METHOD AND MEANS FOR APPLICATION OF ANODE COVERING MATERIAL (ACM) IN AN ELECTROLYSIS CELL OF HALL-HEROULT TYPE FOR ALUMINIUM PRODUCTION
20200248327 · 2020-08-06
Assignee
Inventors
- Jostein Magnesen (Årdalstangen, NO)
- Per Johnny Teigen (Øvre Årdal, NO)
- Jan Frode Høines (Sævelandsvik, NO)
- Odd Erik Jacobsen (Sandefjord, NO)
- Are Dyrøy (Porsgrunn, NO)
- Morten Karlsen (Øvre Årdal, NO)
- Juraj Chmelar (Årdalstangen, NO)
Cpc classification
International classification
Abstract
A method and means for application of anode covering material (ACM) in an electrolysis cell for aluminium production where the cell being of Hall-Hroult type with prebaked anodes. The cell contains a cathode pot with a rectangular footprint and a superstructure with a gas collecting hood that lays onto the top of the cathode pot. A floor construction at least substantially surrounds the cell at a level below the top of the cathode pot and ventilation openings provided with grates are arranged in the floor in the close vicinity to the cell. The superstructure's hood is provided with removable lids that are removed for giving access to the cell's anodes through openings. ACM is applied via a feed tube to cover the anodes and the deposit of ACM is supported by a shuttering.
Claims
1. A method for application of anode covering material (ACM) in an electrolysis cell for aluminium production, the cell being of Hall-Hroult type with prebaked anodes (21), the cell comprising a cathode pot with a rectangular footprint and a superstructure with a gas collecting hood that lays onto the top of the cathode pot, and where a floor construction (29) at least substantially surrounds the cell at a level below the top of the cathode pot and where ventilation openings (28) are arranged in the floor (29) in close vicinity of the cell, the superstructure's hood for collecting gas being provided with removable lids (20) that are removed for giving access to the cell's anodes (21) through openings and where ACM is applied via a feed tube (1, 1) to cover the anodes (21), wherein after one or more lid(s) (21) are removed and before the ACM is applied, a shuttering (40) with a shuttering plate (41) is brought into position in the bottom sector of the opening, where at least a part of the shuttering plate is tilted at an angle () towards the anode(s), thus restricting ACM from flowing out of said opening during application of it.
2. A method in accordance with claim 1, wherein the angular position of the shuttering plate (41) affects the angle of repose of the ACM during application.
3. A method in accordance with claim 1, wherein the tilting angle () is between 30 and 60.
4. A method in accordance with claim 1, wherein that the tilting angle () is approximately 45.
5. A method in accordance with claim 1, wherein ventilation openings (28) in the floor (29) adjacent the opening in the superstructure are closed during ACM application.
6. A method in accordance with claim 5, wherein ventilation openings (28) in the floor (29) in the area where the lid(s) (20) are removed are closed by a plate (50) that is arranged to lay onto and cover said openings.
7. A method in accordance with claim 1, wherein an applicator plate (3) is arranged at the feed tube's (1) outlet (2) to guide the positioning of ACM.
8. Means for application of anode covering material (ACM) in an electrolysis cell for aluminium production, the cell being of Hall-Hroult type with prebaked anodes (21), the cell comprising a cathode pot with a rectangular footprint and a superstructure with a gas collecting hood that lays onto the top of the cathode pot, and where a floor construction (29) at least substantially surrounds the cell at a level below the top of the cathode pot and where ventilation openings (28) are arranged in the floor (29) in the close vicinity to the cell, the superstructure's hood being provided with removable lids (20) that can be removed for giving access to the cell's anodes (21) through openings and where ACM is applied via a feed tube (1, 1) to cover the anodes, wherein the means comprises a shuttering (40) with a base portion that rest onto the top of the cathode pot in the bottom sector of the opening, and further having a shuttering plate (41) that is tilted towards the anode(s) (21) at an angle (), thus restricting ACM from flowing out of said opening during application of it.
9. Means in accordance with claim 8, wherein that the tilting angle () is between 30 and 60.
10. Means in accordance with claim 8, wherein that the tilting angle () is approximately 45.
11. Means in accordance with claim 8, wherein that the at the upper portion of the shuttering plate (41) there is swingably attached a flap shuttering plate (46).
12. Means in accordance with claim 8, wherein a horizontal plate (50) that covers ventilation openings (28) in the floor (29) can be attached to the shuttering (40).
13. Means in accordance with claim 8, wherein an applicator plate (3) is arranged close to the outlet (2) of the feed tube (1).
14. Means in accordance with claim 13, wherein the applicator plate (3) is movable relative the outlet (2) of the feed tube (1).
15. Means in accordance with claim 14, wherein the applicator plate (3) is hingedly connected with the feed tube (1).
16. Means in accordance with claim 15, wherein the applicator plate (3) can pivot about an axis mainly horizontal and perpendicular to the axis of the feed tube (1).
17. Means in accordance with claim 14, wherein the applicator plate (3) is moved towards the outlet (2) of the feed tube (1) by means of an actuator (5).
18. Means in accordance with claim 15, wherein the applicator plate (3) is moved towards the outlet (2) of the feed tube (1) by means of an actuator (5).
19. Means in accordance with claim 16, wherein the applicator plate (3) is moved towards the outlet (2) of the feed tube (1) by means of an actuator (5).
Description
[0019] The present invention shall be explained further in examples and Figures where:
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029] In
[0030] In
[0031]
[0032] At a lower part of the shuttering frame 40 there is arranged a swingable or rotable support part 44 that lays onto a support represented by a ventilation grille or louvre at a ventilation opening 28 outside the cell. The support part is swingable about a pivot 45 and may further be fixed or locked (by bolts) in a certain angular position. As a result the shuttering 40 may be turned about the threshold 30. As a consequence, the angle a of the shuttering plate 41 can be predefined in accordance to the desired static angle of repose of the applied ACM. One further advantage by this feature is that the shuttering can be easily adapted to fit various configurations of cell designs and heights of the threshold 30. The angle can for instance be less than 60 and greater than 30, preferably approximately 45.
[0033]
[0034]
[0035]
[0036] The shuttering 40 is disclosed in perspective in
[0037] Thus the handle 43 can be applied by a manipulator arm for instance on a PTM both to bring the shuttering in position in the cell, and also by pushing the handle downwards to fold out the upper shuttering plate.
[0038] The plate 50 that blocks the ventilation openings 28 may be attached to the shuttering 40 at rod 53 by means of brackets or the similar (not shown). Further, plate can be made out of a non-magnetic material. Similarly, the components of the shuttering can preferably be manufactured out of non-magnetic components with a certain heat resistance.
[0039] In
[0040] Further, the applicator plate 3 can be made out of two plate sections 3a and 3b that are hinged together along line 11. The hinge is arranged in a manner where the plate section 3b is allowed to swing inwards towards the outlet 2, but restricted from swinging outwards more than being in planar alignment with plate section 3a. The purpose of this feature is that the applicator plate will become more flexible when manoeuvring it in narrow spaces.
[0041] In
[0042] After the application of ACM has terminated, the shuttering 40 and possibly the cover plate 50 (if applied) are removed and the lid(s) that has been removed is put into place.
[0043] In general, if the applied ACM contain fines, the insulation properties will be good but the rather low angle of repose may cause problems by its application.
[0044] By using the invention, such material can be applied with a high angle of repose, which will represent high energy preservation potential.
[0045] Some ACM production facilities produce ACM with a rather high content of fines. A high content of fines may increase dusting, spillage out of the cell and into the basement, and create a flat angle of repose with poor covering properties or excessive use of ACM material.
[0046] According to the invention, ACM with high content of fines can still be applied to some extent, thus saving investment costs in the ACM production facilities.
[0047] The ACM spillage in the basement can be minimised, hence saving operational costs for cleaning.
[0048] The ACM contribution to dust emissions both inside and outside the plant can be reduced.
[0049] The inhered properties of ACM with a high content of fines are the difference in the static and dynamic angle of repose. The idea is to harvest this difference, and by this also benefit from the good thermal capacity of the fine content.