Multi-optical path gas absorption chamber and measurement system thereof
A gas absorption and multi-light path technology, which is applied in the field of gas absorption spectrum quantitative analysis, can solve problems such as the inability to design even-numbered columns, and achieve the effects of improving the effective absorption light path, reducing the detection limit, and increasing the light path
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Embodiment 1
[0055] For an even-state multi-path gas absorption cavity, the number of rows m is any positive integer (m=1, 2, 3...), and the number of columns n is any even number (n=2, 4, 6.. ....), in order to make full use of the mirror space of the field mirror, it is generally required that the spot overlap occurs on the field mirror, that is, m≥2, n≥2. Objective lens M 1 ~ M 4 The center of curvature of Figure 4 as shown, Figure 4 The midpoint O is the main mirror F 1 The vertex of the sphere, establish a three-dimensional Cartesian coordinate system with point O as the coordinate origin, then F 2 The spherical apex coordinates of the sphere are ((0, (2m-1)c, 0), the spherical apexes of the main field lens and the auxiliary field lens are vertically distributed; the curvature center coordinates of each objective lens are: C M1 (w, G, 0), C M2 (w, -c, 0), C M3 (0 , G, 0), C M4 (0, -c, 0); the coordinates of the curvature centers of the two field mirrors are: F 1 (0,0,R),F ...
Embodiment 2
[0084] For an odd-state multi-path gas absorption cavity, when the number of rows m is any positive integer (m=1, 2, 3...), the number of columns n is any odd number (n=1, 3, 5... ...), it is also required that spot overlap occurs on the field lens, that is, m≥2, n≥3. Objective lens M 1 ~ M 4 The center of curvature of Figure 7 As shown, still take the main mirror F 1 The spherical vertex O of the coordinate origin establishes a three-dimensional Cartesian coordinate system, then F 2 The spherical apex coordinates of the sphere are ((0, (2m-1)c, 0), the spherical apexes of the main field lens and the auxiliary field lens are vertically distributed; the curvature center coordinates of each objective lens are: C M1 (0, c, 0), C M2 (0, -c, 0), C M3 (-w, c, 0), C M4 (-w, -c, 0); the coordinates of the center of curvature of the two field mirrors are still: F 1 (0, 0, R), F 2 (0, (2m-1)c, R). The center coordinates of the entrance window are I((n-1)w, (2m-1)c, 0). Light...
Embodiment 3
[0107] The principle of the direct absorption method to measure the gas absorption spectrum of the system is based on the Lambert-Beer law, that is, when a beam of parallel light passes through a uniform non-scattering light-absorbing substance (such as a trace gas to be measured), its absorbance A is the same as the measured absorbance The concentration C of the substance is proportional to the thickness l of the absorbing layer:
[0108] A(λ)=ln[I 0 (λ) / I(λ)]=ln[1 / T(λ)]=σ(λ)Cl
[0109] where I 0 (λ) and I(λ) are the light intensity before the incident absorption sample and the transmitted light intensity after passing through the sample at a specific wavelength λ, respectively, A(λ) is called the absorbance (or optical density), and T(λ) is The transmittance of the sample to be tested, that is, the ratio of the transmitted light intensity to the incident light intensity, C is the concentration of the sample to be tested, l is the optical path length of the light passing th...
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