Discontinuous gas analysis method and equipment thereof
A technology for gas analysis and analysis device, applied in sampling devices and other directions, can solve the problems of low sampling frequency, heavy maintenance workload, measurement lag, etc., and achieve the effects of small measurement lag time, high safety factor, and high sampling frequency
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Embodiment 1
[0027] Such as figure 1 As shown, an intermittent gas analysis device is applied to the analysis of high-pressure mixed gas in the urea synthesis tower to obtain the molar ratio of ammonia to carbon dioxide, that is, the ammonia-to-carbon ratio (N / C), so as to optimize the urea production process and save raw materials ,reduce manufacturing cost. The analysis device includes an intermittent gas sampling device and a gas analysis instrument 8 .
[0028] The sampling device includes a ventilation pipeline, a control device 9 and a first-stage valve 2 , a first-stage gas storage container 3 , a second-stage valve 4 and a pressure reducing and stabilizing device sequentially installed on the ventilation pipeline. The first-stage valve 2 and the second-stage valve 4 are automatic control valves. In this embodiment, electric ball valves are used. The first-stage valve 2 is installed on the urea synthesis tower 1, and the mixed gas in the urea synthesis tower 1 The pressure is 15MP...
Embodiment 2
[0038] Such as figure 2 As shown, a discontinuous gas analysis device is different from Example 1 in that a second-stage gas storage container 5 with a volume of 1 L is installed between the second-stage valve 4 and the pressure-reducing and stabilizing device.
[0039] This embodiment also discloses a discontinuous gas analysis method, that is, the working process of the above-mentioned analysis device, and the method includes the following steps:
[0040] A. the specific process is the same as step a in Example 1;
[0041] b. The control device 9 controls to close the first-stage valve 2 and open the second-stage valve 4, and the sample gas in the first-stage gas storage container 3 passes through the second-stage valve 4 and then is filled into the In the second-stage gas storage container 5 described above, the expansion of the volume reduces the pressure of the sample gas, and then the sample gas flows downstream;
[0042] c. The sample gas flowing out from the second-...
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