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WO2015118609A1 - Movable plug-type column and method for using same - Google Patents

Movable plug-type column and method for using same Download PDF

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Publication number
WO2015118609A1
WO2015118609A1 PCT/JP2014/052549 JP2014052549W WO2015118609A1 WO 2015118609 A1 WO2015118609 A1 WO 2015118609A1 JP 2014052549 W JP2014052549 W JP 2014052549W WO 2015118609 A1 WO2015118609 A1 WO 2015118609A1
Authority
WO
WIPO (PCT)
Prior art keywords
column
movable stopper
end side
packing
communication channel
Prior art date
Application number
PCT/JP2014/052549
Other languages
French (fr)
Japanese (ja)
Inventor
信夫 福本
隆治 山村
Original Assignee
株式会社ワイエムシィ
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by 株式会社ワイエムシィ filed Critical 株式会社ワイエムシィ
Priority to KR1020167022801A priority Critical patent/KR102164128B1/en
Priority to PCT/JP2014/052549 priority patent/WO2015118609A1/en
Priority to JP2015561081A priority patent/JP6301377B2/en
Publication of WO2015118609A1 publication Critical patent/WO2015118609A1/en

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D15/00Separating processes involving the treatment of liquids with solid sorbents; Apparatus therefor
    • B01D15/08Selective adsorption, e.g. chromatography
    • B01D15/10Selective adsorption, e.g. chromatography characterised by constructional or operational features
    • B01D15/20Selective adsorption, e.g. chromatography characterised by constructional or operational features relating to the conditioning of the sorbent material
    • B01D15/206Packing or coating
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D15/00Separating processes involving the treatment of liquids with solid sorbents; Apparatus therefor
    • B01D15/08Selective adsorption, e.g. chromatography
    • B01D15/10Selective adsorption, e.g. chromatography characterised by constructional or operational features
    • B01D15/22Selective adsorption, e.g. chromatography characterised by constructional or operational features relating to the construction of the column
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N30/00Investigating or analysing materials by separation into components using adsorption, absorption or similar phenomena or using ion-exchange, e.g. chromatography or field flow fractionation
    • G01N30/02Column chromatography
    • G01N30/60Construction of the column
    • G01N30/6004Construction of the column end pieces
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N30/00Investigating or analysing materials by separation into components using adsorption, absorption or similar phenomena or using ion-exchange, e.g. chromatography or field flow fractionation
    • G01N30/02Column chromatography
    • G01N2030/022Column chromatography characterised by the kind of separation mechanism
    • G01N2030/027Liquid chromatography

Definitions

  • the present invention relates to a column for liquid chromatography provided with a movable stopper and a method for using the column provided with the movable stopper.
  • Liquid chromatography is widely used to separate and purify various compounds, compositions, biological materials, and the like. Separation and purification by liquid chromatography is performed by feeding a liquid containing the target substance into a column in which a slurry or gel-like packing material is sealed, and collecting and collecting the liquid discharged through the column. Is called.
  • the movable stopper type column has at least one of the stoppers provided for sealing the packing material, which is movable in the vertical direction along the inner wall of the column main body cylinder. It is intended to improve.
  • the hermeticity is maintained by the contact between the outer periphery of the movable stopper and the inner wall of the column body cylinder. Therefore, various proposals have been made for the seal structure of the movable stopper for ensuring the sealing property.
  • Patent Document 1 there is a step on the outer periphery of the movable stopper, the filter packing is disposed in close contact with the step, and the outer side is disposed in close contact with the outer periphery of the filter packing including a tapered surface with respect to the inner wall of the column.
  • a seal structure that includes a seal packing whose outer side is in close contact with the inner wall of the column and realizes sealing by a movable stopper, a filter packing, and a seal packing.
  • the movable stopper and the filter packing are brought into close contact with each other by the step structure on the outer periphery of the movable stopper, and the seal packing receives an external force due to the taper structure of the filter packing, so the adhesion between the seal packing and the column inner wall is improved. Further, since the inner working force acts on the seal packing by the taper portion, the adhesion between the filter packing and the movable plug is increased.
  • a movable stopper core, an annular scraper, a base having a recess in which the proximal end side of the movable stopper core is fitted, a packing surrounding the outer periphery of the movable stopper core, and the movable stopper core are attracted.
  • a movable stopper is disclosed that includes a bolt and a scraper is engaged with a flange portion of the movable stopper core.
  • Patent Document 3 an example in which pressurization is performed by moving the movable stopper provided below the column from below to above (FIG. 1), and the movable stopper provided above the column is moved from top to bottom.
  • FIG. 2 Discloses an example of pressurization (FIG. 2).
  • the hydraulic cylinder is connected to the movable stopper via the rod, and the movable stopper is pressed by the hydraulic cylinder.
  • the movable stopper column of Patent Document 3 has a structure in which the distal end side (column inner side) of the movable stopper faces the filler, and the proximal end side of the movable stopper is exposed to the outside.
  • a movable stopper column in which a movable stopper is inserted inside a closed column having fixed stoppers (flanges) at both ends.
  • a movable adapter 102 movable stopper
  • a cylindrical housing 103 column having an upper flange 115 and a bottom flange 116
  • chromatography is performed.
  • the media bed (filler) is filled by an adapter 102 (movable plug) driven by a hydraulic chamber 120.
  • the distal end side of the adapter (movable stopper) faces the filler
  • the proximal end side of the adapter faces the hydraulic medium. That is, in the column, the filler and the hydraulic medium are adjacent to each other with the movable stopper interposed therebetween.
  • an object of the present invention is to provide a movable stopper column that prevents leakage at the movable stopper and that does not cause contamination of the packing material even if leakage occurs.
  • the inventor has studied in order to solve the above-mentioned problems, and at least two stages of the distal end side packing and the proximal end side packing are provided on the outer periphery of the movable stopper to prevent liquid leakage in at least two stages.
  • the present inventors have conceived of providing a separation groove over the entire outer periphery of the movable plug between the distal end side packing and the proximal end side packing. Furthermore, by providing a communication channel that communicates the separation groove with the outside of the column, even if the packing material or pressurized medium leaks beyond the front end side packing and / or the proximal end side packing, the leaked material will enter the separate groove.
  • a column for liquid chromatography The column has a movable stopper provided movably along the inner wall of the column main body cylinder, The movable stopper is pressed from the proximal end side to the distal end side, A ring-shaped front end side packing that is fitted on the outer periphery of the front end side of the movable stopper; An annular base end side packing that is fitted on the outer periphery of the base end side of the movable stopper, and Between the distal end side packing and the proximal end side packing, has a separate groove formed over the entire outer periphery of the movable stopper, The column for liquid chromatography, wherein the separation groove communicates with the outside of the column via a communication channel provided inside the movable stopper.
  • connection portions between the separate groove and the communication channel are provided at two locations facing the diameter direction of the outer periphery of the movable stopper,
  • the communication channel is A first communication channel from the outside of the column to the first connection,
  • the separate groove is a groove formed in an annular packing that is fitted on the outer periphery of the movable stopper between the distal end side packing and the proximal end side packing.
  • [1] or [2] The column as described in.
  • the shaft core of the movable stopper is provided with a take-out pipe for taking out the liquid from the inside of the column,
  • the column according to any one of [1] to [3], wherein the communication channel communicates the separation groove and the outside of the column through the movable stopper and the take-out pipe.
  • the column has fixed stoppers at both ends and a movable stopper is inserted in the column,
  • the column according to any one of [1] to [5], wherein a front end side of the movable plug is filled with a filler, and a proximal end side of the movable plug is filled with a pressurized medium.
  • a method for washing a column for liquid chromatography The column has a movable stopper provided movably along the inner wall of the column main body cylinder, The movable stopper is pressed from the proximal end side to the distal end side, A ring-shaped front end side packing that is fitted on the outer periphery of the front end side of the movable stopper; An annular base end side packing that is fitted on the outer periphery of the base end side of the movable stopper, and Between the distal end side packing and the proximal end side packing, has a separate groove formed over the entire outer periphery of the movable stopper, The separation groove communicates with the outside of the column through a communication channel provided inside the movable stopper, The washing
  • cleaning method including the process of sending in a liquid to the said separation groove
  • connection portions between the separate groove and the communication channel are provided at two locations facing the diameter direction of the outer periphery of the movable stopper,
  • the communication channel is A first communication channel from the outside of the column to the first connection, A second communication flow path from the second connection part to the outside of the column, and
  • the gap between the movable stopper and the inner wall of the column is sealed to suppress leakage, and even when leakage occurs, the leakage is discharged from the separation groove to the outside of the column. be able to.
  • the filler and the pressurized medium are adjacent to each other with the movable stopper interposed therebetween, it is possible to prevent the occurrence of a liquid junction between the two liquids.
  • the inner wall of the column through a fluid through the separate groove, it is possible to improve the sealing property and the column life.
  • the left figure is a sectional view of the movable stopper of the column and the extraction pipe of the column of the present invention, and the right figure is an extracted flow path.
  • FIG. 1 is a schematic diagram of a liquid chromatography apparatus including the column of the present invention.
  • the column 1 is suspended from a gantry 4 by a rotation shaft (not shown) extending from the rotation drive device 2 and a support frame 3.
  • the column 1 can be rotated around the rotation axis by driving the rotation driving device 2.
  • the upper end and the lower end of the column main body cylinder 5 are closed by an upper fixing plug 6 and a lower fixing plug 7, respectively.
  • a pipe is attached to the supply port 8 provided in the center of the upper fixing plug 6, and the liquid to be separated and purified and the eluent are supplied through the pipe.
  • the extraction pipe 9 extends downward from the movable stopper inserted in the column through the lower fixed stopper 7.
  • Two small-diameter pipes 10 are inserted into the take-out pipe 9, and the thin-diameter pipe 10 is bent at the lower end of the take-out pipe 9 and extends in the lateral direction.
  • FIG. 2 is a schematic sectional view of the column 1.
  • the upper end of the column 1 is closed by an upper fixing plug 6, and the upper fixing plug 6 and the column main body cylinder 5 are fixed by a clamp 21.
  • the detailed structure of the upper fixing plug 6 may be a known structure and is not particularly limited.
  • the filter 22, the tapered flange 23 (these are a sintered unit), and the upper lid flange. 24 and the like are stacked and locked with bolts so as to be in close contact with each other.
  • the periphery is sealed with packing.
  • the structure of the packing is not particularly limited, but the seal structure disclosed in Japanese Patent No. 3929407 is preferably used.
  • the lower end of the column 1 is closed with a lower fixing plug 7 and fixed with a clamp 25.
  • the lower fixing plug 7 may also have a known configuration and is not particularly limited. In the illustrated example, a tapered flange 26, a lower lid flange 27, and the like are stacked and locked with bolts so as to be in close contact with each other. .
  • a through hole is provided in the center of the lower fixing plug 7, and the extraction pipe 9 passes therethrough.
  • the lower fixing plug 7 is provided with a pressurized medium supply port 28 and a pressurized medium discharge port 29 for supplying and discharging a pressurized medium to and from the pressure chamber 30 from the outside of the column.
  • a pressurized medium supply pipe is connected to the pressurized medium supply port 28, and a pressurized medium discharge pipe is connected to the pressurized medium discharge port 29.
  • Each pipe may be provided with a valve.
  • the valve of the supply port 28 is opened, the valve of the discharge port 29 is closed, and the pressurized medium is fed into the column using a pump, whereby the movable stopper is moved upward to pressurize.
  • the pressurized state can be maintained.
  • the pressure can be lowered, and the movable stopper can be moved downward.
  • the pressurizing medium is not particularly limited as long as it is a liquid, but oil, organic solvent, water and the like can be used, and water is preferably the main component.
  • water is preferably the main component.
  • the pressurizing medium is water, alcohols, specifically ethanol or methanol may be mixed for the purpose of sterilization and anti-corruption.
  • you may include arbitrary substances, such as a disinfectant and a viscosity modifier.
  • the pressure in the column can be appropriately selected depending on the volume of the column, the type of filler, and the purpose, and can be, for example, 0 MPa to 10 MPa (gauge pressure).
  • a movable stopper 31 that can slide up and down along the inner wall is inserted into the column body cylinder 5.
  • the distal end side (upper side in FIG. 2) of the movable plug 31 is a filler chamber 32, which is filled with a filler to form a separation bed.
  • the movable plug 31 includes a filter 33, a tapered flange 34, a movable plug body 35, and the like, and is locked with bolts so as to be in close contact with each other.
  • the filter 33 located at the foremost end of the movable plug 31 faces the filler.
  • the proximal end side of the movable plug 31 faces the pressurized medium.
  • the extraction pipe 9 extends from the movable stopper main body 35.
  • a column outflow pipe 36 is inserted into the extraction pipe 9 from the lower part of the filter 33.
  • the liquid supplied to the filler chamber 32 from above the column passes through the separation bed, is discharged out of the column through the column outflow pipe 36, and is collected and collected.
  • the outer periphery of the movable plug 31 is fitted with a front end side packing, a base end side packing, and a grooved packing between the front end side packing and the base end side packing.
  • a communication flow path extending from the grooved packing through the inside of the movable stopper and extending through the extraction pipe is provided.
  • FIG. 3 is a schematic sectional view of the movable stopper 31.
  • the movable plug body 35 is formed by combining three flanges.
  • a front end side packing 38 having a tapered front end and five concavo-convex portions on the outer periphery is fitted.
  • a taper flange 34 integrated with the filter 33 is laminated on the upper portion of the movable plug body 35, and the taper flange 34 and the front end side packing 38 have a tapered shape that is combined with each other.
  • the structure of the front end packing is not particularly limited, but it is preferable to use the seal structure described in Japanese Patent No. 3929407 because the leakage of the filler can be minimized.
  • An inverted V-shaped proximal end packing 39 is fitted on the lower portion of the movable stopper 31.
  • the shape of the base end side packing 39 is not particularly limited, but if an inverted V-shaped packing is used, when the movable stopper 31 is pressed from below, a part of the packing expands and comes into close contact with the inner wall of the column. Excellent sealing performance can be obtained.
  • a grooved packing 40 having a separate groove is externally fitted between the outer periphery of the movable stopper main body 35 and between the distal end side packing 38 and the proximal end side packing 39.
  • the width and depth of the separation groove are appropriately set according to the diameter and length of the column and are not particularly limited, but can be, for example, about 1 to 20 mm in width and about 1 to 10 mm in depth.
  • the separation groove is connected to the communication channel 42 at the communication part 41.
  • the communication flow path 42 is a small diameter tube that is inserted into the movable stopper main body 35 and the extraction pipe 9 and reaches the outside of the column.
  • the end of the communication channel 42 is open. That is, the separation groove and the communication channel 42 are at normal pressure.
  • the flow of the liquid is typically shown in the communication channel and the separation groove in FIG.
  • a column outflow pipe 36 is connected to the filter 33 and the taper flange 34.
  • the column outflow pipe 36 is inserted into the takeout pipe 9.
  • the leaked material When the packing material or pressurized medium in the column leaks beyond the front end side packing or the base end side packing, the leaked material accumulates in the separate groove of the grooved packing 40 and is discharged to the outside through the communication channel. . While the inside of the column is in a pressurized state, the separation groove and the communication flow path are maintained at atmospheric pressure, so that the leaked material once leaked into the separation groove does not return to the column. That is, in the column of the present invention, even if leakage of the column contents occurs beyond the packing, a liquid junction between the filler and the pressurized medium does not occur.
  • Fig. 4 (left) is a sectional view of the movable stopper and the entire communication channel
  • Fig. 4 (right) is a diagram schematically showing the entire channel.
  • the liquid when the liquid is fed from one end a of the communication channel, the liquid is connected through the first communication channel b to the first connection between the communication channel and the separation groove. It reaches part c.
  • the liquid When the liquid reaches the separation groove via the connection portion c, the liquid is divided into left and right, and circulates along the inner wall surface of the column along the separation groove.
  • the second connecting portion d located in the diametrically opposed position, the liquids merge and are discharged from the other end f through the second connecting flow path e.
  • the inner wall of the column can be washed by circulating the liquid through the communication channel.
  • the movable stopper may be washed in a stationary state, or a part or the whole of the inner wall of the column may be washed by circulating a liquid while moving the movable stopper up and down.
  • the column provided with the movable stopper of the present invention can wash the inner wall of the column without removing the movable stopper. Therefore, even in a closed system movable stopper type column, the inner wall of the column can be washed in a state where the packing material is pressurized. Also in an open system movable stopper column, it is possible to wash the inner wall of the column with the column set on a gantry, and the column can be washed more easily.
  • the liquid flowing through the communication channel can be water, an organic solvent, or the like, and is not particularly limited. Moreover, according to the objective, you may include arbitrary components, such as surfactant and a disinfectant.
  • the liquid feeding method is not particularly limited, but in order to obtain a high cleaning effect, it is preferable to press-fit the liquid using a pump.
  • the leakage accumulated in the separation groove can be cleaned and removed, and the packing material can be bite into the packing by removing packing particles and acid adhering to the inner wall of the column. It is possible to keep the column hermetically sealed, prevent contamination and corrosion of the inner wall of the column, keep the inside of the column clean, and the column can be used in a good condition for a long time. .
  • FIG. 5 shows an embodiment of the present invention in an open system movable stopper column.
  • the upper fixing stopper of the column 1 has substantially the same structure as that of the embodiment of FIG.
  • a supply pipe 50 for sending an eluent or the like into the column is attached to the upper end of the column 1.
  • the lower end of column 1 is open.
  • the column body cylinder 5 is connected to and supported by the arm 51 in the vicinity of the lower end.
  • a movable stopper 52 is inserted into the column main body cylinder 5 from below the column.
  • the movable plug 52 is connected to and supported by a rod 53 of a hydraulic cylinder (not shown).
  • the movable stopper 52 is pressed by a hydraulic cylinder.
  • the movable stopper 52 and the rod 53 are detachably connected by a clamp 54.
  • the movable stopper 52 has a taper flange 55 integrated with a filter and a movable stopper body 56 in close contact with each other. From the lower side of the filter, an effluent extraction pipe 57 extending from the inside of the column is extended.
  • a distal end side packing 60 and a proximal end side packing 61 are fitted on the outer periphery of the movable stopper 52.
  • a separation groove 62 is formed between the distal end side packing 60 and the proximal end side packing 61 over the entire outer periphery of the movable stopper.
  • the separation groove 62 is connected to connecting flow paths 63 and 64 that communicate with the outside of the column through the movable stopper.
  • the movable stopper column of the present invention prevents contamination of the packing material and can easily clean the inner wall of the column.
  • the present invention is applicable to any column having a small diameter to a large diameter, but is particularly useful in a large column having a diameter exceeding 50 mm.
  • the column of the present invention is particularly useful as a large column used in the field of industrial production such as extraction from pharmaceuticals, foods, precision organic materials and natural substances.

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  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Biochemistry (AREA)
  • General Health & Medical Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Immunology (AREA)
  • Pathology (AREA)
  • Treatment Of Liquids With Adsorbents In General (AREA)

Abstract

The objective of the present invention is to provide a movable plug-type column for use in liquid chromatography and a method for using same with which it is possible to prevent leakage in the movable plug and in which filler contamination does not occur even when leakage occurs. Provided is a column for liquid chromatography, said column being characterized by having a movable plug that is provided so as to be movable along the inner wall of a column main tube, wherein the movable plug is pressed from a base end in the direction of a tip end and comprises a ring-shaped tip end-side packing that is fit around the outer periphery of the tip end side of the movable plug, and a ring-shaped base end-side packing that is fit around the outer periphery of the base end side of the movable plug, and the movable plug furthermore has, between the tip end-side packing and the base end-side packing, a separate groove that is formed over the entire outer periphery of the movable plug, said separate groove communicating with the column exterior via a communication channel that is provided inside the movable column.

Description

可動栓式カラム及びその使用方法Movable stopper column and method of using the same
 本発明は、可動栓を備えた液体クロマトグラフィー用のカラムと、当該可動栓を備えたカラムの使用方法に関する。 The present invention relates to a column for liquid chromatography provided with a movable stopper and a method for using the column provided with the movable stopper.
 液体クロマトグラフィーは、種々の化合物や組成物、生物材料等を分離精製するために広く使用されている。液体クロマトグラフィーによる分離精製は、スラリーやゲル状の充填剤が封入されたカラムに、目的の物質を含有する液体を送入し、カラムを経て排出される液体を分取・回収することで行われる。 Liquid chromatography is widely used to separate and purify various compounds, compositions, biological materials, and the like. Separation and purification by liquid chromatography is performed by feeding a liquid containing the target substance into a column in which a slurry or gel-like packing material is sealed, and collecting and collecting the liquid discharged through the column. Is called.
 液体クロマトグラフィーに用いられるカラムの一種として、可動栓式カラムがある。可動栓式カラムは、充填剤を封止するために備えられる栓の少なくとも一方が、カラム本体筒の内壁に沿って上下方向に可動であり、充填剤を加圧充填することによって、分離精製効率の向上を図るものである。可動栓の部分では、可動栓の外周とカラム本体筒の内壁との当接によって密閉が保たれる。ゆえに、密閉性を確保するための可動栓のシール構造については、様々な提案がなされている。 One type of column used for liquid chromatography is a movable stopper column. The movable stopper type column has at least one of the stoppers provided for sealing the packing material, which is movable in the vertical direction along the inner wall of the column main body cylinder. It is intended to improve. In the movable stopper portion, the hermeticity is maintained by the contact between the outer periphery of the movable stopper and the inner wall of the column body cylinder. Therefore, various proposals have been made for the seal structure of the movable stopper for ensuring the sealing property.
 例えば特許文献1には、可動栓の外周に段差を有し、当該段差に密着して配置され、外側がカラム内壁に対してテーパー面を含むフィルターパッキンと、フィルターパッキンの外周に密着して配置され、外側がカラム内壁に密着するシールパッキンとを備え、可動栓とフィルターパッキンとシールパッキンとによって密閉を実現するシール構造が開示されている。このシール構造によれば、可動栓の外周の段差構造によって可動栓とフィルターパッキンとが密着し、フィルターパッキンのテーパー構造によってシールパッキンは外側に力を受けるためシールパッキンとカラム内壁との密着性が高くなり、さらに、テーパー部によってシールパッキンには内側に働く力が作用するため、フィルターパッキンと可動栓との密着性が高くなる。 For example, in Patent Document 1, there is a step on the outer periphery of the movable stopper, the filter packing is disposed in close contact with the step, and the outer side is disposed in close contact with the outer periphery of the filter packing including a tapered surface with respect to the inner wall of the column. Further, there is disclosed a seal structure that includes a seal packing whose outer side is in close contact with the inner wall of the column and realizes sealing by a movable stopper, a filter packing, and a seal packing. According to this seal structure, the movable stopper and the filter packing are brought into close contact with each other by the step structure on the outer periphery of the movable stopper, and the seal packing receives an external force due to the taper structure of the filter packing, so the adhesion between the seal packing and the column inner wall is improved. Further, since the inner working force acts on the seal packing by the taper portion, the adhesion between the filter packing and the movable plug is increased.
 また特許文献2には、可動栓コアと、環状のスクレーパと、当該可動栓コアの基端側が内嵌した凹所を有するベースと、可動栓コアの外周を取り巻くパッキンと、可動栓コアを引き付けるボルトとを備え、可動栓コアのフランジ部にスクレーパが係合している可動栓が開示されている。特許文献2の可動栓は、ボルトの締上げによって可動栓コアがベースに引き付けられると、パッキンが拡径方向に膨らむ。このパッキンがカラム内壁に接触することにより、可動栓とカラム内壁とがシールされる。 Further, in Patent Document 2, a movable stopper core, an annular scraper, a base having a recess in which the proximal end side of the movable stopper core is fitted, a packing surrounding the outer periphery of the movable stopper core, and the movable stopper core are attracted. A movable stopper is disclosed that includes a bolt and a scraper is engaged with a flange portion of the movable stopper core. In the movable stopper of Patent Document 2, when the movable stopper core is attracted to the base by tightening the bolt, the packing expands in the diameter increasing direction. When the packing contacts the inner wall of the column, the movable stopper and the inner wall of the column are sealed.
 しかしながら、様々なシール構造によっても、充填剤の漏出を完全に防止することは極めて困難である。また、カラム内壁に沿って可動栓が摺動していく過程などで、カラム内壁と可動栓との間に充填剤や液体が入り込むと、毛細管現象によって液漏れが助長されることも知られている。 However, even with various seal structures, it is extremely difficult to completely prevent the filler from leaking out. It is also known that when a movable stopper slides along the inner wall of a column, if a filler or liquid enters between the inner wall of the column and the movable stopper, liquid leakage is promoted by capillary action. Yes.
 可動栓を押圧する手段としては、ガス圧シリンダや油圧シリンダを用いることが知られている。例えば特許文献3では、カラム下方に備えられた可動栓を、下から上へ移動することによって加圧を行う例(図1)、カラム上方に備えられた可動栓を上から下へ移動することによって加圧を行う例(図2)を開示している。いずれの場合も、油圧シリンダがロッドを介して可動栓と接続されており、油圧シリンダによって可動栓を押圧する。特許文献3の可動栓式カラムは、可動栓の先端側(カラム内部側)が充填剤と対面し、可動栓の基端側は外部に露出する構造である。 It is known to use a gas pressure cylinder or a hydraulic cylinder as means for pressing the movable stopper. For example, in Patent Document 3, an example in which pressurization is performed by moving the movable stopper provided below the column from below to above (FIG. 1), and the movable stopper provided above the column is moved from top to bottom. Discloses an example of pressurization (FIG. 2). In either case, the hydraulic cylinder is connected to the movable stopper via the rod, and the movable stopper is pressed by the hydraulic cylinder. The movable stopper column of Patent Document 3 has a structure in which the distal end side (column inner side) of the movable stopper faces the filler, and the proximal end side of the movable stopper is exposed to the outside.
 また、両端に固定栓(フランジ)を備えた閉鎖カラムの内部に、可動栓が挿入された可動栓式カラムもある。例えば特許文献4では、クロマトグラフィーカラムにおいて、上部フランジ115と底部フランジ116とを有する円筒状のハウジング103(カラム本体筒)に、移動可能なアダプタ102(可動栓)が挿入されており、クロマトグラフィー媒体のベッド(充填剤)は、液圧チャンバ120によって駆動されるアダプタ102(可動栓)によって充填されることが開示されている。このカラムでは、アダプタ(可動栓)の先端側は充填剤と対面し、アダプタの基端側は液圧媒体と対面している。つまり、カラム内で、可動栓を挟んで充填剤と液圧媒体とが隣り合っている。 Also, there is a movable stopper column in which a movable stopper is inserted inside a closed column having fixed stoppers (flanges) at both ends. For example, in Patent Document 4, in a chromatography column, a movable adapter 102 (movable stopper) is inserted into a cylindrical housing 103 (column body tube) having an upper flange 115 and a bottom flange 116, and chromatography is performed. It is disclosed that the media bed (filler) is filled by an adapter 102 (movable plug) driven by a hydraulic chamber 120. In this column, the distal end side of the adapter (movable stopper) faces the filler, and the proximal end side of the adapter faces the hydraulic medium. That is, in the column, the filler and the hydraulic medium are adjacent to each other with the movable stopper interposed therebetween.
特許第3929407号公報Japanese Patent No. 3929407 特開2011-191256号公報JP 2011-191256 A 特開2006-78231号公報JP 2006-78231 A 特表2010-540926号公報Special table 2010-540926
 特許文献3のような、可動栓の基端側が外部に露出したカラム(本明細書では、開放系可動栓式カラムという。)では、加圧されたカラム内部から充填剤の漏れが生じた場合、カラム外部に漏出物が排出される。
 一方、特許文献4のような、両端に固定栓を有するカラム内に、充填剤と加圧媒体とが存在し、可動栓を挟んで充填剤と加圧媒体とが隣り合う可動栓式カラム(本明細書では、閉鎖系可動栓式カラムという。)においては、可動栓での漏れが生じると、充填剤が加圧媒体へ漏出するだけでなく、加圧媒体が充填剤に混入することもある。加圧媒体の充填剤への混入は、カラム性能の低下だけでなく、分離精製する物質の汚染や変質を招く可能性もあるため、深刻な問題である。それゆえ、充填剤と加圧媒体との液絡を防止し、充填剤と加圧媒体とを確実に分離することが必要である。
 すなわち本発明の課題は、可動栓での漏れを防止し、また漏れが生じても、充填剤の汚染が生じることのない、可動栓式カラムを提供することを目的とする。
In a column in which the base end side of the movable stopper is exposed to the outside as in Patent Document 3 (referred to as an open system movable stopper column in this specification), when the filler leaks from the pressurized column. Leakage is discharged outside the column.
On the other hand, in a column having fixed stoppers at both ends, as in Patent Document 4, a filler and a pressure medium exist, and a movable stopper column (with a filler plug and a pressure medium adjacent to each other with the movable stopper interposed therebetween) In this specification, in a closed system movable stopper column, when leakage occurs at the movable stopper, not only the filler leaks into the pressurized medium but also the pressurized medium may be mixed into the filler. is there. Incorporation of the pressurized medium into the packing material is a serious problem because not only the performance of the column is deteriorated but also contamination and alteration of the substance to be separated and purified may be caused. Therefore, it is necessary to prevent the liquid junction between the filler and the pressurizing medium and to reliably separate the filler and the pressurized medium.
That is, an object of the present invention is to provide a movable stopper column that prevents leakage at the movable stopper and that does not cause contamination of the packing material even if leakage occurs.
 発明者は、上記課題を解決するために検討する中で、可動栓の外周に先端側パッキン、基端側パッキンという少なくとも2箇所に分離されたパッキンを設けて、少なくとも2段階で液漏れを防止する構造を採用するとともに、先端側パッキンと基端側パッキンとの間に、可動栓の外周の全周にわたるセパレート溝を設けることに着想した。さらに、セパレート溝とカラム外部とを連通する連絡流路を設けることで、充填剤や加圧媒体が先端側パッキン及び/又は基端側パッキンを越えて漏出した場合でも、漏出物はセパレート溝に溜まり、連絡流路を経て外部に排出されるため、両液の混合を防止できること、また、当該連絡流路に液体を流通することで、カラム内壁を洗浄することが可能となり、密閉性とカラムの長寿命化に極めて有効であることを見出し、本発明を完成した。 The inventor has studied in order to solve the above-mentioned problems, and at least two stages of the distal end side packing and the proximal end side packing are provided on the outer periphery of the movable stopper to prevent liquid leakage in at least two stages. In addition to adopting such a structure, the present inventors have conceived of providing a separation groove over the entire outer periphery of the movable plug between the distal end side packing and the proximal end side packing. Furthermore, by providing a communication channel that communicates the separation groove with the outside of the column, even if the packing material or pressurized medium leaks beyond the front end side packing and / or the proximal end side packing, the leaked material will enter the separate groove. Since it collects and is discharged to the outside through the communication channel, it is possible to prevent mixing of both liquids, and it is possible to wash the inner wall of the column by circulating the liquid through the communication channel, so that the sealing property and the column Was found to be extremely effective in extending the service life of the present invention.
 すなわち本発明は以下の構成を有する。
[1]液体クロマトグラフィー用のカラムであって、
当該カラムは、カラム本体筒の内壁に沿って移動可能に設けられた可動栓を有し、
当該可動栓は、基端側から先端側へ押圧され、
当該可動栓の先端側の外周に外嵌される環状の先端側パッキンと、
当該可動栓の基端側の外周に外嵌される環状の基端側パッキンと、を備えてなり、
前記先端側パッキンと前記基端側パッキンの間に、可動栓の外周全周にわたって形成されたセパレート溝を有し、
前記セパレート溝は、前記可動栓の内部に設けられた連絡流路を介して、カラム外部と連通していることを特徴とする、液体クロマトグラフィー用のカラム。
That is, the present invention has the following configuration.
[1] A column for liquid chromatography,
The column has a movable stopper provided movably along the inner wall of the column main body cylinder,
The movable stopper is pressed from the proximal end side to the distal end side,
A ring-shaped front end side packing that is fitted on the outer periphery of the front end side of the movable stopper;
An annular base end side packing that is fitted on the outer periphery of the base end side of the movable stopper, and
Between the distal end side packing and the proximal end side packing, has a separate groove formed over the entire outer periphery of the movable stopper,
The column for liquid chromatography, wherein the separation groove communicates with the outside of the column via a communication channel provided inside the movable stopper.
[2]前記セパレート溝と前記連絡流路との接続部は、可動栓の外周の直径方向に対向する2箇所に設けられており、
前記連絡流路は、
カラム外部から第一の接続部に至る第一の連絡流路と、
第二の接続部からカラム外部に至る第二の連絡流路と、を備えてなる、[1]に記載のカラム。
[2] Connection portions between the separate groove and the communication channel are provided at two locations facing the diameter direction of the outer periphery of the movable stopper,
The communication channel is
A first communication channel from the outside of the column to the first connection,
The column according to [1], comprising: a second communication channel extending from the second connection portion to the outside of the column.
[3]前記セパレート溝が、前記先端側パッキンと前記基端側パッキンとの間で、可動栓の外周に外嵌される環状のパッキンに形成された溝である、[1]又は[2]に記載のカラム。 [3] The separate groove is a groove formed in an annular packing that is fitted on the outer periphery of the movable stopper between the distal end side packing and the proximal end side packing. [1] or [2] The column as described in.
[4]前記可動栓の軸芯部には、カラム内部から液体を取り出すための取り出し配管が設けられており、
前記連絡流路は、前記可動栓内部及び前記取り出し配管を通って、前記セパレート溝とカラム外部とを連通していることを特徴とする、[1]~[3]のいずれかに記載のカラム。
[4] The shaft core of the movable stopper is provided with a take-out pipe for taking out the liquid from the inside of the column,
The column according to any one of [1] to [3], wherein the communication channel communicates the separation groove and the outside of the column through the movable stopper and the take-out pipe. .
[5]前記連絡流路が、前記可動栓内部及び前記取り出し配管に挿通されたチューブである、[1]~[4]のいずれかに記載のカラム。 [5] The column according to any one of [1] to [4], wherein the communication channel is a tube inserted into the movable stopper and the take-out pipe.
[6]前記カラムが、両端に固定栓を有するとともに、カラム内に可動栓が挿入されたカラムであって、
当該可動栓の先端側には充填剤が充填され、当該可動栓の基端側には加圧媒体が充填される、[1]~[5]のいずれかに記載のカラム。
[6] The column has fixed stoppers at both ends and a movable stopper is inserted in the column,
The column according to any one of [1] to [5], wherein a front end side of the movable plug is filled with a filler, and a proximal end side of the movable plug is filled with a pressurized medium.
[7]前記カラムが、一端に固定栓を有し、他端は開放であり、カラム内に可動栓が挿入されたカラムである、[1]~[3]のいずれかに記載のカラム。 [7] The column according to any one of [1] to [3], wherein the column has a fixed stopper at one end, the other end is open, and a movable stopper is inserted into the column.
[8]液体クロマトグラフィー用カラムの洗浄方法であって、
当該カラムは、カラム本体筒の内壁に沿って移動可能に設けられた可動栓を有し、
当該可動栓は、基端側から先端側へ押圧され、
当該可動栓の先端側の外周に外嵌される環状の先端側パッキンと、
当該可動栓の基端側の外周に外嵌される環状の基端側パッキンと、を備えてなり、
前記先端側パッキンと前記基端側パッキンの間に、可動栓の外周全周にわたって形成されたセパレート溝を有し、
前記セパレート溝は、前記可動栓の内部に設けられた連絡流路を介して、カラム外部と連通しており、
カラム外部から、前記連絡流路を通じて前記セパレート溝に液体を送入する工程を含む、洗浄方法。
[8] A method for washing a column for liquid chromatography,
The column has a movable stopper provided movably along the inner wall of the column main body cylinder,
The movable stopper is pressed from the proximal end side to the distal end side,
A ring-shaped front end side packing that is fitted on the outer periphery of the front end side of the movable stopper;
An annular base end side packing that is fitted on the outer periphery of the base end side of the movable stopper, and
Between the distal end side packing and the proximal end side packing, has a separate groove formed over the entire outer periphery of the movable stopper,
The separation groove communicates with the outside of the column through a communication channel provided inside the movable stopper,
The washing | cleaning method including the process of sending in a liquid to the said separation groove | channel through the said connection flow path from the column exterior.
[9]前記セパレート溝と前記連絡流路との接続部は、可動栓の外周の直径方向に対向する2箇所に設けられており、
前記連絡流路は、
カラム外部から第一の接続部に至る第一の連絡流路と、
第二の接続部からカラム外部に至る第二の連絡流路と、を備えてなり、
前記第一の連絡流路から液体を送入し、前記セパレート溝を経て前記第二の連絡流路から当該液体を排出させる工程を含む、[8]に記載の洗浄方法。
[9] Connection portions between the separate groove and the communication channel are provided at two locations facing the diameter direction of the outer periphery of the movable stopper,
The communication channel is
A first communication channel from the outside of the column to the first connection,
A second communication flow path from the second connection part to the outside of the column, and
The cleaning method according to [8], including a step of feeding a liquid from the first communication channel and discharging the liquid from the second communication channel through the separation groove.
[10]前記可動栓が所定の位置に静止した状態で、前記液体の送入を行うことを特徴とする、[8]又は[9]に記載の洗浄方法。 [10] The cleaning method according to [8] or [9], wherein the liquid is fed while the movable stopper is stationary at a predetermined position.
[11]前記可動栓を前記カラムの内壁に沿って移動させながら、前記液体の送入を行うことを特徴とする、[8]又は[9]に記載の洗浄方法。 [11] The cleaning method according to [8] or [9], wherein the liquid is fed while moving the movable stopper along the inner wall of the column.
 本発明によれば、可動栓式カラムにおいて、可動栓とカラム内壁との間をシールして漏れを抑えるとともに、漏れが生じた場合であっても、漏出物をセパレート溝からカラム外部に排出することができる。特に、可動栓を挟んで充填剤と加圧媒体が隣り合っている場合に、両液の液絡の発生を防止できる。また、セパレート溝に流体を通してカラム内壁を洗浄することによって、密閉性及びカラム寿命の向上を図ることができる。 According to the present invention, in a movable stopper column, the gap between the movable stopper and the inner wall of the column is sealed to suppress leakage, and even when leakage occurs, the leakage is discharged from the separation groove to the outside of the column. be able to. In particular, when the filler and the pressurized medium are adjacent to each other with the movable stopper interposed therebetween, it is possible to prevent the occurrence of a liquid junction between the two liquids. In addition, by sealing the inner wall of the column through a fluid through the separate groove, it is possible to improve the sealing property and the column life.
本発明のカラムを含む液体クロマトグラフィー装置を表す概要図である。It is a schematic diagram showing the liquid chromatography apparatus containing the column of this invention. 本発明の可動栓式カラムの断面を表す概要図である。It is a schematic diagram showing the section of the movable stopper column of the present invention. 本発明のカラムの可動栓のシール構造の拡大図である。It is an enlarged view of the seal structure of the movable stopper of the column of this invention. 左図は本発明のカラムの可動栓及び取り出し配管の断面図、右図は流路を抽出した図である。The left figure is a sectional view of the movable stopper of the column and the extraction pipe of the column of the present invention, and the right figure is an extracted flow path. 本発明の別の可動栓式カラムの断面を表す概要図である。It is a schematic diagram showing the section of another movable stopper type column of the present invention.
 以下、図面に基づいて本発明を説明するが、本発明は図示された例に限定されるものではない。また複数の図面にわたって同様の構成には同様の符号を付し、説明を省略する場合がある。
 図1は本発明のカラムを含む液体クロマトグラフィー装置の概要図である。カラム1は、回転駆動装置2から延在する回転軸(不図示)及び支持枠3によって、架台4に懸架されている。カラム1は、回転駆動装置2の駆動によって回転軸を中心に回転可能である。カラム本体筒5の上端及び下端はそれぞれ、上部固定栓6及び下部固定栓7によって閉止されている。カラムを使用するときには、上部固定栓6の中央に設けられた供給口8に配管を取り付け、当該配管を通じて、分離精製対象の液体や溶離液を供給する。取り出し配管9は、カラム内に挿入されている可動栓から、下部固定栓7を貫通して下方に延在している。取り出し配管9の中には2本の細径パイプ10が挿通されており、細径パイプ10は、取り出し配管9の下端で屈曲して横方向に伸びている。
Hereinafter, the present invention will be described with reference to the drawings, but the present invention is not limited to the illustrated examples. Moreover, the same code | symbol is attached | subjected to the same structure over several drawing, and description may be abbreviate | omitted.
FIG. 1 is a schematic diagram of a liquid chromatography apparatus including the column of the present invention. The column 1 is suspended from a gantry 4 by a rotation shaft (not shown) extending from the rotation drive device 2 and a support frame 3. The column 1 can be rotated around the rotation axis by driving the rotation driving device 2. The upper end and the lower end of the column main body cylinder 5 are closed by an upper fixing plug 6 and a lower fixing plug 7, respectively. When the column is used, a pipe is attached to the supply port 8 provided in the center of the upper fixing plug 6, and the liquid to be separated and purified and the eluent are supplied through the pipe. The extraction pipe 9 extends downward from the movable stopper inserted in the column through the lower fixed stopper 7. Two small-diameter pipes 10 are inserted into the take-out pipe 9, and the thin-diameter pipe 10 is bent at the lower end of the take-out pipe 9 and extends in the lateral direction.
 図2はカラム1の概要断面図である。カラム1の上端は上部固定栓6で閉止され、上部固定栓6とカラム本体筒5はクランプ21で固定されている。上部固定栓6の詳細な構造は、公知の構成を用いることができ特に制限されないが、図示の例では、フィルター22、テーパー型フランジ23(これらは焼結された一体物である)及び上蓋フランジ24等が積層され、互いに密着するようにボルトで係止される。周縁はパッキンで封止されている。パッキンの構造は特に制限されないが、特許第3929407号に開示されるシール構造を用いることが好ましい。 FIG. 2 is a schematic sectional view of the column 1. The upper end of the column 1 is closed by an upper fixing plug 6, and the upper fixing plug 6 and the column main body cylinder 5 are fixed by a clamp 21. The detailed structure of the upper fixing plug 6 may be a known structure and is not particularly limited. In the illustrated example, the filter 22, the tapered flange 23 (these are a sintered unit), and the upper lid flange. 24 and the like are stacked and locked with bolts so as to be in close contact with each other. The periphery is sealed with packing. The structure of the packing is not particularly limited, but the seal structure disclosed in Japanese Patent No. 3929407 is preferably used.
 カラム1の下端は下部固定栓7で閉止され、クランプ25で固定されている。下部固定栓7も、公知の構成を用いればよく、特に制限されないが、図示の例では、テーパー型フランジ26、下蓋フランジ27等が積層され、互いに密着するようにボルトで係止されている。下部固定栓7の中央には貫通孔が設けられて、取り出し配管9が貫通している。下部固定栓7には、カラム外部から加圧室30に加圧媒体を供給及び排出するための、加圧媒体供給口28及び加圧媒体排出口29が設けられている。加圧媒体供給口28に加圧媒体の供給配管を、加圧媒体排出口29に加圧媒体の排出配管を、それぞれ接続する。それぞれの配管にはバルブを備えるとよい。供給口28のバルブを開、排出口29のバルブを閉として、ポンプを用いて加圧媒体をカラム内に送入することで、可動栓を上方に動かし、加圧する。次いで、供給口28及び排出口29のバルブを両方閉とすることによって、加圧状態を維持できる。また、排出口29のバブルを開とすることで、加圧媒体を排出させて、圧力を下げ、可動栓を下方に動かすことができる。 The lower end of the column 1 is closed with a lower fixing plug 7 and fixed with a clamp 25. The lower fixing plug 7 may also have a known configuration and is not particularly limited. In the illustrated example, a tapered flange 26, a lower lid flange 27, and the like are stacked and locked with bolts so as to be in close contact with each other. . A through hole is provided in the center of the lower fixing plug 7, and the extraction pipe 9 passes therethrough. The lower fixing plug 7 is provided with a pressurized medium supply port 28 and a pressurized medium discharge port 29 for supplying and discharging a pressurized medium to and from the pressure chamber 30 from the outside of the column. A pressurized medium supply pipe is connected to the pressurized medium supply port 28, and a pressurized medium discharge pipe is connected to the pressurized medium discharge port 29. Each pipe may be provided with a valve. The valve of the supply port 28 is opened, the valve of the discharge port 29 is closed, and the pressurized medium is fed into the column using a pump, whereby the movable stopper is moved upward to pressurize. Next, by closing both the valves of the supply port 28 and the discharge port 29, the pressurized state can be maintained. Moreover, by opening the bubble of the discharge port 29, the pressurized medium can be discharged, the pressure can be lowered, and the movable stopper can be moved downward.
 加圧媒体は液体であれば特に制限されないが、油、有機溶媒、水等が使用でき、水を主成分とすることが好ましい。加圧媒体が水である場合、殺菌や腐敗防止の目的で、アルコール類、具体的にはエタノールやメタノールが混合されていてもよい。また、殺菌剤や粘度調整剤等の任意の物質を含んでもよい。 The pressurizing medium is not particularly limited as long as it is a liquid, but oil, organic solvent, water and the like can be used, and water is preferably the main component. When the pressurizing medium is water, alcohols, specifically ethanol or methanol may be mixed for the purpose of sterilization and anti-corruption. Moreover, you may include arbitrary substances, such as a disinfectant and a viscosity modifier.
 カラム内の圧力は、カラムの体積、充填剤の種類や目的によって適切に選択することができるが、例えば、0MPa~10MPa(ゲージ圧)とすることができる。 The pressure in the column can be appropriately selected depending on the volume of the column, the type of filler, and the purpose, and can be, for example, 0 MPa to 10 MPa (gauge pressure).
 カラム本体筒5の内部には、その内壁に沿って上下に摺動可能である可動栓31が挿入されている。可動栓31の先端側(図2の上方)は充填剤室32であり、充填剤が充填されて、分離床が形成される。可動栓31は、フィルター33、テーパー型フランジ34、可動栓本体35等が積層され、互いに密着するようにボルトで係止される。可動栓31の最も先端に位置するフィルター33は、充填剤と対面する。一方、可動栓31の基端側は加圧媒体に対面する。 A movable stopper 31 that can slide up and down along the inner wall is inserted into the column body cylinder 5. The distal end side (upper side in FIG. 2) of the movable plug 31 is a filler chamber 32, which is filled with a filler to form a separation bed. The movable plug 31 includes a filter 33, a tapered flange 34, a movable plug body 35, and the like, and is locked with bolts so as to be in close contact with each other. The filter 33 located at the foremost end of the movable plug 31 faces the filler. On the other hand, the proximal end side of the movable plug 31 faces the pressurized medium.
 取り出し配管9は可動栓本体35から延在している。フィルター33の下部から、取り出し配管9の中にカラム流出管36が挿通されている。カラム上方から充填剤室32に供給された液体は、分離床を経て、カラム流出管36を通じてカラム外に排出され、分取・回収される。 The extraction pipe 9 extends from the movable stopper main body 35. A column outflow pipe 36 is inserted into the extraction pipe 9 from the lower part of the filter 33. The liquid supplied to the filler chamber 32 from above the column passes through the separation bed, is discharged out of the column through the column outflow pipe 36, and is collected and collected.
 可動栓31の外周には、先端側パッキン、基端側パッキン、及び、先端側パッキンと基端側パッキンの間にある、溝付きパッキンが外嵌されている。また、溝付きパッキンから、可動栓の内部を貫通し、取り出し配管を通って延在する連絡流路が設けられている。可動栓のシール構造と連絡流路について、次の図面において詳しく説明する。 The outer periphery of the movable plug 31 is fitted with a front end side packing, a base end side packing, and a grooved packing between the front end side packing and the base end side packing. In addition, a communication flow path extending from the grooved packing through the inside of the movable stopper and extending through the extraction pipe is provided. The seal structure of the movable stopper and the communication channel will be described in detail in the following drawings.
 図3は、可動栓31の断面概略図である。可動栓本体35は、3枚のフランジを組み合わせて形成されている。可動栓本体35の上部には、先端がテーパー状で、外周に5連の凹凸部を有する先端側パッキン38が外嵌されている。可動栓本体35の上部には、フィルター33と一体化されたテーパーフランジ34が積層されており、当該テーパーフランジ34と先端側パッキン38とは、互いに組み合うテーパー形状を有する。先端側パッキンの構造は特に制限されないが、特許第3929407号に記載されたシール構造を用いれば、充填剤の漏れを最小化できるため好ましい。 FIG. 3 is a schematic sectional view of the movable stopper 31. The movable plug body 35 is formed by combining three flanges. On the upper part of the movable plug main body 35, a front end side packing 38 having a tapered front end and five concavo-convex portions on the outer periphery is fitted. A taper flange 34 integrated with the filter 33 is laminated on the upper portion of the movable plug body 35, and the taper flange 34 and the front end side packing 38 have a tapered shape that is combined with each other. The structure of the front end packing is not particularly limited, but it is preferable to use the seal structure described in Japanese Patent No. 3929407 because the leakage of the filler can be minimized.
 可動栓31の下部には、逆V字型の基端側パッキン39が外嵌されている。基端側パッキン39の形状は特に制限されないが、逆V字型のパッキンを用いれば、可動栓31が下方から押圧されると、パッキンの一部が拡径してカラム内壁と密着するため、優れたシール性能を得られる。 An inverted V-shaped proximal end packing 39 is fitted on the lower portion of the movable stopper 31. The shape of the base end side packing 39 is not particularly limited, but if an inverted V-shaped packing is used, when the movable stopper 31 is pressed from below, a part of the packing expands and comes into close contact with the inner wall of the column. Excellent sealing performance can be obtained.
 可動栓本体35の外周、先端側パッキン38と基端側パッキン39との間に、セパレート溝を有する溝付きパッキン40が外嵌されている。セパレート溝の幅や深さは、カラムの直径や長さによって適切に設定され、特に制限されないが、例えば、幅1~20mm、深さ1~10mm程度とすることができる。またセパレート溝は、連絡部41で連絡流路42と接続している。連絡流路42は、可動栓本体35及び取り出し配管9の内部に挿通されてカラム外部に至る細径チューブである。連絡流路42の末端は開放されている。すなわち、セパレート溝及び連絡流路42は、常圧である。なお、図3の連絡流路及びセパレート溝には、液体の流れが模式的に示されている。 A grooved packing 40 having a separate groove is externally fitted between the outer periphery of the movable stopper main body 35 and between the distal end side packing 38 and the proximal end side packing 39. The width and depth of the separation groove are appropriately set according to the diameter and length of the column and are not particularly limited, but can be, for example, about 1 to 20 mm in width and about 1 to 10 mm in depth. Further, the separation groove is connected to the communication channel 42 at the communication part 41. The communication flow path 42 is a small diameter tube that is inserted into the movable stopper main body 35 and the extraction pipe 9 and reaches the outside of the column. The end of the communication channel 42 is open. That is, the separation groove and the communication channel 42 are at normal pressure. In addition, the flow of the liquid is typically shown in the communication channel and the separation groove in FIG.
 フィルター33及びテーパーフランジ34に、カラム流出管36が接続されている。カラム流出管36は取り出し配管9の内部に挿通されている。取り出し配管9の中にカラム流出管36を収容した二重構造とすることで、万一、取り出し配管9が破損した場合でも、カラム流出液が汚染されるリスクが低減される。 A column outflow pipe 36 is connected to the filter 33 and the taper flange 34. The column outflow pipe 36 is inserted into the takeout pipe 9. By adopting a double structure in which the column outflow pipe 36 is accommodated in the takeout pipe 9, even if the takeout pipe 9 is broken, the risk of contamination of the column outflow liquid is reduced.
 カラム中の充填剤や加圧媒体が、先端側パッキン又は基端側パッキンを越えて漏出した時、漏出物は、溝付きパッキン40のセパレート溝に溜まり、連絡流路を経て外部に排出される。カラム内が加圧状態であるのに対して、セパレート溝及び連絡流路は大気圧に維持されているため、一旦セパレート溝に漏出した漏出物はカラム内に戻らない。すなわち本発明のカラムでは、パッキンを越えてカラム内容物の漏出が生じたとしても、充填剤と加圧媒体の液絡が生じない。 When the packing material or pressurized medium in the column leaks beyond the front end side packing or the base end side packing, the leaked material accumulates in the separate groove of the grooved packing 40 and is discharged to the outside through the communication channel. . While the inside of the column is in a pressurized state, the separation groove and the communication flow path are maintained at atmospheric pressure, so that the leaked material once leaked into the separation groove does not return to the column. That is, in the column of the present invention, even if leakage of the column contents occurs beyond the packing, a liquid junction between the filler and the pressurized medium does not occur.
 図4(左)は可動栓及び連絡流路全体の断面図、図4(右)は流路全体を模式的に示した図である。図4(右)に示されるように、連絡流路の一方端aから液体を送入すると、液体は、第一の連絡流路bを通じて、当該連絡流路とセパレート溝との第一の接続部cに至る。液体は、当該接続部cを経てセパレート溝に達すると、左右に分かれ、セパレート溝に沿ってカラムの内壁面を周回する。直径方向に対向する位置にある第二の接続部dに至ると、液体は合流し、第二の連絡流路eを経て他方端fから排出される。 Fig. 4 (left) is a sectional view of the movable stopper and the entire communication channel, and Fig. 4 (right) is a diagram schematically showing the entire channel. As shown in FIG. 4 (right), when the liquid is fed from one end a of the communication channel, the liquid is connected through the first communication channel b to the first connection between the communication channel and the separation groove. It reaches part c. When the liquid reaches the separation groove via the connection portion c, the liquid is divided into left and right, and circulates along the inner wall surface of the column along the separation groove. When reaching the second connecting portion d located in the diametrically opposed position, the liquids merge and are discharged from the other end f through the second connecting flow path e.
 上記のように連絡流路に液体を流通することによって、カラム内壁を洗浄できる。可動栓が静止した状態で洗浄してもよいし、また、可動栓を上下に動かしながら液体を流通することによって、カラム内壁の一部又は全体を洗浄することも可能である。本発明の可動栓を備えるカラムは、可動栓を取り外すことなくカラム内壁を洗浄することができるため、閉鎖系可動栓式カラムにおいても、充填剤を加圧充填した状態でカラム内壁を洗浄できる。また開放系可動栓式カラムにおいても、カラムを架台にセッティングした状態でカラム内壁を洗浄することが可能であり、より簡単にカラムの洗浄を行える。 As described above, the inner wall of the column can be washed by circulating the liquid through the communication channel. The movable stopper may be washed in a stationary state, or a part or the whole of the inner wall of the column may be washed by circulating a liquid while moving the movable stopper up and down. The column provided with the movable stopper of the present invention can wash the inner wall of the column without removing the movable stopper. Therefore, even in a closed system movable stopper type column, the inner wall of the column can be washed in a state where the packing material is pressurized. Also in an open system movable stopper column, it is possible to wash the inner wall of the column with the column set on a gantry, and the column can be washed more easily.
 連絡流路に流通する液体は、水、有機溶媒等を用いることができ、特に制限されない。また、目的に応じて、界面活性剤や殺菌剤等の任意の成分を含んでもよい。液体の送入方法は特に制限されないが、高い洗浄効果を得るためには、ポンプを用いて液体を圧入することが好ましい。 The liquid flowing through the communication channel can be water, an organic solvent, or the like, and is not particularly limited. Moreover, according to the objective, you may include arbitrary components, such as surfactant and a disinfectant. The liquid feeding method is not particularly limited, but in order to obtain a high cleaning effect, it is preferable to press-fit the liquid using a pump.
 本発明の洗浄方法によれば、セパレート溝に溜まった漏出物を洗浄除去することができるほか、カラム内壁に付着した充填剤の細片や酸等を除去して、パッキンへの充填剤の噛み込みを防止してカラムの密閉性を保つこと、カラム内壁の汚れや腐食を防止すること、カラム内部を清浄に保つこと等が可能で、カラムを良好な状態で長期間、使用することができる。 According to the cleaning method of the present invention, the leakage accumulated in the separation groove can be cleaned and removed, and the packing material can be bite into the packing by removing packing particles and acid adhering to the inner wall of the column. It is possible to keep the column hermetically sealed, prevent contamination and corrosion of the inner wall of the column, keep the inside of the column clean, and the column can be used in a good condition for a long time. .
 図5は開放系可動栓式カラムにおける、本発明の実施例を示している。カラム1の上部固定栓は、図2の実施例とほぼ同様の構造であり、説明を省略する。カラム1の上端には、カラム内に溶離液等を送入するための供給配管50が取り付けられている。カラム1の下端は開放である。カラム本体筒5は、下端近傍でアーム51と接続され、アーム51によって支持されている。カラム本体筒5に、カラム下方から可動栓52が挿入されている。可動栓52は油圧シリンダ(不図示)のロッド53と接続され、ロッド53によって支持されている。可動栓52は油圧シリンダによって押圧される。可動栓52とロッド53はクランプ54で取り外し可能に接続されている。 FIG. 5 shows an embodiment of the present invention in an open system movable stopper column. The upper fixing stopper of the column 1 has substantially the same structure as that of the embodiment of FIG. A supply pipe 50 for sending an eluent or the like into the column is attached to the upper end of the column 1. The lower end of column 1 is open. The column body cylinder 5 is connected to and supported by the arm 51 in the vicinity of the lower end. A movable stopper 52 is inserted into the column main body cylinder 5 from below the column. The movable plug 52 is connected to and supported by a rod 53 of a hydraulic cylinder (not shown). The movable stopper 52 is pressed by a hydraulic cylinder. The movable stopper 52 and the rod 53 are detachably connected by a clamp 54.
 可動栓52は、フィルターと一体化されたテーパーフランジ55と、可動栓本体56とが密着して積層されている。フィルターの下方から、カラム内部からの流出液の取り出し配管57が延設されている。 The movable stopper 52 has a taper flange 55 integrated with a filter and a movable stopper body 56 in close contact with each other. From the lower side of the filter, an effluent extraction pipe 57 extending from the inside of the column is extended.
 可動栓52の外周に、先端側パッキン60と基端側パッキン61とが外嵌されている。そして、先端側パッキン60と基端側パッキン61との間に、可動栓の外周全周にわたる、セパレート溝62が形成されている。セパレート溝62は、可動栓の内部を通ってカラム外に連通する連絡流路63、64と接続している。カラム内の充填剤が、先端側パッキン60から漏出した場合、セパレート溝62に溜まり、連絡流路63、64を通じて排出される。 A distal end side packing 60 and a proximal end side packing 61 are fitted on the outer periphery of the movable stopper 52. A separation groove 62 is formed between the distal end side packing 60 and the proximal end side packing 61 over the entire outer periphery of the movable stopper. The separation groove 62 is connected to connecting flow paths 63 and 64 that communicate with the outside of the column through the movable stopper. When the packing material in the column leaks from the front end side packing 60, it accumulates in the separation groove 62 and is discharged through the communication flow paths 63 and 64.
 開放系可動栓式カラムにおいて、可動栓外周にセパレート溝を有することで、充填剤の漏れが生じた場合であっても、漏出した充填剤を効率よく回収することが可能となり、漏出物によってカラム設置場所の床面を汚すことがない。また、前述と同様に、連絡流路63、64及びセパレート溝62に液体を流通することで、カラムの内壁を洗浄することができる。 In an open system movable stopper column, having a separate groove on the outer periphery of the movable stopper makes it possible to efficiently collect the leaked filler even when the filler leaks. The floor of the installation site is not soiled. Further, as described above, the inner wall of the column can be washed by circulating the liquid through the communication channels 63 and 64 and the separation groove 62.
 本発明の可動栓式カラムは、充填剤のコンタミネーションが防止され、またカラム内壁を簡単に洗浄することができる。本発明は、小径から大径のいずれのカラムにも適用可能であるが、直径が50mmを超える大型カラムにおいて特に有用である。本発明のカラムは特に、医薬品、食品、精密有機材料、天然物質からの抽出等の工業生産の現場で用いられる大型カラムとして有用である。 The movable stopper column of the present invention prevents contamination of the packing material and can easily clean the inner wall of the column. The present invention is applicable to any column having a small diameter to a large diameter, but is particularly useful in a large column having a diameter exceeding 50 mm. The column of the present invention is particularly useful as a large column used in the field of industrial production such as extraction from pharmaceuticals, foods, precision organic materials and natural substances.
1 カラム
5 カラム本体筒
6 上部固定栓
7 下部固定栓
9 取り出し配管
30 加圧室
31、52 可動栓
32 充填剤室
38、60 先端側パッキン
39、61 基端側パッキン
40 溝付きパッキン
42、63、64 連絡流路
62 セパレート溝
DESCRIPTION OF SYMBOLS 1 Column 5 Column main body cylinder 6 Upper fixing plug 7 Lower fixing plug 9 Extraction piping 30 Pressurization chamber 31,52 Movable plug 32 Filling chamber 38,60 Tip side packing 39,61 Base end side packing 40 Grooved packing 42,63 , 64 Connecting flow path 62 Separate groove

Claims (11)

  1. 液体クロマトグラフィー用のカラムであって、
    当該カラムは、カラム本体筒の内壁に沿って移動可能に設けられた可動栓を有し、
    当該可動栓は、基端側から先端側へ押圧され、
    当該可動栓の先端側の外周に外嵌される環状の先端側パッキンと、
    当該可動栓の基端側の外周に外嵌される環状の基端側パッキンと、を備えてなり、
    前記先端側パッキンと前記基端側パッキンの間に、可動栓の外周全周にわたって形成されたセパレート溝を有し、
    前記セパレート溝は、前記可動栓の内部に設けられた連絡流路を介して、カラム外部と連通していることを特徴とする、液体クロマトグラフィー用のカラム。
    A column for liquid chromatography,
    The column has a movable stopper provided movably along the inner wall of the column main body cylinder,
    The movable stopper is pressed from the proximal end side to the distal end side,
    A ring-shaped front end side packing that is fitted on the outer periphery of the front end side of the movable stopper;
    An annular base end side packing that is fitted on the outer periphery of the base end side of the movable stopper, and
    Between the distal end side packing and the proximal end side packing, has a separate groove formed over the entire outer periphery of the movable stopper,
    The column for liquid chromatography, wherein the separation groove communicates with the outside of the column via a communication channel provided inside the movable stopper.
  2. 前記セパレート溝と前記連絡流路との接続部は、可動栓の外周の直径方向に対向する2箇所に設けられており、
    前記連絡流路は、
    カラム外部から第一の接続部に至る第一の連絡流路と、
    第二の接続部からカラム外部に至る第二の連絡流路と、を備えてなる、請求項1に記載のカラム。
    Connection portions of the separate groove and the communication flow path are provided at two locations facing the diameter direction of the outer periphery of the movable stopper,
    The communication channel is
    A first communication channel from the outside of the column to the first connection,
    The column according to claim 1, further comprising: a second communication channel extending from the second connection portion to the outside of the column.
  3. 前記セパレート溝が、前記先端側パッキンと前記基端側パッキンとの間で、可動栓の外周に外嵌される環状のパッキンに形成された溝である、請求項1又は2に記載のカラム。 The column according to claim 1 or 2, wherein the separate groove is a groove formed in an annular packing that is fitted on the outer periphery of the movable plug between the distal end side packing and the proximal end side packing.
  4. 前記可動栓の軸芯部には、カラム内部から液体を取り出すための取り出し配管が設けられており、
    前記連絡流路は、前記可動栓内部及び前記取り出し配管を通って、前記セパレート溝とカラム外部とを連通していることを特徴とする、請求項1~3のいずれかに記載のカラム。
    The shaft core portion of the movable stopper is provided with a take-out pipe for taking out the liquid from the inside of the column,
    The column according to any one of claims 1 to 3, wherein the communication channel communicates the separation groove and the outside of the column through the movable stopper and the take-out pipe.
  5. 前記連絡流路が、前記可動栓内部及び前記取り出し配管に挿通されたチューブである、請求項1~4のいずれかに記載のカラム。 The column according to any one of claims 1 to 4, wherein the communication channel is a tube inserted into the movable stopper and the extraction pipe.
  6. 前記カラムが、両端に固定栓を有するとともに、カラム内に可動栓が挿入されたカラムであって、
    当該可動栓の先端側には充填剤が充填され、当該可動栓の基端側には加圧媒体が充填される、請求項1~5のいずれかに記載のカラム。
    The column has fixed stoppers at both ends and a movable stopper is inserted in the column,
    The column according to any one of claims 1 to 5, wherein a filler is filled on a distal end side of the movable stopper, and a pressure medium is filled on a proximal end side of the movable stopper.
  7. 前記カラムが、一端に固定栓を有し、他端は開放であり、カラム内に可動栓が挿入されたカラムである、請求項1~3のいずれかに記載のカラム。 The column according to any one of claims 1 to 3, wherein the column has a fixed stopper at one end, the other end is open, and a movable stopper is inserted into the column.
  8. 液体クロマトグラフィー用カラムの洗浄方法であって、
    当該カラムは、カラム本体筒の内壁に沿って移動可能に設けられた可動栓を有し、
    当該可動栓は、基端側から先端側へ押圧され、
    当該可動栓の先端側の外周に外嵌される環状の先端側パッキンと、
    当該可動栓の基端側の外周に外嵌される環状の基端側パッキンと、を備えてなり、
    前記先端側パッキンと前記基端側パッキンの間に、可動栓の外周全周にわたって形成されたセパレート溝を有し、
    前記セパレート溝は、前記可動栓の内部に設けられた連絡流路を介して、カラム外部と連通しており、
    カラム外部から、前記連絡流路を通じて前記セパレート溝に液体を送入する工程を含む、洗浄方法。
    A method for washing a column for liquid chromatography, comprising:
    The column has a movable stopper provided movably along the inner wall of the column main body cylinder,
    The movable stopper is pressed from the proximal end side to the distal end side,
    A ring-shaped front end side packing that is fitted on the outer periphery of the front end side of the movable stopper;
    An annular base end side packing that is fitted on the outer periphery of the base end side of the movable stopper, and
    Between the distal end side packing and the proximal end side packing, has a separate groove formed over the entire outer periphery of the movable stopper,
    The separation groove communicates with the outside of the column through a communication channel provided inside the movable stopper,
    The washing | cleaning method including the process of sending in a liquid to the said separation groove | channel through the said connection flow path from the column exterior.
  9. 前記セパレート溝と前記連絡流路との接続部は、可動栓の外周の直径方向に対向する2箇所に設けられており、
    前記連絡流路は、
    カラム外部から第一の接続部に至る第一の連絡流路と、
    第二の接続部からカラム外部に至る第二の連絡流路と、を備えてなり、
    前記第一の連絡流路から液体を送入し、前記セパレート溝を経て前記第二の連絡流路から当該液体を排出させる工程を含む、請求項8に記載の洗浄方法。
    Connection portions of the separate groove and the communication flow path are provided at two locations facing the diameter direction of the outer periphery of the movable stopper,
    The communication channel is
    A first communication channel from the outside of the column to the first connection,
    A second communication flow path from the second connection part to the outside of the column, and
    The cleaning method according to claim 8, further comprising a step of feeding a liquid from the first communication channel and discharging the liquid from the second communication channel via the separation groove.
  10. 前記可動栓が所定の位置に静止した状態で、前記液体の送入を行うことを特徴とする、請求項8又は9に記載の洗浄方法。 The cleaning method according to claim 8 or 9, wherein the liquid is fed while the movable stopper is stationary at a predetermined position.
  11. 前記可動栓を前記カラムの内壁に沿って移動させながら、前記液体の送入を行うことを特徴とする、請求項8又は9に記載の洗浄方法。 The cleaning method according to claim 8 or 9, wherein the liquid is fed while moving the movable stopper along the inner wall of the column.
PCT/JP2014/052549 2014-02-04 2014-02-04 Movable plug-type column and method for using same WO2015118609A1 (en)

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