A method for controlling the directional conversion of uranium in the process of coal combustion
A technology of directional conversion and coal combustion, applied in fuel, solid fuel, lighting and heating equipment, etc., can solve problems such as human health hazards, achieve low investment and operation costs, promote directional conversion, and reduce the release of uranium
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Embodiment 1
[0027] An embodiment of the method for regulating and controlling the directional conversion of uranium in the process of coal combustion of the present invention is carried out by the above-mentioned device, and the specific steps of the method are as follows:
[0028] (1) Using step-by-step chemical extraction method and inductively coupled plasma mass spectrometry (ICP-MS) to test the content of organically bound uranium in coal m 1 = 6mg / kg coal;
[0029] (2) According to the content m of the organically bound uranium in the step (1) 1 , determine the amount of CaO added as m 2 =k 1 m 1 , where k 1 =1.1, that is, 6.6mg CaO is added per kg of coal;
[0030] (3) pass figure 1 Medium additive addition system 1 adds additives to the coal delivery system 2, the additives and coal are fully mixed in the coal mill 3 and then enter the boiler furnace 4 for combustion. The temperature in the boiler furnace is 800°C, and the additives react with gaseous uranium in the boiler f...
Embodiment 2
[0034] An embodiment of the method for regulating and controlling the directional conversion of uranium in the process of coal combustion of the present invention is carried out by the above-mentioned device, and the specific steps of the method are as follows:
[0035] (1) Using step-by-step chemical extraction method and inductively coupled plasma mass spectrometry (ICP-MS) to test the content of organically bound uranium in coal m 1 = 6.9mg / kg coal;
[0036] (2) According to the content m of the organically bound uranium in the step (1) 1, determine the amount of CaO added as m 2 =k 1 m 1 , where k 1 =1.3, that is, 8.97mg CaO is added per kg of coal;
[0037] (3) pass figure 1 The middle additive injection device 5 injects additives into the boiler furnace 4, the temperature in the boiler furnace is 1000°C, the additives react with gaseous uranium in the boiler furnace to form solid uranate, which is fixed in the bottom ash;
[0038] (4) Test the concentration of gas...
Embodiment 3
[0041] An embodiment of the method for regulating and controlling the directional conversion of uranium in the process of coal combustion of the present invention is carried out by the above-mentioned device, and the specific steps of the method are as follows:
[0042] (1) Using step-by-step chemical extraction method and inductively coupled plasma mass spectrometry (ICP-MS) to test the content of organically bound uranium in coal m 1 =7.7mg / kg coal;
[0043] (2) According to the content m of the organically bound uranium in the step (1) 1 , determine the amount of CaO added as m 2 =k 1 m 1 , where k 1 =1.5, that is, 11.55mg CaO is added per kg of coal;
[0044] (3) pass figure 1 The additive adding system 1 adds additives to the coal conveying system 2, and at the same time, injects additives into the boiler furnace 4 through the additive injection device 5. The temperature in the boiler furnace is 1200°C, and the additives react with gaseous uranium products in the bo...
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