Water solution for absorbing nuclear accident release matter
A technology for releasing substances and aqueous solutions, applied in nuclear engineering, radioactive purification, etc., can solve problems such as difficult removal of fission product decay heat, ineffective removal of organic iodine, inability to filter aerosols, etc.
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Embodiment 1
[0014] Embodiment 1: the preparation of aqueous solution
[0015] Prepare an aqueous solution for absorbing substances released by a nuclear accident according to the formula in Table 1 below.
[0016] Table 1 is used to absorb the formulation of the aqueous solution released by the nuclear accident
[0017]
[0018]
Embodiment 2
[0019] Embodiment 2: the investigation of aqueous solution stability
[0020] The aqueous solution prepared according to the formula in Table 1 above was subjected to stability investigation, and the inspection items and results are shown in Table 2 to Table 4 below.
[0021] Table 2 The stability investigation of the aqueous solution at room temperature and airtight for 5 months
[0022] recipe number Exterior Na 2 S 2 o 3 content
pH 1 transparent, no precipitation no change 12.3 2 transparent, no precipitation no change 13.0 3 transparent, no precipitation no change 12.9 4 transparent, no precipitation no change 13.0 5 transparent, no precipitation no change 13.2 6 transparent, no precipitation no change 13.0 7 transparent, no precipitation no change 13.4
[0023] Table 3 Stability investigation of aqueous solution at room temperature exposed to the open for 3 months
[0024] ...
Embodiment 3
[0028] Example 3: Simulation experiments of the aqueous solutions of various formulations absorbing substances released in nuclear accidents
[0029] As follows, use the figure 1 The device was used to carry out the simulation experiment of absorbing the substances released by the nuclear accident with the aqueous solutions of various formulations prepared in Example 1 above.
[0030] Establish figure 1 Experiments are carried out on the simulated experimental device for the absorption of substances released by nuclear accidents in the aqueous solution shown.
[0031] The simulated experimental device consists of an electric boiler 1, a pressure reducing valve 2, a steam superheater 3 and corresponding pipelines and valves connected in sequence to form an air supply system, which is used to heat air under high-temperature experimental conditions to meet the air temperature requirements of the experiment; The steam supply system is composed of air compressor 11, air storage t...
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