Method and device for thermochemical cycle mineralization of CO2 and simultaneous decomposition of H2O to produce H2 and co-production of H2SO4
A technology of H2SO4 and thermochemical cycle, applied in the fields of CO2 emission reduction and thermochemical hydrogen production, can solve the problems of low economy and added value, and achieve the effect of easy large-scale industrial application, appropriate reaction temperature and high theoretical thermal efficiency.
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specific Embodiment 1
[0034] (1) 14mol of H 2 O, 1.5mol of I 2 and 1mol of SO 2 Send it into the Bunsen reaction device 1, stir the reaction solution at a constant speed by the motor device to ensure that it is evenly mixed, and an autonomous exothermic reaction occurs at 20 ° C and 1 atm to produce a watery HI phase (HI x ) and H 2 SO 4 Phase solution, in which the HI phase mainly contains hydrogen iodide solution and excess iodine, H 2 SO 4 Phase mainly contains H 2 SO 4 Solution, the chemical reaction formula of this reaction is as follows:
[0035] I 2 +SO 2 +2H 2 O→2HI+H 2 SO 4
[0036] The biphasic solution in the Bunsen reaction unit 1 is separated in the liquid phase separation unit 2;
[0037] (2) Under 120°C, 0.08atm and adiabatic conditions, in H 2 SO 4 Concentrator 4 for H 2 SO 4 The phase solution is subjected to multi-stage sulfuric acid concentration treatment to obtain the final product H 2 SO 4 ;
[0038] (3) the HI separated in the liquid phase separation devi...
specific Embodiment 2
[0047] (1) 15molH 2 O, 5molI 2 and 1molSO 2 Send it into the Bunsen reaction device 1, and stir the reaction solution at a constant speed by the motor device to ensure that it is evenly mixed. At 70 ° C and 1.5 atm, an autonomous exothermic reaction occurs to produce a watery HI phase (HI x ) and H 2 SO 4 Phase solution, in which the HI phase mainly contains hydrogen iodide solution and excess iodine, H 2 SO 4 Phase mainly contains H 2 SO 4 Solution, the chemical reaction formula of this reaction is as follows:
[0048] I 2 +SO 2 +2H 2 O→2HI+H 2 SO 4
[0049] The biphasic solution in the Bunsen reaction unit 1 is separated in the liquid phase separation unit 2;
[0050] (2) Under 190°C, 0.69atm and adiabatic conditions, in H 2 SO 4 Concentrator 4 for H 2 SO 4 The phase solution is subjected to multi-stage sulfuric acid concentration treatment to obtain the final product H 2 SO 4 ;
[0051] (3) the HI separated in the liquid phase separation device 2 x pha...
specific Embodiment 3
[0060] (1) 16molH 2 O, 9molI 2 and 1molSO 2 Send into the Bunsen reaction device 1, stir the reaction solution at a constant speed by the motor device to ensure that it is evenly mixed, and an autonomous exothermic reaction occurs at 120 ° C and 2 atm to produce a watery HI phase (HI x ) and H 2 SO 4 Phase solution, in which the HI phase mainly contains hydrogen iodide solution and excess iodine, H 2 SO 4 Phase mainly contains H 2 SO 4 Solution, the chemical reaction formula of this reaction is as follows:
[0061] I 2 +SO 2 +2H 2 O→2HI+H 2 SO 4
[0062] The biphasic solution in the Bunsen reaction unit 1 is separated in the liquid phase separation unit 2;
[0063] (2) Under 260°C, 1.3atm and adiabatic conditions, in H 2 SO 4 Concentrator 4 for H 2 SO 4 The phase solution is subjected to multi-stage sulfuric acid concentration treatment to obtain the final product H 2 SO 4 ;
[0064] (3) the HI separated in the liquid phase separation device 2 x phase in ...
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