VERTICAL DESUBLIMATION APPARATUS FOR CRYSTALLINE IODINE PRODUCTION
20200129881 ยท 2020-04-30
Inventors
Cpc classification
B01D7/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
Vertical desublimation apparatus for crystalline iodine production, comprising: a gas intake, through which vapor can be fed into the apparatus, and a gas exhaust, through which residual air can be discharged; at least one downstream duct comprising a downstream duct inlet and a downstream duct outlet, wherein the intake is fluidically connected to the downstream duct inlet; at least one upstream duct comprising an upstream duct inlet and an upstream duct outlet, wherein the exhaust is fluidically connected to the upstream duct outlet; at least one downstream condenser pipe arranged adjacent to the downstream duct and at least one upstream condenser pipe arranged adjacent to the upstream duct, wherein a cooling medium can be fed through the condenser pipes; a collecting receptacle for collecting crystallized iodine and liquid water arranged at the bottom of the apparatus, fluidically connecting the downstream duct outlet and the upstream duct inlet, the collecting receptacle having a bottom outlet.
Claims
1. Vertical desublimation apparatus (1) for crystalline iodine production, comprising: a gas intake (2), through which water and iodine vapor can be fed into the apparatus (1), and a gas exhaust (3), through which in particular residual air can be discharged; at least one downstream duct (4) comprising a downstream duct inlet (5) and a downstream duct outlet (6), wherein the intake (2) is fluidically connected to the downstream duct inlet (5); at least one upstream duct (7) comprising an upstream duct inlet (8) and an upstream duct outlet (9), wherein the exhaust (3) is fluidically connected to the upstream duct outlet (9); at least one downstream condenser pipe (10) arranged immediately adjacent to the downstream duct (4) and at least one upstream condenser pipe (11) arranged immediately adjacent to the upstream duct (7), wherein a cooling medium can be fed through the condenser pipes (10, 11); a collecting receptacle (12) for collecting crystallized iodine and liquid water arranged at the bottom of the apparatus (1), fluidically connecting the downstream duct outlet (6) and the upstream duct inlet (8), the collecting receptacle (12) having a bottom outlet (13).
2. Vertical desublimation apparatus (1) according to claim 1, wherein the ducts (4, 7) and/or the condenser pipes (10, 11) consist of sheet metal comprising titanium.
3. Vertical desublimation apparatus (1) according to claim 1, wherein the inner surface of the downstream and the upstream ducts (4, 7) and/or the outer surface of the condenser pipes (10, 11) is covered with a heat-resistant elastic material.
4. Vertical desublimation apparatus (1) according to claim 3, wherein the heat-resistant material comprises a fluoroplastic fabric film capable of withstanding the temperature of up to +250 C.
5. Vertical desublimation apparatus (1) according to claim 3, wherein the heat resistant elastic material has a thickness of 100-300 m.
6. Vertical desublimation apparatus (1) according to claim 1, wherein cold air is passed through the condenser pipes (10, 11) and discharged into the atmosphere at the other end of the pipes (10, 11).
7. Vertical desublimation apparatus (1) according to claim 1, wherein the at least one downstream duct (4) and the at least one downstream condenser pipe (10) define a downstream section (14) and the at least one upstream duct (7) and the at least one upstream condenser pipe (12) define an upstream section (15), the downstream section (14) and the upstream section (15) being connected at a distance from each other by means of titanium plates (16).
8. Vertical desublimation apparatus (1) according to claim 1, wherein the collecting receptacle (12) is a hopper, wherein the hopper comprises an opening is arranged below the downstream duct outlets (6) respectively the upstream duct inlets (8) and pointing to them.
9. Vertical desublimation apparatus (1) according to claim 1, wherein the apparatus (1) comprises a vibrator (17), the vibrator (17) periodically removing crystalline iodine deposited on the inner surface of the downstream and upstream ducts (4, 7) and/or the outer surface of the condenser pipes (10, 11), the removed crystalline iodine being fed into the collecting receptacle (12).
10. Vertical desublimation apparatus (1) according to claim 1, wherein the gas intake (2) comprises a fluoroplastic pipe which is connected to a top part of the apparatus (1), the pipe comprising separate fluid connections (18) for each of the at least one downstream duct inlet (5).
11. Vertical desublimation apparatus (1) according to claim 1, wherein the downstream section (14) comprises four downstream ducts (4) and three downstream condenser pipes (10).
12. Vertical desublimation apparatus (1) according to claim 1, wherein the upstream section (15) comprises two upstream ducts (7) and one upstream condenser pipe (ii).
13. Vertical desublimation apparatus (1) according to claim 1, the apparatus (1) being suspended in a holding frame (19) which is resiliently mounted on the ground.
14. Vertical desublimation apparatus (1) according to claim 1, wherein the apparatus (1) comprises fans (20) for blowing against the outer walls of the apparatus (1) in order to intensify the condensation process.
15. Method for producing crystallized iodine, comprising the steps: feeding vapors of water and iodine from an evaporator to a desublimation apparatus (1) at a temperature of 114-184 C., the iodine vapor having a partial pressure lower than the pressure of saturated iodine vapor in the triple point; passing the vapors through a duct (4, 7) of the apparatus (1), thereby condensing the vapors; removing crystalline iodine deposited on the inner surface of the duct (1).
Description
DETAILED DESCRIPTION OF THE INVENTION
[0029] Further characteristics, advantages and features of the invention are indicated in the following description of preferred embodiments of the invention by means of the accompanying drawing in which show:
[0030]
[0031]
[0032] In the sublimation-desublimation process shown in
[0033] The mixture of water and iodine vapor 32 then is fed into the desublimation apparatus 1 by gas intake 2. The vapor 32 condenses on the surface of the condenser pipes 10, ii of the desublimator 1 which are covered with a heat-resistant elastic material. The condensed water flows down from the surface of the condenser and crystalline iodine is periodically shaken off from the inner surface of the elastic material into the receiver 26. Water flows out through the outlet in the bottom of the receiver 26 and is separated from iodine. The resulting moist iodine is used together with the iodine paste for the next sublimation operation. The process of dehydrated iodine sublimation at the first stage is carried out at the iodine vapor temperature of 114-184 C. After the distillation process of the water is complete and the iodine melts, the evaporator 27 is supplied with air through air supply 29. A part of the air is sprayed through the iodine melt 28 to saturate it with iodine vapor, the rest of the air is fed to the top of the evaporator respectively sublimator 27. Due to the dilution with air, the partial pressure of iodine vapor in the iodine-air mixture 32 before desublimation is reduced to a pressure lower than the pressure of saturated iodine vapor in the triple point of iodine (90.53 mm Hg), for example to 87 mm Hg, thus providing high-quality crystals of the finished product.
[0034] The vertical desublimation apparatus 1 is a surface cooling unit with a flexible surface made of fluoroplastic fabric stretched on a titanium frame. Structurally, the apparatus is divided into a downstream working section 14 and an upstream idle section 15. Both parts 14, 15 are connected by a product hopper 12. The iodine-containing water condensate is discharged into the container 25 and is fed into the sorbent reservoir at the iodine absorption stage, and the remaining moist iodine in the container 25 is returned to be loaded along with the iodine paste for the next operation. The duration of water and wet iodine distillation is about 24 hours. The distillation time of dry iodine is about 40 hours. The duration of one operation, from the day of loading the sublimator 27 with initial components, sublimation-desublimation process, the production of crystalline iodine and the devices cooling off to a temperature of +40-50 C. is about 3-4 days.
[0035]
[0036] The apparatus is suspended by holding frame 19 which comprises a base plate which is resiliently mounted to the ground and suspended by coil springs 21. An electrical vibrator 17 is attached to the base plate and is used to periodically shake off the iodine crystals from the PTFE surfaces which then are collected by the product hopper 12 and passed over to the receiver 26 shown in
[0037] The features disclosed in the foregoing description, in the claims and the accompanying drawings may, both separately or in any combination, be material for realizing the invention in diverse forms thereof.
REFERENCE LIST
[0038] 1 vertical desublimation apparatus [0039] 2 gas intake [0040] 3 gas exhaust [0041] 4 downstream duct [0042] 5 downstream duct inlet [0043] 6 downstream duct outlet [0044] 7 upstream duct [0045] 8 upstream duct inlet [0046] 9 upstream duct outlet [0047] 10 downstream condenser pipe [0048] 11 upstream condenser pipe [0049] 12 collecting receptacle [0050] 13 bottom outlet [0051] 14 downstream section [0052] 15 upstream section [0053] 16 plates [0054] 17 vibrator [0055] 18 fluid connections [0056] 19 holding frame [0057] 20 fans [0058] 21 springs [0059] 22 PTFE pipes [0060] 23 condenser intake [0061] 24 condenser exhaust [0062] 25 container [0063] 26 receiver [0064] 27 evaporator [0065] 28 iodine paste [0066] 29 air supply [0067] 30 sodium carbonate supply [0068] 31 iodine paste supply [0069] 32 vapor of iodine and water [0070] 33 enameled container [0071] 34 jacket [0072] 35 high temperature coolant [0073] 36 electric heating element