable for collecting solid matter.
[0024] As mentioned, the accumulated impurities are removed by lifting and lowering the
trough 11. One example of how to accomplish lifting and lowering of the trough is
demonstrated in the figures 3 and 4. The trough 11 is connected with a central rod
12 or similar. For the movement of this rod is provided in the inner shell 4 a longitudinal,
in the figure vertical, groove or slit 13 on two opposite sides, to make possible
the up and down movement of the rod along the said slits 13.
[0025] The up and down movement of the trough 11 can be supported and controlled, if necessary,
with means supported to the inner surface of the inner jacket 4, which means can be
of any kind, shaped e.g. as bars or rings, as required. However, the trough 11 retains
its own position automatically also during raising and lowering.
[0026] One solution, which appears reasonable, for raising and lowering of the trough and
the structures connected to it, is demonstrated in the figures. Thus, the small electric
motor 15 that winds the lift cable 16 or lift chain or similar connected to lifting
structures 12, is fully adequate for this purpose. The lowering can also, if desired,
be secured by arranging the same motor to wind also the wire that secures the lowering,
naturally in the direction opposite to that of the lifting wire. Technically this
is possible, for example, by placing a support wheel in the area below the trough
11, via which wheel the wire assisting the lowering operation runs to the trough structures.
There are, however, numerous suitable mechanisms, of which the use of mechanic racks
to effect up and down motion of the trough may be mentioned as particularly preferable.
[0027] According to the best embodiment of the invention, the apparatus is equipped with
a control unit that can be programmed to perform the cleaning, in other words the
raising and lowering of the trough 11, automatically in a desired cycle. The unit
can perform various kinds of measurements, on the basis of which is determined when
cleaning is required or possible. The automation can also take care of measures that
are related to removal of deposits from the trough 11. In case the use of automatic
operation is not wanted or feasible, the functions can also be controlled as required
by remote control.
[0028] Various sensors can be connected to control the automation, in particular a sensor
measuring temperature and providing information on the combustion process and of its
termination. With the same temperature sensor can also be determined when it is reasonable
to switch on or off the current supply to the electric filter. The level of the voltage
can also be controlled automatically, for instance by reducing the voltage if breakthroughs
are anticipated.
[0029] One thing related to raising and lowering is the location of the electrodes 6 in
the conduit 5. As the raising of the trough is started, the electrodes would prevent
the trough from rising when it has reached the ends of the electrodes 6. According
to the invention, this is solved so that for each of the electrodes 6, in the bottom
of the trough 11 there is a hole equipped with a collar into which the electrode is
guided as the trough rises. The collar secures that the waste collecting on the bottom
of the trough does not flow through the holes down into the chimney. The collar 17
can also be utilized for cleaning the electrodes by making the fitting tight enough
or by equipping it with a suitable scraping ring whereby the electrode passing the
collar is automatically cleaned.
[0030] The accumulated scale can be removed from the trough 11 as need arises. This can
for example be done by a chimney sweeper during his regular duties. Yet, it is possible
to arrange the removal in an easier way. One possible, easier alternative to remove
the accumulated scale is to remove it by suction. It is possible to attach to the
upper structures of the device a suction tube that extends to the trough 11 when it
is in its upper position. The vacuum device itself can be situated anywhere. The vacuum
device can start automatically when the trough reaches its upper position or it can
be started manually. If required, it is possible to use a separate vacuum cleaner
used for other purposes which is connected to the suction pipe only if need arises.
For effective cleaning of the trough from every side, the suction pipe can be shaped
so that it reaches the whole area of the trough perimeter, or a desired number of
nozzles can be connected to the suction tube.
[0031] The lifting mechanism of the trough 11 can be located except inside the inner jacket
4 also in the flue 5. In that case the mechanism would optimally be of such a type
that it would be made operational only for the time of the cleaning, and would otherwise
be moved aside, so as not to disturb the electric filtration.
[0032] It is clear that the technical details and those relating to the external appearance
of the electric filter according to the invention are dependent on authority regulations
as well as on the practical circumstances of the place of installation, and thus can
vary considerably relative to the above disclosure, but still stay within the basic
idea of the invention and the scope of the enclosed patent claims.
[0033] If desired, it is possible to add cover structures to trough 11 to secure that the
accumulated scale is not carried off by the flow of combustion gas. When the cleaning
operation starts and the trough begins to move upwards, the above-mentioned cover
structures open whereupon the deposits can fall into the trough. The structure can,
for instance, be plate-shaped and hinged. The opening can be caused by the influence
of motion or in some other way.
[0034] All in all, the solution above is simple, reliable and advantageous and can be connected
to a combustion gas system at any stage. Apart from initial installation, retrofitting
is also easy. Due to the small size of the device, it is also easy to disassemble
from its place of installation and remove temporarily for sweeping or repair. Installation
using hinges is possible, too. In appearance the device can be made almost inconspicuous,
for instance by covering it with a housing which can be shaped like a chimney cap.
[0035] Several of the functions of the device according to the invention can be automated
and it is also possible to equip it with a control/ monitoring unit, by means of which
the operations can be optimized in many ways.
1. Electric filter (1) to be used for the purification of combustion gases generated
by burning, by means of separation based on a high voltage electric field, said electric
filter (1) comprising a conduit (5) for the combustion gases, in which conduit (5)
are provided electrodes (6) to be positively charged, the walls of the conduit (5)
being formed by an outer jacket (3) and a central inner jacket (4) which are to be
negatively charged, characterized in that said electric filter (1) further includes means for detaching and recovering accumulated
deposits from the walls (3, 4) of the conduit (5), said means being formed as a trough
(11) that can be moved up and down in the conduit (5).
2. Electric filter (1) according to claim 1, characterized by that the electrodes (6) are attached to a support structure (9), to which current
is to be supplied through an isolated (18) conductor (10) fixed to the outside of
the conduit (5).
3. Electric filter (1) according to claim 1, characterized by that there are holes provided with a collar (17) in the trough (11) for electrodes
(6).
4. Electric filter (1) according to claim 1, characterized by that the inner jacket (4) is provided with grooves or slits (13) to enable the motion
of the trough (11) up and down.
5. Electric filter (1) according to any preceding claim, characterized by that it comprises an electric motor (15) and a cable, chain, rod or the like (16)
driven by the motor (15) for raising and lowering the trough (11).
6. Electric filter (1) according to one of the preceding claims, characterized by being provided with a suction pipe for removal from the trough (11) by suction of
the deposits detached during cleaning, in particular when the trough (11) is in a
lifted position.
7. Electric filter (1) according to one of the preceding claims, characterized by that the upper edges of the trough (11) are shaped or equipped for scraping off the
deposits and other impurities accumulated on the inner surface of the outer jacket
(3) and on the outer surface of the inner jacket (4).
8. Electric filter (1) according to one of the preceding claims, characterized by that its outer jacket (3) and inner jacket (4) are circular in cross section, and
that the conduit (5) between them is annular.
9. Electric filter (1) according to one of the preceding claims, characterized by that it is provided with a control unit for automatic cleaning of the device and,
when required, for monitoring of various parameters such as temperature, and for automatically
carrying out desired operations on the basis of measured/observed parameters.
10. Electric filter (1) according to one of the preceding claims, additionally comprising
a hinged and plate shaped cover structure arranged for closing the trough (11), which
cover structure can be opened as required, preferably automatically.
1. Elektrischer Filter (1), zur Benutzung für die Reinigung von Verbrennungsgasen, die
durch Brennen erzeugt werden, mittels Trennung basierend auf einem elektrischen Hochspannungsfeld,
wobei der elektrische Filter (1) einen Kanal (5) für die Verbrennungsgase umfasst,
in welchem Kanal (5) Elektroden (6) bereitgestellt sind, die positiv geladen werden
sollen, wobei die Wände des Kanals (5) von einem äußeren Mantel (3) und einem mittigen
inneren Mantel (4) gebildet werden, die negativ geladen werden sollen,
dadurch gekennzeichnet, dass der elektrische Filter (1) weiter Mittel zum Ablösen und Wiedergewinnen von angesammelten
Ablagerungen von den Wänden (3, 4) des Kanals (5) beinhaltet, wobei das Mittel als
ein Trog (11) gebildet ist, der in dem Kanal (5) auf- und abbewegt werden kann.
2. Elektrischer Filter (1) nach Anspruch 1, dadurch gekennzeichnet, dass die Elektroden (6) an einer Trägerstruktur (9) befestigt sind, an die Strom durch
einen isolierten (18) Leiter (10), der an der Außenseite des Kanals (5) befestigt
ist, zugeführt werden soll.
3. Elektrischer Filter (1) nach Anspruch 1, dadurch gekennzeichnet, dass Löcher mit einem Bund (17) in dem Trog (11) für Elektroden (6) bereitgestellt sind.
4. Elektrischer Filter (1) nach Anspruch 1, dadurch gekennzeichnet, dass der innere Mantel (4) mit Nuten oder Schlitzen (13) bereitgestellt ist, um eine Auf-
und Abbewegung des Trogs (11) zu ermöglichen.
5. Elektrischer Filter (1) nach einem vorstehenden Anspruch, dadurch gekennzeichnet, dass er einen elektrischen Motor (15) umfasst, und ein Kabel, eine Kette, eine Stange
oder dergleichen (16), die von dem Motor (15) angetrieben werden, um den Trog (11)
anzuheben oder abzusenken.
6. Elektrischer Filter (1) nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass er mit einem Saugrohr bereitgestellt ist, zur Entfernung von dem Trog (11) durch
Saugen der Ablagerungen, die während des Reinigens gelöst werden, insbesondere wenn
der Trog (11) in einer angehobenen Stellung ist.
7. Elektrischer Filter (1) nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass die oberen Kanten des Trogs (11) gestaltet oder ausgerüstet sind, um die Ablagerungen
und andere auf der inneren Fläche des äußeren Mantels (3) und auf der äußeren Fläche
des inneren Mantels (4) angesammelte Verunreinigungen abzustreifen.
8. Elektrischer Filter (1) nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass sein äußerer Mantel (3) und sein innerer Mantel (4) kreisförmig im Querschnitt sind,
und dass der Kanal (5) zwischen ihnen ringförmig ist.
9. Elektrischer Filter (1) nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass er mit einer Steuereinheit zum automatischen Reinigen der Vorrichtung bereitgestellt
ist, und, falls erfordert, zum Überwachen verschiedener Parameter wie der Temperatur,
und zum automatischen Durchführen von gewünschten Betrieben basierend auf gemessenen/beobachteten
Parametern.
10. Elektrischer Filter (1) nach einem der vorstehenden Ansprüche, zusätzlich umfassend
eine klappbare und plattenförmige Abdeckungsstruktur, angeordnet zum Schließen des
Trogs (11), wobei die Abdeckungsstruktur nach Bedarf geöffnet werden kann, vorzugsweise
automatisch.
1. Filtre électrique (1) à utiliser pour la purification de gaz de combustion générés
par combustion, au moyen d'une séparation basée sur un champ électrique haute tension,
ledit filtre électrique (1) comprenant un conduit (5) pour les gaz de combustion,
dans ledit conduite (5) étant ménagées des électrodes (6) à charger positivement,
les parois du conduit (5) étant formées d'une enveloppe externe (3) et d'une enveloppe
interne centrale (4) à charger négativement,
caractérisé en ce que ledit filtre électrique (1) comprend en outre des moyens pour détacher et récupérer
des dépôts accumulés sur les parois (3, 4) du conduit (5), lesdits moyens étant sous
la forme d'un bac (11) pouvant être déplacé de haut en bas dans le conduit (5).
2. Filtre électrique (1) selon la revendication 1, caractérisé en ce que les électrodes (6) sont fixées à une structure de support (9), à laquelle du courant
doit être fourni via un conducteur (10) isolé (18) fixé sur l'extérieur du conduit
(5).
3. Filtre électrique (1) selon la revendication 1, caractérisé par le fait qu'il existe des orifices munis d'une collerette (17) dans le bac (11) pour les électrodes
(6).
4. Filtre électrique (1) selon la revendication 1, caractérisé en ce que l'enveloppe interne (4) est munie de rainures ou de fentes (13) pour permettre le
mouvement du bac (11) de haut en bas.
5. Filtre électrique (1) selon l'une quelconque des revendications précédentes, caractérisé en ce qu'il comprend un moteur électrique (15) et un câble, chaîne, tige ou analogue (16) entraîné
par le moteur (15) pour lever et abaisser le bac (11).
6. Filtre électrique (1) selon l'une des revendications précédentes, caractérisé en ce qu'il est muni d'un tuyau d'aspiration pour vider le bac (11) par aspiration des dépôts
détachés lors du nettoyage, notamment lorsque le bac (11) est en une position levée.
7. Filtre électrique (1) selon l'une des revendications précédentes, caractérisé en ce que les bords supérieurs du bac (11) sont conformés ou équipés pour racler les dépôts
et autres impuretés accumulés sur la surface interne de l'enveloppe externe (3) et
sur la surface externe de l'enveloppe interne (4).
8. Filtre électrique (1) selon l'une des revendications précédentes, caractérisé par le fait que son enveloppe externe (3) et son enveloppe interne (4) ont une section transversale
circulaire, et que le conduit (5) entre elles est annulaire.
9. Filtre électrique (1) selon l'une des revendications précédentes, caractérisé en ce qu'il est muni d'une unité de commande pour un nettoyage automatique du dispositif et,
le cas échéant, pour la surveillance de divers paramètres tels que la température,
et pour effectuer automatiquement des opérations souhaitées sur la base des paramètres
mesurés/observés.
10. Filtre électrique (1) selon l'une des revendications précédentes, comprenant en outre
une structure de couvercle articulée et en forme de plaque agencée pour fermer le
bac (11), ladite structure de couvercle pouvant être ouverte selon les besoins, de
préférence automatiquement.