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放射性同位素生产
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  “放射性同位素生产”译为未确定词的双语例句
     It can measure the activity of tens of common nuclides such as 226Ra, 60Co, 137Cs, 32P, 99mTc, 113mIn, 125I and 131I. It can be used as a calibrated instrument when the production and applications of radioisotopes are involved.
     可测量~(226)Ra、~(60)Co、~(137)Cs、~(32)P、~(99m)Tc、~(113m)In、~(125)I、~(131)I等几十种常用核素的活度,是放射性同位素生产和应用中的计量仪器。
短句来源
     PRODUCTION AND APPLICATION OF RADIOISOTOPES IN ASIAN COUNTRIES
     亚洲国家放射性同位素生产概况
短句来源
     CURRENT STATUS AND TRENDS ON PRODUCTION AND APPLICATION OF RADIOISOTOPE
     放射性同位素生产与应用现状及其发展趋向
短句来源
     Because of its compact structure and low energy dissipation, Cyclotrons are widely used in fundamental research for nuclear physics, bioscience, medical diagnosis and therapy, especially in isotopes production.
     回旋加速器由于其结构紧凑、耗能小等优点,在生物、医学和核物理基础研究等领域,特别是在放射性同位素生产方面,有着主要而广泛的应用。
短句来源
     High-Flux Engineering Test Reactor has become established as an extremeavailable facility for production of radioisotopes in China.
     在我国,高通量工程试验堆在放射性同位素生产上已成为极有效的装置。
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  相似匹配句对
     Application and Production of Radioisotopes
     放射性同位素的应用和生产
短句来源
     Production and Application of Medical Radioisotopes
     医用放射性同位素生产和应用
短句来源
     Production Technique of N,N-Dimethyl Formamide
     二甲基甲酰胺的生产
短句来源
     B. manufacture and produce;
     B.生产加工;
短句来源
     METHOD:Radioisotope technique.
     方法:放射性同位素分析技术。
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  radioisotope production
In this paper the therapeutic use of reactor-produced radioisotopes for bone pain palliation and vascular brachytherapy and the therapeutic medical radioisotope production capabilities of the ORNL HFIR are briefly discussed.
      
Radioisotope production in target fragmentation with high-energy heavy ions at HIMAC
      
In order to achieve a progressive experimental program, a new system for radioisotope production has been developed at one of the beam-courses of a multipurpose Cyclotron of K=110 MeV.
      
In order to achieve a progressive experimental program, a new system for radioisotope production has been developed at one of the beam-courses of a multipurpose Cyclotron of K = 110 MeV.
      
High purity materials as targets for radioisotope production: Needs and challenges
      
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Application of radioisotopes is an important sphere of utilization of nuclearenergy.In medicine,the use of radioisotopes in various chemical forms for tra-cing purposes offers a powerful diagnostic tool.In industry,agriculture and sci-entific research,radioisotopes are used as radiation sources and tracers.Industri-al instrument of radioisotopes is already in wide use in quality and process cont-rol.High-Flux Engineering Test Reactor has become established as an extremeavailable facility for production of radioisotopes...

Application of radioisotopes is an important sphere of utilization of nuclearenergy.In medicine,the use of radioisotopes in various chemical forms for tra-cing purposes offers a powerful diagnostic tool.In industry,agriculture and sci-entific research,radioisotopes are used as radiation sources and tracers.Industri-al instrument of radioisotopes is already in wide use in quality and process cont-rol.High-Flux Engineering Test Reactor has become established as an extremeavailable facility for production of radioisotopes in China.

放射性同位素的应用是核能利用的一个重要领域。放射性同位素以各种化学形态作为示踪剂的应用为医学提供了强有力的诊断工具。放射性同位素作为放射源和示踪剂用于工农业和科研上。放射性同位索工业仪表早已广泛用于质量管理和过程管理上。在我国,高通量工程试验堆在放射性同位素生产上已成为极有效的装置。

The instrument consists of an argon-filled well type ionization chamber, a MOSFET electrometer and a Z80 microcomputer. It can measure the activity of tens of common nuclides such as 226Ra, 60Co, 137Cs, 32P, 99mTc, 113mIn, 125I and 131I. It can be used as a calibrated instrument when the production and applications of radioisotopes are involved. The result of measurement are displayed in 4-digits. The instrument can storage 91 assayed data and print out the data automatically.The operating range is 3.7 Bq to...

The instrument consists of an argon-filled well type ionization chamber, a MOSFET electrometer and a Z80 microcomputer. It can measure the activity of tens of common nuclides such as 226Ra, 60Co, 137Cs, 32P, 99mTc, 113mIn, 125I and 131I. It can be used as a calibrated instrument when the production and applications of radioisotopes are involved. The result of measurement are displayed in 4-digits. The instrument can storage 91 assayed data and print out the data automatically.The operating range is 3.7 Bq to 3.7 GBq for 226Ra. The functions of this instrument include correction for nuclear decay, background subtraction and automatical detection of trouble.

本文介绍的智能化核素活度计由充氩井型电离室、MOS场效应管静电计测量头和Z80微型计算机组成。可测量~(226)Ra、~(60)Co、~(137)Cs、~(32)P、~(99m)Tc、~(113m)In、~(125)I、~(131)I等几十种常用核素的活度,是放射性同位素生产和应用中的计量仪器。活度值用4位数字显示。能存贮91个测样数据,并可将数据自动打印输出。 ~(226)Ra的测量范围为3.7Bq-3.7GBq。仪器有核衰变修正、扣除本底和自动检测故障的功能。

A special medical therapy reactor (MTR) is required for boron neutron capture therapy (BNCT), which has extended progress in some therapy tests. A simple safe pool type heating reactor (PHR) can supply low temperature heat for urban district heating system, and it is also possible to provide low cost neutron irradiation. This paper proposes a new coupling reactor concept, in which the MTR with an output of 12 MW for the BNCT and radioisotope production is coupled with the PHR with an output of 120 MW. The MTR...

A special medical therapy reactor (MTR) is required for boron neutron capture therapy (BNCT), which has extended progress in some therapy tests. A simple safe pool type heating reactor (PHR) can supply low temperature heat for urban district heating system, and it is also possible to provide low cost neutron irradiation. This paper proposes a new coupling reactor concept, in which the MTR with an output of 12 MW for the BNCT and radioisotope production is coupled with the PHR with an output of 120 MW. The MTR in coupling build ensures lower capital investment and much lower irradiation cost.

正在试验和研究中的硼中子治疗术(BNCT),要求设计专用反应堆,以适应大规模治疗的需要。在反应堆用于低温核供热的研究中,简单、安全、无压力的池式堆能够满足城市供热的需要,而池式堆又可提供廉价的辐射能。所以提出了一种新的池式耦合堆的设计,将BNCT及成熟的医用放射性同位素的生产相结合,建造功率为12MW的医用堆。医用堆与120MW核供热堆耦合建造,建设投资较低。辐射和供热综合利用,医用堆的核燃料成本大为下降。这种低成本反应堆为这类专用堆的建设提供了良好的现实性。

 
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