The present invention relates to a liquid chromatograph and particularly to a pump unit for liquid chromatograph.
A liquid chromatograph is configured to separate each of components from a sample by sending a solvent for conveying the sample by a pump unit and adding the sample to the solvent and then, by passing it through a separation column, to detect the components by a detector so as to create a chromatogram, and to analyze the components of the sample. Moreover, the liquid chromatograph includes those using a liquid feeding system called low-pressure gradient system for mixing multiple kinds of the solvents while changing a mixing ratio of the solvents by an opening/closing valve and sending the same by a pump unit. In this system, in order to improve accuracy of the mixing ratio of the multiple kinds of the solvents, valves of containers for respective solvents are opened one by one in order for sending the solvents. Therefore, concentration of each solvent is high in a pipeline immediately after the container of the solvent and the solvents are not mixed. However, if these multiple kinds of such solvents are not fully mixed when the sample is introduced, separation of the sample in the separation column becomes insufficient, and analysis accuracy is lowered. Therefore, for example, an attempt to accelerate mixing of the multiple kinds of solvents by providing a mixer in the middle of the pipeline is made(for example, see Patent Literature 1). In order to accelerate mixing, the capacity of the mixer needs to be sufficiently large, and the capacity of the pipeline from the solvents to the separation column becomes large. As a result, back pressure increases, and a load of the pump unit rises, and thus, the pump unit needs to be made larger, which leads to a cost increase.
As a pump unit for liquid chromatograph, a pump unit which repeats suction and discharge of the solvents by plungers provided in cylinders being reciprocated so as to continuously send the solvents is known. The solvents to be mixed by the opening/closing valves are arranged alternately with respect to a flow direction and mixed by diffusion in a liquid feeding process, but its mixing performance is not high. Thus, a technique for accelerating mixing in a space between a cylinder wall and the plungers is proposed (see Patent Literature 2, for example).
[Patent Literature 1] JP-A-06-324026
[Patent Literature 2] JP-A-2009-121483
The present invention has an object to provide, in a liquid chromatograph for analyzing a sample while changing a mixing ratio of multiple kinds of solvents represented by a low-pressure gradient system and a pump unit for liquid chromatograph, an apparatus which can accelerate mixing of the multiple kinds of the solvents without adding any novel device such as a mixer.
In order to solve the above problem, an embodiment of the present invention is a pump unit for liquid chromatograph provided with cylinders for introducing multiple kinds of solvents thereinto and plungers that are reciprocated so as to introduce the multiple kinds of the solvents and discharge the same for feeding the liquid, and particularly having a configuration in which a plurality of channels are formed in the cylinders for mixing the multiple kinds of solvents.
According to the present invention, in the liquid chromatograph and a pump unit for liquid chromatograph whereby a sample is analyzed while changing the mixing ratio of the multiple kinds of the solvents, represented by the low-pressure gradient system, a device which can accelerate mixing of the multiple kinds of the solvents without adding any novel device such as a mixer can be provided.
Other objects, features and merits of the present invention will be made apparent from the description of an embodiment of the present invention relating to the attached drawings described below.
An embodiment of the present invention will be described below by referring to the attached drawings.
The above description was made on the embodiment, but the present invention is not limited by that but it is obvious to those skilled in the art that the present invention is capable of various changes and modifications within a range of the spirit of the present invention and the appended claims.
a) is a configuration in which a filter 14 is provided between an internal space of the cylinder 7 and an inlet-side channel 13, and a filter 16 is provided between the internal space of the cylinder 7 and an outlet-side pipeline 15. Considering a withstanding pressure of the cylinder 7, the filter has a structure as illustrated in
The pump unit illustrated in
Rotation of a motor 34 is transmitted to a first cam 30 and a second cam 31 to rotate them, and the first plunger 22 and the second plunger 24 are reciprocated by the first cam 30 and the second cam 31, respectively. The rotation of the motor 34 is controlled by a controller 35. On a rotating shaft of the first cam 30 and the second cam 31, a member 36 provided with a slit is attached in order to determine a position of the cam, the slit in the member 36 is detected by a rotation sensor 37, this data is sent to the controller 35, and the positions of the respective cams are determined by the controller 35.
The controller 35 controls the rotation of the motor 34 on the basis of the cam positions and pressure data sent from a pressure detector 38 in the discharge-side channel for measuring a discharge pressure from the second cylinder 25. Moreover, the controller 35 controls opening/closing of switching valves 21a, 21b, 21c, and 21d of the solvent switching device 2 so that a mixing ratio of the solvents required as the low-pressure gradient system is achieved. For these operations, an instruction is sent to each device by reading a program from a memory, not shown, and executing the program by a processor, not shown. In the pipeline between the solvent switching device 2 and the pump unit 3, each solvent flows in the order of opening/closing of the switching valve with respect to the flow direction.
At the start point of sending the solvents, the inlet-side check valve 32 provided on the first cylinder 23 is opened by the controller 35, and the first plunger 22 starts the suctioning operation. Each solvent is introduced through the inlet-side check valve 32 in the order of switching by the solvent switching device 2. When the first cylinder 23 is filled with the solvents, the first plunger 22 stops, and pushing-in in the opposite direction starts. During the pushing-in by the first plunger 22, the inlet-side check valve 32 is closed, the outlet-side check valve 33 is opened, and the solvents in the first cylinder 23 are introduced into the second cylinder 25. A plurality of the discharge channels 26 as illustrated in
In this embodiment, the example in which the plurality of discharge channels illustrated in
As described above, according to the embodiment of the present invention, in the liquid chromatograph and a pump unit for liquid chromatograph whereby a sample is analyzed while changing the mixing ratio of multiple kinds of solvents, represented by a low-pressure gradient system, an apparatus which can accelerate mixing of the multiple kinds of the solvents can be provided without adding any novel device such as a mixer.
2 solvent switching device
3 pump unit
7, 51 cylinder
8, 52 plunger
9, 13 inlet-side channel
10 outlet-side channel
11, 14, 16 filter
12, 15 outlet-side pipeline
17 cover
22 first plunger
23 first cylinder
24 second plunger
25 second cylinder
32 inlet-side check valve
33 outlet-side check valve
53 inlet-side channels
54 discharge channel
Number | Date | Country | Kind |
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2010-153538 | Jul 2010 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2011/065327 | 7/5/2011 | WO | 00 | 12/18/2012 |