IP Library Granted Patent US 9,458,545
Granted Patent B2
US 9,458,545 · App. 13/522,987 · Granted Oct 4, 2016

Method of ventilating an aluminum production electrolytic cell

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Quick Facts
Patent No.
US 9,458,545
App. No.
13/522,987
Granted
Oct 4, 2016
Kind
B2
Abstract

An aluminium production electrolytic cell ( 4 ) comprises a bath ( 8 ) with bath contents ( 8 a ), at least one cathode electrode ( 10 ) in contact with said contents ( 8 a ), at least one anode electrode ( 6 ) in contact with said contents ( 8 a ), and a hood ( 16 ), defining interior area ( 16 a ), covering at least a portion of said bath ( 8 ). The electrolytic cell ( 4 ) is equipped for vent gases to be drawn from said interior area ( 16 a ). The electrolytic cell ( 4 ) also comprises at least one heat exchanger ( 52 ) for cooling at least a portion of the vent gases drawn from interior area ( 16 a ), prior to circulation thereof to interior area ( 16 a ).

Claims (27)

1. A method of ventilating an aluminium production electrolytic cell comprising a bath with contents, at least one cathode electrode in contact with said contents, at least one anode electrode in contact with said contents, and a hood, defining an interior area covering at least a portion of said bath, the method comprising:

drawing vent gases from said interior area through a cover interior area defined by a double-walled cover of an aluminium oxide feeder with each a crust breaker and a feeder pipe arranged within the cover interior area of the aluminium oxide feeder;

cooling a full flow of vent gases drawn from the interior area using a first heat exchanger to produce cooled vent gases;

drawing a portion of the cooled vent gases;

circulating the drawn portion of the cooled vent gases to a second heat exchanger for further cooling to produce further cooled vent gases; and

circulating at least a portion of the further cooled vent gases to the interior area via a passage formed between double walls of the double-walled cover, for a flow of at least a portion of said further cooled vent gases from between the double walls and into the interior area

to form a curtain of further cooled vent gases around the feeder pipe from

where aluminium oxide powder is supplied to the bath.

2. The method according to claim 1 , further comprising:

circulating 10% to 80% of a total quantity of the vent gases drawn from the interior area back to interior area after cooling at least a portion of the vent gases.

3. A method according to claim 1 , wherein a cooling fluid is first passed through the second heat exchanger, and then passed through the first heat exchanger.

4. A method according to claim 1 , wherein said cooled vent gases or said further cooled vent gases first circulate through a gas treatment unit to remove at least some hydrogen fluoride gas of the vent gases before circulation to the interior area.

5. The method according to claim 1 , wherein at least a portion of said cooled vent gases or said further cooled vent gases is circulated to an upper portion of the interior area.

6. The method according to claim 1 , wherein at least a portion of dust particles entrained by vent gases drawn from the interior area are removed from said vent gases prior to cooling said vent gases.

7. A method of ventilating an aluminium production electrolytic cell comprising a bath with contents, at least one cathode electrode in contact with said contents, at least one anode electrode in contact with said contents, and a hood, defining an interior area covering at least a portion of said bath, the method comprising:

drawing vent gases from said interior area through a cover interior area defined by a double-walled cover of an aluminium oxide feeder with each a crust breaker and a feeder pipe arranged within the cover interior area of the aluminium oxide feeder;

cooling a full flow of vent gases drawn from the interior area using a first heat exchanger to produce cooled vent gases;

drawing a portion of the cooled vent gases;

circulating the drawn portion of the cooled vent gases to a second heat exchanger for further cooling;

further cooling the drawn portion of the cooled vent gases in the second heat exchanger to produce further cooled vent gases according to a desired temperature in the interior area; and

circulating at least a portion of the further cooled vent gases to the interior area via a passage formed between double walls of the double-walled cover, for a flow of

at least a portion of said further cooled vent gases from between the double walls and into the interior area to form a curtain of further cooled vent gases around the feeder pipe from where aluminium oxide powder is supplied to the bath.

8. A method of ventilating an aluminium production electrolytic cell, including a bath with contents, at least one cathode electrode in contact with said contents, at least one anode electrode in contact with said contents, and a hood, defining an interior area covering at least a portion of said bath, the method comprising:

drawing vent gases from said interior area through a cover interior area defined by a double-walled cover of an aluminium oxide feeder with each a crust breaker and a feeder pipe arranged within the cover interior area of the aluminium oxide feeder;

cooling at least a portion of said drawn vent gases to form cooled vent gases; and

circulating at least a portion of said cooled vent gases to the interior area via a passage formed between double walls of the double-walled cover, for a flow of

at least a portion of said cooled vent gases from between the double walls and into the interior area to form a curtain of cooled vent gases around the feeder pipe from where aluminium oxide powder is supplied to the bath.

Assignments (2)
CHANGE OF NAME Recorded Aug 17, 2016
From: ALSTOM TECHNOLOGY LTD
To: GENERAL ELECTRIC TECHNOLOGY GMBH
Reel/Frame 039714/0578 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 10, 2012
From: WEDDE, GEIR
To: ALSTOM TECHNOLOGY LTD
Reel/Frame 029102/0597 →