Vertical type Na131I dry distillation production device

A production device and vertical technology, which is applied in the field of vertical Na131I dry distillation production devices, can solve the problems of radioactive contamination in workplaces, work efficiency of radioactive waste, large amount of radioactive waste, small single production capacity, etc.

Inactive Publication Date: 2015-04-22
INST OF NUCLEAR PHYSICS & CHEM CHINA ACADEMY OF
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  • Abstract
  • Description
  • Claims
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Problems solved by technology

[0004] In order to overcome the existence of the radioactive iodine-131 production device in the prior art, the single production capacity is small, the radioactive waste is much, and the activated TeO 2 The utilization rate of raw materials is not high enough, and it is easy to cause radioactive pollution in the workplace and low work efficiency. It can realize the use of natural tellurium dioxide (TeO2) activated by reactor ra

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  • Vertical type Na131I dry distillation production device
  • Vertical type Na131I dry distillation production device
  • Vertical type Na131I dry distillation production device

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Embodiment 1

[0022] figure 1 is the vertical Na of the present invention 131 The overall structural block diagram of 1 retort production plant, figure 2 is a structural schematic diagram of the heater in the present invention, image 3 is a structural schematic diagram of the base in the present invention, Figure 4 It is a structural schematic diagram of the iodine trap in the present invention. exist Figure 1 ~ Figure 4 In the vertical Na of the present invention 131 1 carbonization production device, comprises motor 1, chute 2, distillation furnace 3, iodine catcher 4, controller 5, and its connection relation is, described motor 1 is fixedly connected with chute 2, and chute 2 is connected with distillation furnace 3 is slidingly connected, and the distillation furnace 3 is connected with the iodine trap 4 through pipelines. The controller 5 is electrically connected with the motor 1, the distillation furnace 3 and the iodine trap 4 respectively. Such as figure 1 shown.

[0...

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Abstract

The invention provides a vertical type Na131I dry distillation production device which comprises a motor, a sliding chute, a distillation furnace, an iodine catcher and a controller, wherein the motor is fixedly connected with the sliding chute; the sliding chute is slidably connected with the distillation furnace; the distillation furnace is connected with the iodine catcher through a pipeline; and the controller is electrically connected with the motor, the distillation furnace and the iodine catcher respectively. The vertical type Na131I dry distillation production device provided by the invention can be used for producing the medical-grade Na131I from activated TeO2, and can be used for directly placing an uncapped target barrel into a ceramic crucible for distillation, thus obviously enhancing the unit yield of the device and the utilization rate of a raw material and reducing the risk of radioactive pollution and the output of a radioactive solid waste. The vertical type Na131I dry distillation production device provided by the invention is compact in structure, can be suitable for Na131I dry distillation production inside a shielding work box with a small effective operation space and has good stability, convenience and safety in operation.

Description

technical field [0001] The invention belongs to the technical field of radioisotope preparation, in particular to a vertical Na 131 I dry distillation production device. Background technique [0002] The main production method of radioactive iodine-131 is to use distillation method to irradiate tellurium dioxide from the reactor and from 235 Extracted from the lobes mixture of U. Radiopharmaceuticals made of radioactive iodine-131 are widely used in clinical diagnosis and treatment of modern nuclear medicine, but sodium iodide (Na 131 I) The radioactive material of drugs and iodine-131-labeled drugs mainly comes from tellurium dioxide activated by reactor irradiation. There are two main ways to produce radioactive iodine-131 from activated tellurium dioxide: wet distillation and dry distillation. The process of producing iodine-131 by wet distillation is roughly as follows: dissolve the activated tellurium dioxide with concentrated NaOH solution, then add an appropriate ...

Claims

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Application Information

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IPC IPC(8): C01B9/06
CPCC01D3/12
Inventor 刘国平源魏洪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蹇源陈琪萍何佳恒
Owner INST OF NUCLEAR PHYSICS & CHEM CHINA ACADEMY OF
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