Fire refining of blister copper
10648060 ยท 2020-05-12
Assignee
Inventors
Cpc classification
International classification
Abstract
Provided herein is a process of fire refining blister copper, comprising the steps of (a) providing molten blister copper into an anode furnace; (b) when sulfur concentration of the molten blister copper provided in step (a) is above a first prescribed target value, oxidizing sulfur in the molten blister copper by blowing oxygen containing gas into the molten blister copper until the first prescribed target value has been reached; (c) subsequently lowering the sulfur and oxygen content in blister copper by blowing inert gas into the molten blister copper until a second prescribed target value has been reached, wherein the inert phase (c) is continued until the second prescribed target value of the oxygen concentration is below 4000 ppm, and the second prescribed target value of the sulfur concentration is below 500 ppm; (d) when certain condition(s) occur, subsequently reducing oxygen in the blister copper; and (e) optionally casting.
Claims
1. A process of fire refining blister copper, comprising the steps of: (a) providing molten blister copper into an anode furnace; (b) oxidizing sulfur in the molten blister copper by blowing oxygen containing gas into the molten blister copper until a first prescribed target value has been reached; (c) subsequently discontinuing blowing of the oxygen containing gas and lowering a sulfur and oxygen content in blister copper by blowing inert gas into the molten blister copper until a second prescribed target value has been reached, wherein an inert phase (c) is continued until the second prescribed target value of an oxygen concentration is below 4000 ppm, and the second prescribed target value of a sulfur concentration is below 500 ppm; (d) subsequently discontinuing blowing of the inert gas and reducing oxygen in the blister copper by supplying a reducing agent into the molten blister copper until a third prescribed target value has been reached and anode copper is obtained; and (e) optionally casting the obtained anode copper.
2. The process as claimed in claim 1, wherein an oxidation phase (b) is continued until the first prescribed target value of the sulfur concentration in the blister copper is from 400 to 1000 ppm.
3. The process as claimed in claim 1, wherein an oxidation phase (b) is continued until the first prescribed target value of the oxygen concentration in the molten blister copper is from 2000 to 5000 ppm.
4. The process as claimed in claim 1, wherein the inert gas is nitrogen.
5. The process as claimed in claim 1, wherein the inert phase (c) is continued until the second prescribed target value of the oxygen concentration is from 1500 to 2500 ppm.
6. The process as claimed in claim 1, wherein the inert phase (c) is continued until the second prescribed target value of the sulfur concentration is below 200 ppm.
7. The process as claimed in claim 1, wherein slag removal is performed at the end of an oxidation phase (b) and/or inert phase (c).
8. The process as claimed in claim 1, wherein a reduction phase (d) is continued until the third prescribed target value of the oxygen concentration is below 3000 ppm.
9. The process as claimed in claim 1, wherein a reduction phase (d) is continued until the third prescribed target value of the sulfur concentration is below 50 ppm.
10. The process as claimed in claim 1, wherein the composition of blister copper is monitored during the fire refining and switching points between phases is determined by: measuring one or more of the parameters selected from the group consisting of sulfur and oxygen concentration from the blister copper, SO.sub.2 concentration from the off-gas line, and optical monitoring of the off-gas composition; comparing measured value(s) of the parameter(s) with a predetermined reference value for the corresponding parameter; and when the predetermined reference value has been reached indicating that a next phase can be started and/or starting the next phase.
11. The process as claimed in claim 1, wherein an oxidation phase (b) is continued until the first prescribed target value of the oxygen concentration in the molten blister copper is from 2100 to 3100 ppm.
12. The process as claimed in claim 1, wherein the inert phase (c) is continued until the second prescribed target value of the oxygen concentration is from 2000 to 2300 ppm.
13. The process as claimed in claim 1, wherein the inert phase (c) is continued until the second prescribed target value of the sulfur concentration is from 75 to 150 ppm.
14. The process as claimed in claim 1, wherein slag removal is performed after the inert phase (c).
15. The process as claimed in claim 1, wherein reduction phase (d) is continued until the third prescribed target value of the oxygen concentration is below 2300 ppm.
16. The process as claimed in claim 1, wherein reduction phase (d) is continued until the third prescribed target value of the oxygen concentration is from 500 to 1500 ppm.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In the following the invention will be described in greater detail by means of preferred embodiments with reference to the attached drawings, in which
(2)
(3)
(4)
DETAILED DESCRIPTION OF THE INVENTION
(5) The present invention provides a process of fire refining blister copper, comprising the steps of:
(6) (a) providing molten blister copper into an anode furnace;
(7) (b) when sulfur concentration of the molten blister copper provided in step (a) is above a first prescribed target value, oxidizing sulfur in the molten blister copper by blowing oxygen containing gas into the molten blister copper until the first prescribed target value has been reached;
(8) (c) subsequently lowering the sulfur and oxygen content of the blister copper by blowing inert gas into the molten blister copper until a second prescribed target value has been reached, wherein the inert phase (c) is continued until the second prescribed target value of the oxygen concentration is below 4000 ppm, and the second prescribed target value of the sulfur concentration is below 500 ppm;
(9) (d) when sulfur and/or oxygen, in particular oxygen, concentration of the molten blister copper obtained in step (c) is above a third prescribed target value, subsequently reducing oxygen in the blister copper by supplying a reducing agent into the molten blister copper until the third prescribed target value has been reached and anode copper is obtained; and
(10) (e) optionally casting the obtained anode copper.
(11) With reference to
(12) In step (b) 20 of the present process oxygen containing gas 21 such as oxygen, oxygen enriched air, or air, is injected into the impure liquid metal, the molten blister copper. The impurities, in particular sulfur, oxidize before the metal and are removed as an oxide slag or a volatile oxide gas.
(13) In this first phase, step (b)oxidation phase 20most of the sulfur contained in the molten blister copper is removed. As a result of direct blister or flash converting process the blister copper usually contains 1000 to 5000 ppm of sulfur. The oxidation phase is continued for a prescribed period of time causing the sulfur concentration in the blister copper to approach a first prescribed target value. As a result of oxidation phase of step (b) 20 the blister copper 2a usually contains at the initiation of inert phase 2000 to 5000 ppm, in particular 2100 to 3100 ppm of dissolved oxygen.
(14) After the oxidation phase, the sulfur concentration of the blister copper 2a is desirably decreased to a target level from 200 ppm to 2000 ppm, preferably from 400 to 1000 ppm sulfur.
(15) When the first prescribed target value of the blister copper 2a has been reached, step (c) of the present process is initiated. At the initiation of step (c) blowing of an inert gas 31, such as argon, steam, nitrogen, or helium, is initiated and the blowing of the oxygen containing gas is discontinued. Preferably the inert gas 31 is nitrogen. Inert gas 31 can be blown into the blister copper using the same equipment as for oxygen containing gas.
(16) In this second phase, step (c)inert phase 30both sulfur and oxygen contained in the molten blister copper are being removed. The inert phase 30 is continued for a prescribed period of time causing the oxygen and sulfur concentration in the blister copper to approach a second prescribed target value. After the inert phase, the oxygen concentration of the blister copper 2b is desirably decreased to a target level below 4000 ppm, typically from 1500 to 2500 ppm, preferably from 2000 to 2300 ppm oxygen. After the inert phase, the sulfur concentration of the blister copper 2b is desirably decreased to a level below 500 ppm, typically below 200 ppm, preferably from 75 to 150 ppm sulfur.
(17) Some slag forms during the oxidation and inert phases and slag removal 50 is typically performed at the end of the oxidation phase (b) and/or inert phase (c), preferably after the inert phase (c). In slag removal the anode furnace 100 is typically rotated about its longitudinal axis so that the slag 51 may be removed through the mouth of the furnace while blister copper 2c is retained in the anode furnace 100.
(18) To obtain blister copper of anode purity 3 step (d) is initiated by introduction of a reducing agent 41 and discontinuation of the blowing of the inert gas 31 as the second prescribed target value has been reached. The reducing agent 41 may be any conventional reducing agent utilized in the reduction phase of conventional fire refining processes including a reducing gas, such as hydrogen, natural gas, a hydrocarbon, liquefied petroleum gas, heavy oil, diesel oil, pulverized coal, carbon monoxide and ammonia, or any mixture thereof. The reducing agent 41 may also be a mixture comprising hydrocarbon and air. As a result the blister copper is deoxygenated.
(19) In the third phase, step (d)reduction phase 40the oxygen level of the blister copper is adjusted to an optimal level for electrolytic refining and thus anode copper 3 is obtained. The reduction phase is continued for a prescribed period of time causing the oxygen concentration in the blister copper to approach a third prescribed target value. After reduction, the target oxygen level of the anode copper 3 is below 3000 ppm, typically below 2300 ppm, preferably from 500 to 1500 ppm. During reduction, the sulfur concentration of the anode copper 3 is also decreased to a target level below 50 ppm.
(20) As exemplified in
(21) Alternatively, when sulfur concentration of the molten blister copper 1 provided in step (a) is below the first prescribed target value, preferably below 2000 ppm, more preferably below 1000 ppm, oxidation phase 20 of step (b) may be omitted and only inert phase 30 of step (c) and reduction phase 40 of step (d) are performed. Performance of the separate consecutive inert and reductive phases, 20 and 30, allows easier separation of slag. Further, sulfur removal can be controlled better as the oxygen level of the blister copper is not lowered too early. Also, when liquid reduction agent is used, performance of the separate consecutive inert and reductive phases is beneficial. Furthermore, omission of the oxidation phase 20 of step (b) shortens the time required for the reduction phase 40 of step (d).
(22) Accordingly, provided herein is a process as defined herein, comprising the steps of: (a) providing molten blister copper into an anode furnace; (b) oxidizing sulfur in the molten blister copper by blowing oxygen containing gas into the molten blister copper until a first prescribed target value has been reached; (c) subsequently lowering the sulfur and oxygen content in blister copper by blowing inert gas into the molten blister copper until a second prescribed target value has been reached and anode copper is obtained; and (e) directly after step (c) optionally casting the obtained anode copper.
(23) Also, provided herein is a process as defined herein, comprising the steps of: (a) providing molten blister copper into an anode furnace; (c) directly after step (a) lowering the sulfur and oxygen content in blister copper by blowing inert gas into the molten blister copper until a second prescribed target value has been reached; (d) subsequently reducing oxygen in the blister copper by supplying a reducing agent into the molten blister copper until a third prescribed target value has been reached and anode copper is obtained; and (e) optionally casting the obtained anode copper.
(24) In particular, provided herein is a as defined herein, comprising the steps of: (a) providing molten blister copper into an anode furnace; (b) oxidizing sulfur in the molten blister copper by blowing oxygen containing gas into the molten blister copper until a first prescribed target value has been reached; (c) subsequently lowering the sulfur and oxygen content in blister copper by blowing inert gas into the molten blister copper until a second prescribed target value has been reached; (d) subsequently reducing oxygen in the blister copper by supplying a reducing agent into the molten blister copper until a third prescribed target value has been reached and anode copper is obtained; and (e) optionally casting the obtained anode copper.
(25) With reference to
(26) The composition of blister and anode copper, 1, 2a to 2c, and/or 3, can be monitored during the fire refining with methods known to a skilled person and the switching points between the phases may be determined by: measuring one or more of the parameters selected from the group consisting of sulfur and/or oxygen concentration from the blister copper; SO.sub.2 concentration from the off-gas line, and optical monitoring of the off-gas composition, preferably oxygen concentration; comparing the measured value(s) of the parameter(s) with a predetermined reference value for the corresponding parameter; and when the predetermined reference value has been reached indicating that the next phase can be started and/or starting the next phase.
(27) It will be obvious to a person skilled in the art that, as the technology advances, the inventive concept can be implemented in various ways. The invention and its embodiments are not limited to the examples described above but may vary within the scope of the claims.