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Self-discharging vertical radioactive iodine-131 distilling apparatus

A distillation device and radioactive iodine technology, which are applied in the field of self-discharge vertical radioactive iodine-131 distillation devices, can solve the problems of radioactive pollution work efficiency in the workplace, low utilization rate of raw materials, and many radioactive wastes, etc. Small volume, small risk of radioactive contamination control, and the effect of improving single production capacity

Inactive Publication Date: 2015-05-06
INST OF NUCLEAR PHYSICS & CHEM CHINA ACADEMY OF
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0005] In order to overcome the radioactive iodine-131 distillation device in the prior art, there is a small single production capacity, a lot of radioactive waste, and activated TeO 2 The utilization rate of raw materials is not high enough, it is easy to cause radioactive pollution in the workplace and the shortcomings of low work efficiency. The invention provides a self-unloading vertical radioactive iodine-131 distillation device

Method used

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  • Self-discharging vertical radioactive iodine-131 distilling apparatus
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  • Self-discharging vertical radioactive iodine-131 distilling apparatus

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Embodiment 1

[0020] figure 1 It is the overall structural block diagram of self-unloading vertical radioactive iodine-131 distillation device of the present invention, figure 2 It is a structural representation of the distiller in the present invention, image 3 It is a structural schematic diagram of the base in the present invention. exist Figure 1 ~ Figure 3 Among them, the self-unloading vertical radioactive iodine-131 distillation device of the present invention includes a motor I1, a chute 2, a distillation furnace 3, an iodine trap 4, and a controller 5. The connection relationship is that the motor I1 and The chute 2 is fixedly connected, the chute 2 is slidably connected to the distillation furnace 3, the distillation furnace 3 is connected to the iodine trap 4 through pipelines, and the controller 5 is electrically connected to the motor I1, the distillation furnace 3 and the iodine trap 4 respectively. Such as figure 1 shown.

[0021] The distillation furnace 3 includes a...

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Abstract

The invention provides a self-discharging vertical radioactive iodine-131 distilling apparatus. The production device comprises a motor I, a slide groove, a distilling furnace, an iodine catcher and a controller. The motor I is fixedly connected with the slide groove. The slide groove is connected with the distilling furnace in a sliding mode. The distilling furnace is connected with the iodine catcher through a pipeline. The controller is electrically connected with the motor I, the distilling furnace and the iodine catcher. The self-discharging vertical radioactive iodine-131 distilling apparatus has the automatic distillation residue discharge function, iodine-131 can be efficiently distilled out of activated TeO2, an uncovered target cylinder can be directly placed in a ceramic crucible to be distilled, the per unit yield of the device is remarkably improved, the radioactive contamination risk is lowered, and the radioactivity solid waste yield is decreased. The production device is compact in structure, suitable for the Na131I destructive distillation in a shielding working box with the small effectively operation space, and high in operation stability, convenience and safety.

Description

technical field [0001] The invention belongs to the technical field of radioisotope preparation, and in particular relates to a self-unloading vertical radioactive iodine-131 distillation device. Background technique [0002] The main production method of radioactive iodine-131 is tellurium dioxide (TeO 2 ) and from 235 Extracted from the lobes mixture of U. At present, sodium iodide (Na 131 I) Drugs are mainly derived from TeO irradiated from reactors by dry distillation 2 extraction, while the wet distillation process (including 235 The process of extracting iodine-131 from the split mixture of U) was eliminated due to defects such as low distillation efficiency, complex process, high cost, large amount of waste, and easy pollution. The process of producing iodine-131 by dry distillation is roughly: the activated TeO 2 Pour it into a quartz glass container and place it directly in a distillation furnace for distillation at high temperature (about 750°C). Radioactive ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G21G4/04
CPCG21G4/04
Inventor 刘国平蹇源陈静王关全李梅李兴亮吴川党宇峰牟婉君刘飞余钱红张锐钟文彬魏洪源陈琪萍何佳恒
Owner INST OF NUCLEAR PHYSICS & CHEM CHINA ACADEMY OF
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