EP2627818A1 - Method and arrangement for treating pulp - Google Patents
Method and arrangement for treating pulpInfo
- Publication number
- EP2627818A1 EP2627818A1 EP11779190.5A EP11779190A EP2627818A1 EP 2627818 A1 EP2627818 A1 EP 2627818A1 EP 11779190 A EP11779190 A EP 11779190A EP 2627818 A1 EP2627818 A1 EP 2627818A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- pulp
- tower
- dilution
- consistency
- homogenizing
- 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.)
- Granted
Links
Classifications
-
- D—TEXTILES; PAPER
- D21—PAPER-MAKING; PRODUCTION OF CELLULOSE
- D21D—TREATMENT OF THE MATERIALS BEFORE PASSING TO THE PAPER-MAKING MACHINE
- D21D5/00—Purification of the pulp suspension by mechanical means; Apparatus therefor
- D21D5/28—Tanks for storing or agitating pulp
Definitions
- the present invention relates to a method and arrangement for treating pulp to be fed to a screen room at a pulp mill.
- the brown stock discharged from the digester or the oxygen-delignified pulp is typically screened at a screen room at a suitable process stage.
- the aim of the pulp screening is to separate the material unwanted for further process and espe- cially for the final product from the pulp. Screening is, however, an operation requiring the consistency of the pulp to be diluted to about 1 -4%, depending to some extent on the apparatus to be used.
- the pulp is typically fed to the screening from a blow tank of the digester plant or a tank following the oxygen delignification reactor where the consistency of the pulp is at medium consistency of 8-14 %.
- a dilution system is arranged in the tank for pumping the necessary amount of dilution liquid.
- the pulp is fed into the tank through the top thereof, and the pulp is discharged directly adjacent the dilution mixer located at the bottom of the tank.
- the pulp is quickly mixed with the dilution liquid introduced preferably through the mixer so that pulp at a relatively even consistency can be pumped from the tank into the subsequent process stage, the screening apparatus.
- the screen room consists of different types of screening devices, such as knot separation devices, screens, knot washers, etc.
- the screen room can be located either after a digester or after an oxygen delignification stage or in another location in a pulp mill where an increase in purity of the pulp is required.
- typically a screen room is fed from a tank or tower in which there is a low consistency zone having a volume of several tens of cubic meters. To homogenize the low consistency volume tank agitators and reasonable amount of dilution water are used.
- the bottom portion In the smallest tanks or towers having a diameter of about 3.5 to 7.0 m, the bottom portion may be either straight cylindrical or first somewhat narrowing and below that cylindrical. In bigger towers having a diameter typically larger than 5.0 m, a so-called bottom pillar may be disposed at the center of the tower bottom. The purpose of the bottom pillar is to uphold pulp above the bottom portion and to divide the bottom portion into an annular mixing zone.
- the shape of the prior art bottom pillars may be either an evenly converging cone (Fig. 1 ), cylindrical pillar or a cylindrical pillar, the upper end whereof is arranged with an upwardly converging cone.
- Fig. 1 illustrates a known high consistency pulp tower 10 (Fig. 2a of US Patent 5,71 1 ,600) having a tower wall 12, a bottom portion 20, a tower bottom 22, a bottom pillar 30, mixers 40, conduits 50 for feeding dilution liquid, and discharge means 60 for diluted pulp.
- the bottom portion 20 and the upper part of the tower 10 have a conical wall section 14 between them.
- Mixers 40 are arranged at about 1 .1 m height from the tower bottom and so that the dilution liquid is fed through conduits 50 to the dilution zone of the bottom portion, to a level which is a little higher than the mixer shafts.
- US Patent 5,71 1 ,600 discloses a more developed design of a bottom pillar. According to this patent it is essential to the upper end of the pillar that the diameter of a parting member disposed therein is at least in one point larger than the diameter of the lower part of the pillar. In other words, it is a feature of the parting member that in the area of the parting member, the cross section between the parting member and the wall of the tower is smaller than in the bottom area of the pillar.
- This design still requires several mixers (the number of the mixers may range from two to six, mainly depending on the tower size), each mixer being connected with a feed conduit for dilution liquid.
- the mixers are disposed in the bottom portion of the tower so that they cause the pulp to be diluted to circulate fast around the bottom pillar.
- US Patent 7,622,018 describes a similar arrangement in which the dilution is further im- proved so that at least a part of the dilution liquid required to dilute the pulp into the tower outlet consistency is introduced between the tower wall and the pillar (or another parting member) at the area substantially at the level of the smallest cross-section of the tower (Fig. 2).
- the dilution liquid is introduced in at least two portions in the dilution part of the tower.
- FIG. 2 shows an improved prior art high-consistency pulp tower 10 in accordance with U.S. Pat. No 7,622,018.
- the bottom part 20 of the tower 10 is provided with a stationary bottom pillar 30.
- the upper end of the pillar 30 has been shaped so that the diameter of an also stationary parting member 31 disposed therein is at least in one point larger than the diameter of the lower part of the pillar 30.
- the cross-sectional area between the parting member 31 and the wall 12 of the tower 10 is smaller than in the bottom area of the pillar 30 below the parting member.
- the parting member 31 has an upper section 34, the diameter of which converges conically upwards.
- baffles 36 have been provided with an annular duct 46 located between the bottom pillar 30 and the tower wall 12, said duct 46 being provided with nozzles 48 for introducing dilution liquid into the high-consistency fiber suspension substantially simultaneously with the discharge of the pulp down to the dilution zone.
- the bottom part of the tower contains several diluting agitators 40. The pulp is discharged through a conduit 60.
- a screen room feed tank can have a total height of 6-30 meters and a diameter of 2 - 10 m, sometimes the upper part of a screen room feed tank is bigger than the bottom part, for example if more retention time is required because of process demands.
- the low consistency mixing zone in the tank may be 3-6 meters in diameter and 2-6 meters in height.
- the mixing zone in a tank or tower can be 6-10 meters in diameter and 3-10 meters in height.
- spe- cial tank agitators are used to homogenize the diluted zone of the tank.
- a tank agitator operates within a consistency range of 2-5% consistency, but the performance of an agitator becomes poor if the consistency is about 4.5-6% or more.
- the retention time of pulp in the low consistency mixing zone is typically 2-5 minutes, but in any case less than 10 minutes.
- Tank agitators move diluted stock in the tank in such a way that consistency variations become more even and the stock consistency variation from a tank is small enough so that the screen room can handle the flow.
- 1—4 tank agitators are re- quired to provide adequately good mixing performance.
- the number of tank agitators used in mixing depends on the production rate, but also on the volume of the mixing zone.
- An object of the new innovation is to eliminate the above mentioned problems and provide a screen room feed tank arrangement, which is more energy-efficient, space-saving and in which the consistency of the pulp to be fed to screening is even so that harmful consistency peaks may be avoided.
- a novel screen room feed tower for pulp the mixing volume is reduced, and therefore traditional tank agitators are not required.
- the dilution liquid water or filtrate
- the dilution liquid is fed to the upper section of the bottom part of the tower.
- a discharge pump the pulp is treated in a homogenizing zone where a rotating or static homogenizer is installed.
- the purpose of the homogeni- zation zone is to mix the fiber suspension so that the consistency differences in the pulp suspension are equalized and dilution liquid is distributed evenly into the pulp suspension, i.e. the consistency of the pulp is homogenized.
- a normal process pump conventional centrifugal pump
- a pulp tower (or tank) according to the embodiments of the present invention comprises an upper part to which the pulp is fed, and a bottom part which is divided into a dilution zone, homogenizing zone and discharge (pumping) zone.
- the upper part of the tower may act as a blow tank or storage (retention) tank, the size of which depends on the needs of the process, if any buffering effect is required.
- the cross-section of the tower is typically round.
- the diameter of the upper part is bigger than the diameter of the bottom part of the tower. The difference between the upper and bottom part depends on process requirements, such as retention time for storing pulp in the upper part of the tower.
- a device for feeding dilution liquid to the pulp flowing downwards in the tower is located substantially at a level which divides the tower to the upper part and the bottom part and a discharge device for diluted pulp is arranged in the bottom part of the tower.
- a device for homogenizing the consistency of the diluted pulp flow is arranged at a distance downstream of the dilution device in the pulp flow direction and upstream of the discharge device. The majority of the dilution liquid is added in the uppermost section of the bottom part of the tower. Smaller parts of the dilution liquid may be added between the uppermost dilution point and the homogenizing zone.
- the dilution device defines a dilution point in the bottom part of the tower having a diameter.
- the distance between the dilution device and the homogenizing device is 1 .5-10 times the diameter of the tower at the dilution point, where the majority of the dilution liquid is added.
- said distance is between the first dilution point and the homogenizing device.
- the distance between a dilution point and a homogenization point is determined by the required retention time but also by the maintenance demands of a homogenizes
- the retention time between the dilution point and homogenizer should be so long that non-diluted pulp does not enter the screen room feed pump.
- the retention time as short as 5-10 seconds should be sufficient, but in practical applications the retention time is typically 15-120 seconds, but preferably 20-60 seconds.
- dilution liquid can be fed by using normal pipe con- nections.
- the dilution is divided to a required number of connections around the mixing tank.
- the dilution device comprises a number of feed nozzles/outlets arranged in the periphery of the tower wall.
- the dilution liquid is fed from a supply tank and directed inwards, towards the centre of the tower.
- the pressure is such that the dilution liquid is sprayed into the tower towards the downwards flowing pulp.
- the pressure control, the shape of the outlet and the quantity of outlets may vary in a number of different ways, which are evident to the skilled person. The object is, however, to yield maximal penetration into the pulp flow.
- the dilution liquid can also be fed via a feed pipe that is piped so that it goes through the dilution point.
- the dilution liquid is led through several holes into the pulp so that dilution liquid flows into the pulp flow that is flowing downwards.
- the dilution device comprises at least one pipe extending from the wall of the pulp tower inwards, towards the center of the tower, which pipe is provided with a number of outlet holes for the addition of the dilution liquid.
- the homogenization volume (i.e. the size of the homogenization zone) is small, normally from 0.1 m 3 (100 liters) up to 3 m 3 , when a traditional mixing tank volume is within a range of 10-300 m 3 .
- the retention time in the homogenization zone of the new arrangement is typically only 2-10 seconds, when in traditional mixing tanks the retention time is typically several minutes.
- a homogenizer having a rotating member(s) that generates turbulence in the homogenization zone makes the stock dilution liquid suspension flow even and makes the consistency fluctuations smaller.
- a rotating homogenizer typically comprises a shaft which is mounted in the wall of the tower and which is provided extensions which mix the pulp flow when rotating. Lower power consumption can be achieved because of smaller volume in mixing and because of low rotation speed.
- a homogenizer can operate within a rotation speed range of 600-1200 rpm.
- a circumferential speed of the homogenizer is 5-20 meters per second, typically 10-15 meters per second.
- the required amount of turbulence can also be generated by using static constructions in a homogenization zone.
- the homogenizer is a device or construction in the tower that provides a treatment which evens the flow of the pulp and dilution liquid that flows through the bottom part of the tower. Also a combination of rotating homogenizer and static homogenizer constructions is possible.
- a static homogenizer by throttling the flow, i.e. decreasing the cross-sectional area, an increase in the flow rate and a higher turbulence are achieved, whereby the introduced dilution liquid will mix into the flowing pulp.
- the static homogenizers preferably consist of protrusions, or annular flange or ring arranged on the in- ner wall of the tank.
- Static homogenizers may be provided with, in addition to the throttling, turbulence-raising devices, such as baffles, ribs, pins, nubs or the like, arranged in the homogenization zone.
- turbulence-raising devices such as baffles, ribs, pins, nubs or the like, arranged in the homogenization zone.
- a vertical pillar or bar in the middle of the discharge (pumping) and homogenization zones.
- the pillar is disposed in the bottom part of the tower. It has a lower end which is supported by the bottom of the tower.
- the pillar extends through the discharge (pumping) zone and also through the homogenization zone where static homogenizer elements are fixed to the tower wall.
- the diameter of the pillar is determined so that the homogenization is optimum.
- the pillar itself can comprise constructions, such as obstacles or extensions, to intensify the homogenization of the pulp flow.
- the used design of rotating and/or static homogenizers depends on the required quality of mixing that can be estimated by consistency variations after the screen room feed pump and total energy used in the application.
- the inventive arrangement further comprises a construction for at least one flow guidance element, such as a cylindrical pipe, rectangle bar or beam, which is located after the dilution point but above the homog- enizer to guide the diluted pulp flow to the homogenization zone.
- a pipe or bar can be installed so that it is typically located horizontally across the tower. It is fixed at both ends to a wall of the tower. The distance and the location of the guidance element from the homogenizer should be determined so that the flow to the homogenization zone is even and the pulp can flow freely downwards but the flow is guided to the location that gives the best homogenization result.
- a normal process pump that can pump pulp at a 3-8 % consistency can be used for discharging the pulp through an outlet from the bottom of the tower to the screen.
- the feed consistency of pulp is typically 8-14 % in the upper part of the tower.
- the bottom part of the tower of the invented arrangement and method is devoid of agitators which mix and dilute the pulp.
- the dilution liquid which is needed to obtain a discharging (pumping) consistency is introduced into the pulp before the homogenizing device.
- the stability of screening consistency is a requirement which has to be taken into account in traditional screen room applications, but also in the invented system.
- a screen feed tank can generate unexpected consistency peaks, making the screen room operation difficult because of too high screening consistency.
- the screen feed tank mixing (homogenizing) volume is essentially smaller compared to traditional systems. Because of short retention times a faster response from the consistency control would be needed.
- the screen room consistency control is carried out using a consistency meter that controls dilution flows into the screen room feed tank and into the suction side of the screen room feed pump. This kind of consistency control allows consistency peaks to enter the screening where peaks can generate serious problems such as clogging of screens, pressure and flow fluctuations etc.
- the outlet of the tower is connected to a conduit provided with a pump for conveying the diluted pulp from the tower to a screening de- vice and with a feeder for adding dilution liquid to the pulp so as to control the pulp consistency, which feeder is located between the pump and screening device. Up to 5-10 % of the dilution liquid may be added to the discharged pulp.
- Fig. 1 illustrates the bottom part of a pulp tower in accordance of prior art
- Fig. 2 illustrates the bottom part of a pulp tower in accordance of prior art
- Fig. 3 illustrates a screen room feed tower according to an embodiment of the present invention
- Fig. 4 illustrates the bottom portion of a screen room feed tower according to an embodiment of the present invention
- Fig. 5 illustrates, as an example, a static homogenizer, which may be used in connection with the embodiments of the present invention.
- Figure 5 is a cut view along section A-A of the embodiment of Figure 4.
- Fig. 6 illustrates a device for introducing dilution liquid,
- Fig. 7 illustrates a control system, which may be applied in connection with the present invention
- Fig. 8 illustrates a screen room feed tower according to a further embodiment of the present invention.
- Fig. 9 illustrates a screen room feed tower according to a further embodiment of the present invention.
- Fig. 3 illustrates a screen room feed tower according to an embodiment of the present invention.
- the tower 100 comprises a tower wall 102, an upper portion 104, a bottom portion 106 and a tower bottom 108.
- the top of the tower may be provided with a device or conduit 1 10 for discharging gas.
- the diameter of the upper portion 104 is larger than the diameter of the bottom portion 106.
- the upper portion of the tower may act as a blow tank or a storage (reten- tion) tank, the size of which depends on the needs of the process, if any buffering effect is required. Pulp from a digester or an oxygen delignification reactor is fed to the tower through a conduit 1 12.
- the bottom portion 106 is divided into a dilution zone 107 and homogenization zone 109, the latter being located after the dilution in the pulp flow direction.
- conduits 1 14 are arranged for introducing dilution liquid to the pulp that flows downward in the tank.
- homogenization zone which is located below the dilution zone, homogenization devices are arranged.
- the purpose of the homogenization zone is to mix the pulp suspension so that its consistency is homogenized.
- the pump 120 Connected to the tower through the wall thereof, is a pump 120.
- the pump 120 is connected adjacent the bottom or to the bottom. It pumps the diluted and homogenized pulp from a discharge zone 121 of the tower to a screen.
- the rotating homogenizer 1 16 comprises a driving means 122, a shaft 124 equipped with blades or extensions 126. The blades are rotated so that the dilu- tion liquid is distributed evenly into the pulp suspension.
- This is only one preferred design of homogenizers. Also other designs which are able to homogenize the pulp consistency can be used.
- the dilution point 1 14 in the bottom part of the tower has a diameter D, wherein the distance C between the dilution device 1 14 and the homogenizing device 1 16 is 1 .5-10 times the diameter D of the tower at the dilution point.
- Fig. 4 shows a bottom portion of the tower 106, in which pulp flows (arrows) from the upper portion through the bottom portion and is discharged from the tank.
- the tower is provided with a dilution device 128 which comprises openings 130 in the tower wall, through which openings dilution liquid is fed into the pulp flow.
- the openings are located around the tower and are connected to a conduit or conduits for supplying liquid into the openings.
- Two or more openings 130 are arranged at a distance from each other around the tank.
- the homogeniza- tion is effected by protrusions arranged on the inner surface of the tank.
- protrusions By throt- tling the flow, i.e. decreasing the cross-sectional area by the use of protrusions 132, an increase in the flow rate is achieved and due to the throttling a higher turbulence, whereby the introduced dilution liquid will further mix into the flowing pulp.
- the protrusions extend in the vertical direction at a distance X so that the bottom portion of the tower has a reduced cross-section. After the protrusions the cross section of the bottom portion widens again.
- Fig. 5 shows static homogenization cross section drawings.
- Figure 5a is a cut view along section A-A of the embodiment of Figure 4.
- Fig. 5a shows the protrusions 132 arranged on the inner surface of the tank.
- Fig. 5 b illustrates turbulence- raising devices, such as plates 134 or protrusions having different kinds of forms, such as rectangular, triangular.
- Fig. 6 shows another embodiment for a dilution device 136.
- the dilution liquid (arrow 140) can be fed via a feed pipe 138 that is piped so that it extends at least partly through the tower and thus through the dilution zone.
- the dilution liquid is led through several holes 142 into the pulp so that dilution liquid flows into the pulp that is flowing downwards.
- Fig. 7 illustrates a control system, which may be applied in connection with the embodiments of the present invention.
- the consistency control is arranged so that a portion of the dilution liquid is fed also downstream from the consistency measurement point QIC close to the following screen 148.
- the major portion of the dilution liquid is fed through line 144 to the bottom portion 106 of the tank, but some liquid (up to 5-10 %) may be introduced also through line 146 to an inlet of screen 148.
- the feed line 150 is provided with consistency measurement QIC and dilution liquid conduit 146 for adjusting the feed consistency and maintaining it at a set value. If there are production disturbances, the steady consistency can be kept essentially at the set value by measuring the consistency and reacting quickly to a possible consistency increase by adding dilution liquid also through line 146.
- Fig. 8 illustrates a screen room feed tower according to a further embodiment of the present invention.
- the tower shown in Fig. 8 corresponds to the tower of Fig. 3, but it is provided with two homogenizers 116 installed to the tower wall.
- the tower further comprises a construction for at least one flow guidance element.
- the figure also shows a cut view along cross-section B-B.
- a cylindrical pipe 123 is disposed horizontally across the tower.
- the pipe 123 is located after the dilution point 1 14 but above the homogenizers 1 16 to guide the diluted pulp flow to the homogenization zone 109.
- the pipe 123 is in- stalled so that it is fixed at both ends to the wall 102 of the tower.
- the distance and the location of the pipe from the homogenizer 1 16 should be determined so that the flow to the homogenization zone is even and the pulp can flow freely downwards but the flow is guided to the location that gives the best homogeniza- tion result.
- Fig. 9 illustrates a screen room feed tower according to a further embodiment of the present invention.
- a static homogenizer it may be preferable to use a vertical pillar or bar in the middle of the discharge (pumping) and homogeniza- tion zones.
- the tower shown in Fig. 9 corresponds to the embodiment according to Fig. 4, but a pillar 131 is disposed in the bottom part of the tower.
- the pillar 131 has a lower end which is supported by the bottom 108 of the tower.
- the pillar ex- tends towards the dilution device 128 through the discharge (pumping) zone 121 and also through the homogenization zone 109 where static homogenizer elements 132 are fixed to the tower wall.
- the pillar contributes to throttling.
- the diameter of the pillar 131 is determined so that the homogenization is optimum.
- the pillar itself may further comprise constructions, such as obstacles or other exten- sions (ribs, pins, nubs or the like), which raise the turbulence level and thus intensify the homogenization of the pulp flow.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Paper (AREA)
- Polysaccharides And Polysaccharide Derivatives (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US39265510P | 2010-10-13 | 2010-10-13 | |
| PCT/FI2011/050881 WO2012049367A1 (en) | 2010-10-13 | 2011-10-12 | Method and arrangement for treating pulp |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP2627818A1 true EP2627818A1 (en) | 2013-08-21 |
| EP2627818B1 EP2627818B1 (en) | 2021-01-06 |
Family
ID=44907886
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP11779190.5A Active EP2627818B1 (en) | 2010-10-13 | 2011-10-12 | Method and arrangement for treating pulp |
Country Status (8)
| Country | Link |
|---|---|
| EP (1) | EP2627818B1 (en) |
| JP (1) | JP5911873B2 (en) |
| CN (1) | CN103154361B (en) |
| BR (1) | BR112013009075B1 (en) |
| ES (1) | ES2860750T3 (en) |
| PT (1) | PT2627818T (en) |
| RU (1) | RU2584519C2 (en) |
| WO (1) | WO2012049367A1 (en) |
Families Citing this family (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US9333468B2 (en) | 2012-09-24 | 2016-05-10 | Abengoa Bioenergy New Technologies, Llc | Soak vessels and methods for impregnating biomass with liquid |
| RU2650066C2 (en) * | 2013-01-04 | 2018-04-06 | Зульцер Мэнэджмент Аг | Method and device for transferring process liquid, industrial facility and method of simplifying layout of such |
| SE1650410A1 (en) * | 2016-03-30 | 2017-10-01 | Valmet Oy | Screen feed arrangement |
| CN113308923B (en) * | 2021-05-28 | 2022-06-10 | 北京三联虹普新合纤技术服务股份有限公司 | Pulp homogenizing and conditioning system for preparing Lyocell fibers |
| CN113388897B (en) * | 2021-06-29 | 2022-06-10 | 北京三联虹普新合纤技术服务股份有限公司 | High-capacity Lyocell cellulose stock solution and continuous preparation process thereof |
Family Cites Families (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| SU1724767A1 (en) * | 1988-09-12 | 1992-04-07 | Центральный Научно-Исследовательский И Проектно-Конструкторский Институт По Проектированию Оборудования Для Целлюлозно-Бумажной Промышленности | Tower for bleaching cellulose |
| DE4141865A1 (en) * | 1991-12-18 | 1993-06-24 | Rolf Kettler | Paper machine mfg. appts. - is a vertical cylinder container with vertical stirring shaft moved forwards and back by a motor |
| FI98836C (en) * | 1994-06-09 | 1997-08-25 | Ahlstroem Pumput Oy | Consistency pulp tower |
| DE19826879B4 (en) * | 1998-06-17 | 2005-06-02 | Voith Paper Patent Gmbh | Method and container for stacking high consistency paper pulp |
| FI20030209A7 (en) | 2003-02-12 | 2004-08-13 | Sulzer Pumpen Ag | Arrangement and method for processing pulp and method for modernizing a pulp tower |
| FI20031164L (en) * | 2003-07-09 | 2005-01-10 | Sulzer Pumpen Ag | Method and apparatus for processing pulp |
| FI20031045A0 (en) * | 2003-07-09 | 2003-07-09 | Sulzer Pumpen Ag | Process and apparatus for treating pulp |
| DE102006008763B3 (en) * | 2006-02-24 | 2007-12-06 | Voith Patent Gmbh | Reaction tower for bleaching of fiber materials, comprises cylindrical reaction container, dilution container, and a cylindrical homogenizing container, which has an inlet and outlet for the product to be bleached |
| WO2009037091A1 (en) * | 2007-09-17 | 2009-03-26 | Sulzer Pumpen Ag | An apparatus for discharging pulp from a vessel, method of discharging pulp form a vessel and method of upgrading a pulp vessel |
-
2011
- 2011-10-12 WO PCT/FI2011/050881 patent/WO2012049367A1/en not_active Ceased
- 2011-10-12 EP EP11779190.5A patent/EP2627818B1/en active Active
- 2011-10-12 ES ES11779190T patent/ES2860750T3/en active Active
- 2011-10-12 PT PT117791905T patent/PT2627818T/en unknown
- 2011-10-12 CN CN201180049494.7A patent/CN103154361B/en active Active
- 2011-10-12 BR BR112013009075-8A patent/BR112013009075B1/en active IP Right Grant
- 2011-10-12 JP JP2013533250A patent/JP5911873B2/en active Active
- 2011-10-12 RU RU2013121675/12A patent/RU2584519C2/en active
Non-Patent Citations (1)
| Title |
|---|
| See references of WO2012049367A1 * |
Also Published As
| Publication number | Publication date |
|---|---|
| ES2860750T3 (en) | 2021-10-05 |
| BR112013009075A2 (en) | 2016-07-19 |
| JP5911873B2 (en) | 2016-04-27 |
| WO2012049367A1 (en) | 2012-04-19 |
| EP2627818B1 (en) | 2021-01-06 |
| CN103154361A (en) | 2013-06-12 |
| RU2013121675A (en) | 2014-11-20 |
| PT2627818T (en) | 2021-04-07 |
| JP2013539825A (en) | 2013-10-28 |
| CN103154361B (en) | 2015-09-09 |
| RU2584519C2 (en) | 2016-05-20 |
| BR112013009075B1 (en) | 2021-01-26 |
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