Flow cell and detector equipped with the flow cell
11175218 · 2021-11-16
Assignee
Inventors
Cpc classification
G01N21/0303
PHYSICS
International classification
Abstract
A flow cell includes a cell into which a liquid to be measured is introduced and is arranged so that a measurement light to be used for measuring an optical characteristic of the liquid enters one side of the cell and exits from the other side of the cell, an inlet for leading the liquid to flow into the cell, and an outlet for leading the liquid in the cell to flow out from the cell. The inlet and the outlet are provided to form an interface between a liquid flowing into the cell through the inlet and a liquid with which the cell has been already filled at two places on an optical path of the measurement light passing through the cell.
Claims
1. A flow cell comprising: a cell into which a liquid to be measured is introduced and is arranged so that a measurement light to be used for measuring an optical characteristic of the liquid enters one side of the cell and exits from the other side of the cell; an inlet for leading the liquid to flow into the cell; and an outlet for leading the liquid in the cell to flow out from the cell, wherein the inlet and the outlet are provided to form an interface between the liquid flowing into the cell through the inlet and another liquid with which the cell has been already filled at two places on an optical path of the measurement light passing through the cell, a flowing direction of the liquid in the cell being substantially parallel to the optical path of the measurement light passing through the cell.
2. The flow cell according to claim 1, wherein the inlet is provided at a position between the one end of the cell and the other end of the cell so that the liquid flows into the cell in a direction substantially orthogonal to a travel direction of the measurement light.
3. The flow cell according to claim 2, wherein the inlet is provided at a center of the cell between the one end and the other end, and the outlet is provided at two places, one of the two places is adjacent to the one end of the cell and the other is adjacent to the other end of the cell.
4. A detector comprising: a light source; the flow cell according to claim 1; a light sensor for detecting light which passed through the flow cell; and an optical system for guiding light from the light source to the flow cell and guiding light that has passed through the flow cell to the light sensor.
5. The flow cell according to claim 1, wherein the interfaces between the liquid and the another liquid respectively formed at the two places extend in a direction perpendicular to a direction in which the liquid and another liquid flow through the cell at the interfaces.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
EMBODIMENT OF THE INVENTION
(5) Hereinafter, a description will be given of an embodiment of a flow cell according to the present invention and an embodiment of a detector equipped with the flow cell with reference to the drawings.
(6) First, a description will be given of a configuration of the embodiment of the detector with reference to the schematic configuration diagram of
(7) The detector of the present embodiment includes a light source 2, a condenser 4, a flow cell 6, a mirror 8, an entrance slit 10, a spectroscope 12, and a light sensor 14. The light sensor 14 is, for example, a photodiode array.
(8) The condenser 4 and the flow cell 6 are arranged on an optical path of measurement light emitted from the light source 2, and the measurement light emitted from the light source 2 is projected to the flow cell 6 through the condenser 4. A solution that has passed through a separation column of a liquid chromatograph flows through the flow cell 6.
(9) The mirror 8 is disposed to reflect the measurement light passing through the flow cell 6 toward the entrance slit 10, and accordingly, the measurement light passing through the entrance slit 10 is guided to the spectroscope 12 such as a diffraction grating. The light guided to the spectroscope 12 is split into separate wavelength components and enters the light sensor 14.
(10) The light sensor 14 is configured to detect intensity of each wavelength component of the light and generate a detection signal in proportion to the intensity. Although not shown in the drawings, the light sensor 14 is connected with an arithmetic processor implemented by a dedicated computer or a general-purpose computer. The arithmetic processor obtains an absorbance spectrum of the liquid flowing through the flow cell 6 based on intensity of the detection signal obtained by the light sensor 14, and detects and quantifies components of a sample. Note that, according to the present embodiment, a configuration of an absorbance detector has been given as an example of the detector, but the present invention is not limited to such a configuration and is applicable to a differential refractive index detector.
(11) A description will be given of the flow cell 6 with reference to
(12) The flow cell 6 is formed of a block that is made of a light transmitting material such as quartz. Provided inside the flow cell 6 are a cell 18 that is a space through which the liquid flows, and an inlet 20 that is a flow path through which the liquid is introduced into the cell 18, and outlets 22a, 22b that are flow paths through which the liquid flows out of the cell 18. The flow cell 6 is disposed on an optical axis of the measurement light so that the measurement light enters one end side of the cell 18 (the left side of
(13) The inlet 20 is provided at a substantially center between the one end of the cell 18 and the other end of the cell 18, the inlet 20 extending in a direction that is substantially orthogonal to the optical axis of the measurement light passing through the cell 18 and in which the liquid flows into the cell 18.
(14) The outlet 22a is provided at the one end of the cell 18 on the opposite side from the inlet 20 with the cell 18 interposed between the outlet 22a and the inlet 20. The outlet 22b is provided at the other end of the cell 18 on the opposite side from the inlet 20 with the cell 18 interposed between the outlet 22b and the inlet 20.
(15) Such a structure of the flow cell 6 causes, as shown by an embossed pattern in
(16)
(17) On the other hand, as shown in
(18)
(19) As described above, the present invention is intended to suppress the influence of refraction of the measurement light at the interfaces formed in the cell 18 with the structure of the flow cell 6 that forms, when a different liquid is introduced into the cell 18, the two interfaces 1 and 2 on both sides of the liquid. Accordingly, the inlet 20 and the outlets 22a, 22b may be provided at any positions as long as the two interfaces are formed so as to cause refraction of the measurement light passing through the cell at one of the interfaces and refraction at the other interface to cancel each other out.
DESCRIPTION OF REFERENCE SIGNS
(20) 2: Light source 4: Condenser 6: Flow cell 8: Mirror 10: Entrance slit 12: Spectroscope 14: Light sensor 18: Cell 20: Inlet 22a, 22b: Outlet