METHOD FOR ONLINE SAMPLING AN ALIQUOT FROM A MOBILE PHASE COMPRISING AN ANALYTE OF AN APPARATUS FOR PRODUCING A PHARMACEUTICAL OR CHEMICAL PRODUCT
20190277730 ยท 2019-09-12
Assignee
Inventors
- Benedikt Scheidecker (Ottobrunn, DE)
- Reinhard Braaz (Penzberg, DE)
- Josef Vinnemeier (Schlehdorf, DE)
- Agathe Justine Ballin (Bichl, DE)
Cpc classification
G01N1/2035
PHYSICS
B01L3/0296
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A method for online sampling an aliquot from a mobile phase comprising an analyte of an apparatus (102) for producing a pharmaceutical or chemical product, wherein the apparatus (102) comprises an analytical device (114) and a tube (112), wherein the tube (112) comprises an inlet (116), an outlet (118) and at least one curved portion (120), wherein the outlet (118) is in fluid communication with the analytical device (114), wherein the curved portion (120) is located between the inlet (116) and the outlet (118), wherein a flow direction of the mobile phase is defined from the inlet (116) to the outlet (118), the method comprising: providing a sample device (124) comprising a needle (134) with a needle tip (136), a septum (138) pierceable by the needle (134) and a pump (128), wherein the needle (134) is moveable between an extended position in which the septum (138) is pierced by the needle (134), and a retracted position, in which the septum (138) is not pierced, disposing the sample device (124) at the curved portion (120) of the tube (112), moving the needle (134) to the extended position such that the needle tip (136) faces the flow direction, and operating the pump (128) so as to draw an aliquot out of the mobile phase.
Further, a system (100) comprising an apparatus (102) for producing a pharmaceutical or chemical product and a sample device (124) is disclosed.
Claims
1. Method for online sampling an aliquot from a mobile phase comprising an analyte of an apparatus for producing a pharmaceutical or chemical product, wherein the apparatus comprises an analytical device and a tube, wherein the tube comprises an inlet, an outlet and at least one curved portion, wherein the outlet is in fluid communication with the analytical device, wherein the curved portion is located between the inlet and the outlet, wherein a flow direction of the mobile phase is defined from the inlet to the outlet, the method comprising: providing a sample device comprising a needle with a needle tip, a septum pierceable by the needle and a pump, wherein the needle is moveable between an extended position in which the septum is pierced by the needle, and a retracted position, in which the septum is not pierced, disposing the sample device at the curved portion of the tube, moving the needle to the extended position such that the needle tip faces the flow direction, and operating the pump so as to draw an aliquot out of the mobile phase.
2. Method according to claim 1, wherein the curved portion comprises a radial inner wall portion and a radial outer wall portion, wherein the method further comprises disposing the sample device at the radial outer wall portion of the curved portion.
3. Method according to claim 1, wherein the curved portion is curved such that tube portions of the tube adjacent the curved portion form an angle () of 110 to 160 between one another.
4. Method according to claim 1, further providing the sample device with a check valve.
5. Method according to claim 1, further comprising orienting the needle tip such that a needle opening disposed at the needle tip is arranged at an angular position relative to a main flow direction defined in a range from a first angular position, in which the needle opening faces a main flow direction of the mobile phase within the curved portion, to a second angular position, in which the needle opening faces away from the main flow direction of the mobile phase within the curved portion.
6. Method according to claim 1, further comprising operating the pump so as to draw a plurality of discrete aliquots.
7. Method according to claim 1, further comprising continuously operating the pump so as to continuously draw aliquots out of the mobile phase.
8. Method according to claim 1, wherein the apparatus comprises a chromatographic column in fluid communication with the inlet, wherein the mobile phase is a pharmaceutical or chemical sample and the chromatographic column prepares the sample.
9. Method according to claim 1, further comprising analyzing the mobile phase according to at least one analysis method within the analytical device, and analyzing the analyte of the aliquot drawn out of the mobile phase.
10. Method according to claim 9, further comprising analyzing the analyte of the aliquot drawn out of the mobile phase within the analytical device or a further analytical device.
11. Method according to claim 1, further comprising analyzing the aliquot, wherein the results of the analysis of the aliquot are associated with further information relating to the mobile phase.
12. System comprising an apparatus for producing a pharmaceutical or chemical product and a sample device, wherein the apparatus comprises an analytical device and a tube, wherein the tube comprises an inlet, an outlet and at least one curved portion, wherein the outlet is in fluid communication with the analytical device, wherein the curved portion is located between the inlet and the outlet, wherein a flow direction of a mobile phase comprising an analyte is defined from inlet to the outlet, wherein the sample device comprises a needle with a needle tip, a septum pierceable by the needle and a pump, wherein the needle is moveable between an extended position in which the septum is pierced by the needle, and a retracted position, in which the septum is not pierced, wherein the sample device is disposed at the curved portion of the tube such that the needle tip faces the flow direction in the extended position, wherein the system is configured to carry out each step of the method according to claim 1.
13. System according to claim 12, wherein the curved portion comprises a radial inner wall portion and a radial outer wall portion, wherein the sample device is disposed at the radial outer wall portion of the curved portion.
14. System according to claim 12, wherein the curved portion is curved such that tube portions of the tube adjacent the curved portion form an angle () of 110 to 160 between one another.
15. System according to claim 12, wherein the needle tip is oriented such that a needle opening disposed at the needle tip is arranged an angular position relative to a main flow direction defined in a range from a first angular position, in which the needle opening faces a main flow direction of the mobile phase within the curved portion, to a second angular position, in which the needle opening faces away from the main flow direction of the mobile phase within the curved portion.
16. System according to claim 12, wherein the analytical device is configured to analyze the mobile phase according to at least one analysis method, wherein the System further comprises a further analytical device configured to analyze the analyte of the aliquot drawn out of the mobile phase.
17. Method according to claim 3, wherein the curved portion is curved such that tube portions of the tube adjacent the curved portion form an angle () of 120 to 150.
18. Method according to claim 3, wherein the curved portion is curved such that tube portions of the tube adjacent the curved portion form an angle () of 125 to 145.
19. Method according to claim 3, wherein the curved portion is curved such that tube portions of the tube adjacent the curved portion form an angle () of 135.
20. System according to claim 14, wherein the curved portion is curved such that tube portions of the tube adjacent the curved portion form an angle () of 120 to 150.
21. System according to claim 14, wherein the curved portion is curved such that tube portions of the tube adjacent the curved portion form an angle () of 125 to 145.
22. System according to claim 14, wherein the curved portion is curved such that tube portions of the tube adjacent the curved portion form an angle () of 135.
Description
SHORT DESCRIPTION OF THE FIGURES
[0084] Further features and embodiments of the invention will be disclosed in more detail in the subsequent description of embodiments, particularly in conjunction with the dependent claims. Therein, the respective features may be realized in an isolated fashion as well as in any arbitrary feasible combination, as the skilled person will realize. The scope of the invention is not restricted by the embodiments. The embodiments are schematically depicted in the figures. Therein, identical reference numbers in these figures refer to identical or functionally comparable elements.
[0085] In the figures:
[0086]
[0087]
[0088]
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0089]
[0090] The system 100 further comprises a sample device 124. The sample device 124 is disposed at the curved portion 120 of the tube 112. The sample device 124 will be described in further detail below. The sample device 124 is provided with a check valve 126. The check valve 126 may be a passive check valve such as a duckbill valve or a spring loaded check valve. The sample device 124 comprises a pump 128. The system 100 further comprises a further analytical device 130 connected to the pump 128. The further analytical device 130 is configured to analyze the analyte of the aliquot drawn out of the mobile phase by the sample device as will be explained in further detail below. The analytes analyzed by the further analytical device 130 may be separated so as to reveal product fractions 132.
[0091]
[0092] The curved portion 120 comprises a radial inner wall portion 142 and a radial outer wall portion 144. As shown in
[0093] The needle 134 may be rotated around the longitudinal axis thereof. For this reason, the needle tip is oriented such that the needle opening 140 disposed at the needle tip 136 is arranged an angular position relative to a main flow direction indicated by arrow 150 defined in a range from a first angular position, in which the needle opening 140 faces the main flow direction of the mobile phase within the curved portion 120, to a second angular position, in which the needle opening 140 faces away from the main flow direction 150 of the mobile phase within the curved portion 120.
[0094]
[0095] Hereinafter, a method for online sampling an aliquot from a mobile phase comprising an analyte of the apparatus 102 for producing a pharmaceutical or chemical product will be explained. The method is carried out using the system 100 described before. The sample device 124 is provided and disposed at the curved portion 120 as described before. In other words, the sample device 124 is disposed at the radial outer wall portion 144 of the curved portion 120. The needle 134 is moved from the retracted position to the extended position while piercing the septum 138 such that the needle tip 136 faces the flow direction of the mobile phase. The needle opening 140 may be oriented at the first angular position, the second angular position or any angular position therebetween. The sample device 124 is provided with the check valve 126.
[0096] The apparatus 102 is operated so as to produce the pharmaceutical or chemical product. As mentioned above, the apparatus 102 comprises the chromatographic column 110 in fluid communication with the inlet 116 of the tube 112. The mobile phase at the outlet of the chromatographic column 110 is the pharmaceutical or chemical sample which the chromatographic column 110 prepares. This mobile phase flows through the tube 112 and passes the sample device 124. During operation of the apparatus 102, i.e. while the pharmaceutical or chemical product is produced, the pump 128 is operated so as to draw an aliquot out of the mobile phase. Particularly, the pump 128 is operated so as to draw a plurality of discrete aliquots out of the mobile phase. For example, the pump 128 is operated so as to continuously draw aliquots out of the mobile phase. The mobile phase is analyzed according to at least one analysis method within the analytical device 114. Further, the analyte of the aliquot drawn out of the mobile phase is analyzed within the analytical device 114 or the further analytical device 130. The results of the analysis of the aliquot or the plurality of aliquots are associated with further information relating to the mobile phase. For example, the mobile phase is analyzed by the analytical device 114 and the analyte of the aliquot drawn out of the mobile phase is analyzed within the further analytical device 130, wherein the results of the analysis of the aliquot within the further analytical device 130 are associated with the results of the analysis of the mobile phase within the analytical device 114. With this method, analysis results concerning the analyte may be provided within short time and associated with the respective parts of the mobile phase such that information on each of the parts of the mobile phase are provided in a timely order.
LIST OF REFERENCE NUMBERS
[0097] 100 system [0098] 102 apparatus [0099] 104 tank [0100] 106 tank [0101] 108 pumping system [0102] 110 chromatographic column [0103] 112 tube [0104] 114 analytical device [0105] 116 inlet [0106] 118 outlet [0107] 120 curved portion [0108] 122 product pool [0109] 124 sample device [0110] 126 check valve [0111] 128 pump [0112] 130 further analytical device [0113] 132 product fraction [0114] 134 needle [0115] 136 needle tip [0116] 138 septum [0117] 140 needle opening [0118] 142 radial inner wall portion [0119] 144 radial outer wall portion [0120] 146 tube portion [0121] 148 tube portion [0122] 150 main flow direction [0123] angle