IAEA GC70 Side Event — Atoms for SDGs: Global Sharing of Nuclear Research Infrastructure · 14 Sept 2026, 11:00–12:30 · CR3, Vienna International Centre IAEA第70届大会边会——核科研基础设施全球共享,共创可持续未来(Atoms for SDGs) · 2026年9月14日 11:00–12:30 · 维也纳国际中心 CR3会议室

INRIO open-access nuclear research infrastructuresINRIO 开放共享核科研基础设施

In September 2024, at the 68th IAEA General Conference, China announced that 12 major nuclear research facilities would be open to users worldwide. INRIO brings these facilities — together with newly joined ones and those of international partners — into one open-sharing platform. Twenty-three facilities are presented here in four categories. 2024年9月,中国在第68届国际原子能机构大会上宣布面向全球开放12项重大核科研设施。INRIO将这些设施与新增设施及国际伙伴的设施共同纳入开放共享平台,分四大类别介绍23项设施。

2024 · IAEA GC68
12
major Chinese nuclear research facilities announced open to users worldwide中国宣布面向全球开放的核科研设施
2026 · INRIO platform平台
23
4 categories大类别 · 14 institutions家单位

It began in September 2024, when China announced 12 major nuclear research facilities open to the world at the 68th IAEA General Conference. On the INRIO open-sharing platform, the lineup has grown to 23 facilities from 14 institutions — explore them by category below. 起点是2024年9月:中国在第68届IAEA大会上宣布12项重大核科研设施面向全球开放。在INRIO开放共享平台上,设施已发展至14家单位的23项——请按以下类别浏览。

Category 01类别一

Research Reactors研究堆

Six reactors supporting fuel and material irradiation, isotope production, neutron science and education — from the operating 60 MW CARR to the CiADS accelerator-driven system under development. 六座反应堆,支撑燃料与材料辐照、同位素生产、中子科学与教育培训——从已运行的60兆瓦中国先进研究堆到在建的加速器驱动次临界系统CiADS。

CARR reactor pool hall CARR campus
China Institute of Atomic Energy (CIAE)中国原子能科学研究院

China Advanced Research Reactor (CARR)中国先进研究堆(CARR)

60 MW1×10¹⁵ n/cm²·s9 + 26 channels9+26个孔道
Facility profile设施详情

A 60 MW tank-in-pool research reactor with a peak thermal neutron flux of 1×10¹⁵ n·cm⁻²·s⁻¹. It provides nine horizontal and 26 vertical experimental channels for fuel and material irradiation, neutron scattering and imaging, activation analysis, nuclear instrument testing and radioisotope research. 60兆瓦罐式池内研究堆,峰值热中子注量率1×10¹⁵ n·cm⁻²·s⁻¹,设有9个水平孔道和26个垂直孔道,用于燃料与材料辐照、中子散射与成像、活化分析、核仪器仪表测试及放射性同位素研究。

MNSR miniature neutron source reactor MNSR core diagram
China Institute of Atomic Energy (CIAE)中国原子能科学研究院

Miniature Neutron Source Reactor (MNSR)微型中子源反应堆(MNSR)

30 kWLEU fuel低浓铀燃料Core life > 20 yr堆芯寿命>20年
Facility profile设施详情

Uses low-enriched uranium fuel and operates at 30 kW thermal power, with a beryllium reflector, light-water coolant and moderator, and a core life of more than 20 years. The facility supports neutron activation analysis, education and training, instrument and detector testing, neutron imaging and research related to boron neutron capture therapy. 采用低浓铀燃料,额定热功率30千瓦,铍反射层、轻水冷却与慢化,堆芯寿命超过20年。可用于中子活化分析、教学培训、仪器与探测器测试、中子成像以及硼中子俘获治疗相关研究。

49-2 swimming pool reactor building 49-2 reactor core under blue Cherenkov light
China Institute of Atomic Energy (CIAE)中国原子能科学研究院

49-2 Swimming Pool Reactor (49-2 SPR)49-2泳池式反应堆

3.5 MW5.2×10¹³ n/cm²·sBroad n/γ fields全能谱n/γ场
Facility profile设施详情

Operates at 3.5 MW with a peak thermal neutron flux of 5.2×10¹³ n·cm⁻²·s⁻¹. Its broad neutron and gamma fields, straightforward operation and diverse irradiation channels support fuel and material irradiation, nuclear instrument testing, isotope irradiation, low-temperature heating studies and personnel training. 热功率3.5兆瓦,峰值热中子注量率5.2×10¹³ n·cm⁻²·s⁻¹。全能谱中子/伽马场、简便的运行方式与多样的辐照孔道,支撑燃料与材料辐照、核仪器仪表测试、同位素辐照、低温供热研究与人员培训。

THFR campus aerial rendering THFR architectural rendering at night
Tsinghua University清华大学

Tsinghua High Flux Reactor (THFR)清华大学宽能谱超高通量试验堆(THFR)

2×10¹⁵ n/cm²·sBroad spectrum宽能谱Rongcheng, Shandong山东荣成
Facility profile设施详情

A major national research infrastructure project in Rongcheng, Shandong. Its water-cooled reactor is designed to provide average thermal and fast neutron fluxes of 2×10¹⁵ n·cm⁻²·s⁻¹ at irradiation positions. The facility will support advanced nuclear fuel and material testing, radioisotope production and neutron science, including the production of high-specific-activity radionuclides. 位于山东荣成的国家重大科技基础设施。水冷堆设计可在辐照位置提供2×10¹⁵ n·cm⁻²·s⁻¹的平均热中子与快中子注量率,将支撑先进核燃料与材料考验、放射性同位素生产及中子科学研究,包括高比活度放射性核素的制备。

CiADS site aerial rendering
Institute of Modern Physics, Chinese Academy of Sciences中国科学院近代物理研究所

China initiative Accelerator Driven System (CiADS)加速器驱动次临界系统(CiADS)

500 MeV · 2.5 MWLead-bismuth cooled铅铋冷却Subcritical reactor次临界堆
Facility profile设施详情

CiADS integrates a superconducting linear accelerator, a high-power spallation target and a lead-bismuth-cooled fast-neutron subcritical reactor. Its accelerator is designed to deliver a 500 MeV, 2.5 MW proton beam to generate spallation neutrons that drive the reactor. The facility will investigate the transmutation of long-lived radionuclides and provide experimental support for advanced nuclear energy systems and a closed nuclear fuel cycle. 集超导直线加速器、高功率散裂靶与铅铋冷却快中子次临界反应堆于一体。加速器设计可提供500兆电子伏特、2.5兆瓦质子束,产生散裂中子驱动次临界堆。设施将研究长寿命放射性核素的嬗变,为先进核能系统与闭式核燃料循环提供实验支撑。

MJTR reactor pool MJTR irradiation position
Nuclear Power Institute of China (NPIC)中国核动力研究设计院

Minjiang Test Reactor (MJTR)岷江试验反应堆(MJTR)

5 MW1992NTD silicon中子嬗变掺杂硅
Facility profile设施详情

Completed in 1992, MJTR is a 5 MW pool-type research reactor with flexible start-up and shutdown and a high level of safety. Its irradiation and experimental positions support fuel testing, shielding studies, isotope production, neutron-transmutation doping of single-crystal silicon and instrument performance testing. 建成于1992年,是一座5兆瓦池式研究堆,启停灵活、安全性高。其辐照与实验孔位支撑燃料考验、屏蔽研究、同位素生产、单晶硅中子嬗变掺杂及仪器仪表性能测试。

Category 02类别二

Accelerator & Neutron Source Facilities加速器与中子源设施

Nine facilities spanning fundamental nuclear physics, radioactive and stable ion beams, synchrotron radiation, medical isotope production, heavy-ion therapy, white neutron sources and laser-driven acceleration. 九项设施,覆盖基础核物理、放射性核束与稳定核束、同步辐射、医用同位素生产、重离子治疗、白光中子源与激光驱动加速。

BRIF 100 MeV proton cyclotron BRIF system layout
China Institute of Atomic Energy (CIAE)中国原子能科学研究院

Beijing Rare Isotope-beam Facility (BRIF)北京稀有同位素束流装置(BRIF)

100 MeV p-cyclotron质子回旋加速器HI-13 tandem串列加速器50+ beams种核束
Facility profile设施详情

An isotope-separation-on-line rare isotope beam facility. Its accelerator systems include a 100 MeV proton cyclotron, the HI-13 tandem accelerator and a superconducting linear accelerator. The facility can provide more than 50 radioactive ion beams, with intensities from 10² to 10¹⁰ particles per second, supporting fundamental and applied nuclear physics, nuclear data measurements and international collaboration. 同位素分离在线(ISOL)稀有同位素束流装置,由100兆电子伏特质子回旋加速器、HI-13串列加速器和超导直线加速器组成。可提供50余种放射性核束,强度10²–10¹⁰粒子/秒,支撑基础与应用核物理、核数据测量及国际合作。

HIRFL accelerator complex
Institute of Modern Physics, Chinese Academy of Sciences中国科学院近代物理研究所

Heavy Ion Research Facility in Lanzhou (HIRFL)兰州重离子研究装置(HIRFL)

H → U ions离子SFC · SSC · CSRUser facility用户装置
Facility profile设施详情

HIRFL accelerates ions from hydrogen to uranium for nuclear physics, atomic physics, heavy-ion applications and interdisciplinary research. Its accelerator complex comprises electron cyclotron resonance ion sources, the Sector Focusing Cyclotron, the Separated Sector Cyclotron, the Radioactive Ion Beam Line in Lanzhou and the Cooler Storage Ring, together with experimental instruments. The facility serves domestic and international scientific users. 可加速从氢到铀的离子,服务核物理、原子物理、重离子应用及交叉学科研究。加速器集群包括电子回旋共振离子源、扇形聚焦回旋加速器(SFC)、分离扇回旋加速器(SSC)、兰州放射性束流线(RIBLL)与冷却储存环(CSR)及实验终端,面向国内外科学用户开放。

HIAF site aerial view
Institute of Modern Physics, Chinese Academy of Sciences中国科学院近代物理研究所

High Intensity Heavy-ion Accelerator Facility (HIAF)强流重离子加速器装置(HIAF)

High intensity高流强New nuclides新核素发现Precision mass精密质量测量
Facility profile设施详情

HIAF provides high-intensity heavy-ion beams across a broad range of energies for nuclear science research. Its capabilities support the discovery of new nuclides, studies of the structure and reaction mechanisms of weakly bound nuclei, and precision mass measurements of short-lived nuclei far from stability. The facility combines advanced heavy-ion acceleration with high-precision nuclear mass spectrometry. 提供宽能区、高流强重离子束,支撑核科学研究——发现新核素、研究弱束缚核结构与反应机制、精密测量远离稳定线的短寿命核素质量。设施将先进重离子加速技术与高精度核质量测量相结合。

IP-SAFE facility campus
Institute of Modern Physics, Chinese Academy of Sciences中国科学院近代物理研究所

Accelerator-based Isotope Production System for Advanced Medical Equipment (IP-SAFE)面向先进医疗设备的加速器同位素生产装置(IP-SAFE)

Ac-225 · Ra-223Superconducting linac超导直线加速器Commissioned 08/20262026年8月调试
Facility profile设施详情

IP-SAFE is designed for large-scale production of scarce medical alpha-emitting radioisotopes, particularly actinium-225 and radium-223. Its core component is a high-intensity superconducting linear accelerator. Initial beam commissioning was completed on 18 August 2026, establishing basic production capability and providing a platform for the development of accelerator-based medical isotope production. 面向稀缺医用α放射性同位素(特别是锕-225与镭-223)的规模化生产,核心为一台强流超导直线加速器。2026年8月18日完成首批束流调试,具备初步生产能力,为加速器医用同位素生产技术发展提供平台。

HIMM heavy-ion treatment terminal
Institute of Modern Physics, Chinese Academy of Sciences中国科学院近代物理研究所

Heavy Ion Medical Machine (HIMM)重离子医用加速器(HIMM)

120–400 MeV/uCarbon-ion therapy碳离子治疗270 mm range射程
Facility profile设施详情

A heavy-ion therapy system that uses a cyclotron as the injector for a synchrotron, comprising an ion source, accelerator and beam transport systems, and treatment terminals. Carbon ions are pre-accelerated to approximately 6.2 MeV per nucleon before acceleration to therapeutic energies of 120–400 MeV per nucleon. The treatment terminals deliver carbon-ion beams with an effective range of up to 270 mm in human tissue. 以回旋加速器作为同步加速器注入器的重离子治疗系统,由离子源、加速器与束流传输系统及治疗终端组成。碳离子预加速至约6.2 MeV/u,再加速至120–400 MeV/u治疗能区;治疗终端可输出在人体组织中有效射程达270毫米的碳离子束。

ECANS electron linear accelerator hall ECANS experimental equipment
East China University of Technology (ECUT)东华理工大学

East China Accelerator Neutron Source (ECANS)华东加速器中子源(ECANS)

70 kW7 platforms七大实验平台White neutron source白光中子源
Facility profile设施详情

ECANS comprises a linear electron accelerator, an accelerator-driven white neutron source and auxiliary systems. It is designed to host seven experimental platforms for isotope production, nuclear data measurement, electron source characterization, material analysis, irradiation and radiation imaging. The facility supports scientific experiments and irradiation applications, with long-pulse and short-pulse options for research and a design power of 70 kW. 由电子直线加速器、加速器驱动白光中子源及配套设施组成,设有七大实验平台,覆盖同位素生产、核数据测量、电子源表征、材料分析、辐照与辐射成像。具备长脉冲与短脉冲两种科学实验模式,设计功率70千瓦,支撑科学实验与辐照应用。

CLAPA-II laser acceleration hall CLAPA-II laser bay
Beijing Laser Acceleration Innovation Center (BLAIC) · led by Peking University北京激光加速创新中心 · 北京大学牵头

CLAPA-II (Compact LAser Plasma Accelerator-II)紧凑型激光等离子体加速器Ⅱ(CLAPA-Ⅱ)

PW laser-driven激光驱动High gradient高梯度Proton therapy R&D质子放疗研发
Facility profile设施详情

CLAPA-II is a petawatt laser-driven proton accelerator developed under the leadership of Peking University at the Beijing Laser Acceleration Innovation Center. It accelerates protons through interactions between ultra-intense laser pulses and target materials, supporting compact high-gradient acceleration, next-generation proton radiotherapy systems and interdisciplinary research. 由北京大学牵头、在北京激光加速创新中心研制的拍瓦激光驱动质子加速器。利用超强激光脉冲与靶材相互作用加速质子,支撑紧凑型高梯度加速、下一代质子放疗系统及交叉学科研究。

Prolancet synchrotron ring Prolancet treatment room
Shanghai APACTRON Particle Equipment Co., Ltd.上海艾普强粒子设备有限公司

Prolancet Synchrotron-based Proton Accelerator FacilityProLancet同步加速器质子装置

70.6–250 MeVPencil beam scanning笔形束扫描FLASH
Facility profile设施详情

The Prolancet proton accelerator facility supports product development and scientific collaboration. Its energy range is 70.6–250 MeV, with beam intensity spanning ultra-low levels, conventional therapeutic levels and FLASH research above tens of nA. It supports pencil beam scanning and includes X-ray image guidance. ProLancet质子加速器装置支撑产品开发与科研合作。能区70.6–250兆电子伏特,流强覆盖超低水平、常规治疗水平及数十纳安以上的FLASH研究区间;支持笔形束扫描,并配备X射线图像引导。

SSRF storage ring hall
Shanghai Advanced Research Institute, CAS中国科学院上海高等研究院

Shanghai Synchrotron Radiation Facility (SSRF)上海同步辐射光源

3.5 GeV3rd-generation light source第三代同步辐射光源User facility用户装置
Facility profile设施详情

SSRF is a third-generation synchrotron radiation light source in Zhangjiang, Shanghai, consisting of a 150 MeV linac, a 180 MeV booster-enhanced storage ring and a 3.5 GeV electron storage ring with a circumference of 432 m. One of the large multidisciplinary scientific platforms in China, its brilliant X-ray beams serve thousands of researchers each year across energy and materials science, environmental science, life sciences and medicine — including research supporting nuclear science and technology programmes. 上海同步辐射光源(SSRF)位于上海张江,是第三代同步辐射光源,由150 MeV直线加速器、180 MeV增强器和周长432米的3.5 GeV电子储存环组成。作为我国大型多学科科学研究平台之一,其高亮度X射线束流每年服务数千名科研人员,支撑能源与材料科学、环境科学、生命科学与医学等研究,包括服务核科技相关研究项目。

Category 03类别三

Fusion Facilities聚变装置

Two magnetic-confinement devices — China's flagship new-generation tokamak and a spherical torus for proton-boron fusion — opened for joint experiments, data sharing and collaborative analysis. 两项磁约束聚变装置——中国新一代人造太阳托卡马克与面向氢硼聚变的球形环装置——面向联合实验、数据共享与协同分析开放。

HL-3 tokamak in its experimental hall HL-3 tokamak device
Southwestern Institute of Physics (SWIP)核工业西南物理研究院

HL-3 Tokamak — the new-generation "artificial sun"新一代人造太阳 · 中国环流三号(HL-3)

3 MA plasma current等离子体电流150M °C core堆芯1.5亿°CITER satellite deviceITER卫星装置
Facility profile设施详情

HL-3 is China's self-developed fusion device of the largest scale and highest parameters. Its plasma volume is double that of other Chinese fusion devices, with core ion temperatures of 150 million °C and plasma currents up to 3 MA — China's only large tokamak with core-level plasma operation capability, and the first ITER satellite device in China. In May 2025, HL-3 achieved a fusion triple product exceeding 10²⁰ m⁻³·s·keV. The device is currently undergoing upgrades, with plans to conduct China's first burning plasma experiment by 2027. 我国自主设计建造、规模最大、参数最高的聚变实验装置:等离子体体积约为国内其他聚变装置的两倍,堆芯离子温度达1.5亿摄氏度,等离子体电流可达3兆安,是我国唯一具备堆芯级等离子体运行能力的大科学装置,也是ITER组织在中国的首台卫星装置。2025年5月,HL-3实现聚变三乘积超过10²⁰ m⁻³·s·keV。装置目前正在升级改造,计划于2027年前开展中国首次燃烧等离子体实验。

EXL-50U facility hall EXL-50U spherical torus device, top view
Beijing ENN Fusion Energy Science and Technology Co., Ltd.新奥聚变(ENN Fusion)

EXL-50U Spherical Torus Facility玄龙-50U球形环装置(EXL-50U)

Proton-boron fusion氢硼聚变Mega-ampere discharges兆安级放电1.2 T · 7 MW
Facility profile设施详情

EXL-50U is a spherical-torus facility for proton-boron fusion research. Since experimental operations began in January 2024, it has demonstrated mega-ampere-class proton-boron plasma discharges, electron temperatures of 120 million °C and ion temperatures of 60 million °C. Its reported capabilities include a central magnetic field of 1.2 T sustained for seconds and 7 MW of heating power. It supports joint experiments, data sharing, collaborative analysis and facility testing. 面向氢硼聚变研究的球形环装置。自2024年1月投入实验运行以来,已实现兆安级氢硼等离子体放电、1.2亿摄氏度电子温度与6000万摄氏度离子温度,并具备秒级持续1.2特斯拉中心磁场与7兆瓦加热功率等能力。装置支撑联合实验、数据共享、协同分析与装置测试。

Category 04类别四

Nuclear Science & Safety Facilities核科学与安全设施

Six facilities: deep-underground science, geological disposal research, containment thermal-hydraulics and structural integrity, full-scope operator training, and nuclear environment simulation. 六项设施:覆盖深地科学、高放废物地质处置、安全壳热工水力与结构性能、全范围操纵员培训,以及核环境模拟。

JUNA experimental hall in the Jinping underground laboratory JUNA laboratory entrance
China Institute of Atomic Energy (CIAE)中国原子能科学研究院

Jinping Underground Nuclear Astrophysics (JUNA)锦屏深地核天体物理实验平台(JUNA)

深地环境极低本底核天体物理Deep undergroundLow backgroundNuclear astrophysics
Facility profile设施详情

JUNA is a deep-underground accelerator facility dedicated to direct measurements of key nuclear reactions in astrophysical environments. Located at the China Jinping Underground Laboratory, it combines a very low cosmic-ray background with intense proton and helium ion beams. The facility supports studies of stellar burning, nucleosynthesis, novae and supernovae, as well as detector development and international collaboration in experimental nuclear astrophysics. 致力于直接测量天体物理环境关键核反应的深地加速器设施。位于中国锦屏地下实验室,宇宙射线本底极低,并提供强流质子与氦离子束,支撑恒星燃烧、核合成、新星与超新星研究,以及探测器研发与实验核天体物理国际合作。

Beishan URL site and underground layout Spiral ramp inside the Beishan URL
Beijing Research Institute of Uranium Geology核工业北京地质研究院

Beishan Underground Research Laboratory (Beishan URL)中国北山高放废物地质处置实验室

560 m3 shafts + 1 ramp竖井+1斜坡道HLW disposal高放废物处置
Facility profile设施详情

Beishan URL is an underground research facility supporting the development of China's high-level radioactive waste repository. Located in the Gobi Desert of Gansu Province, its design features three shafts, one ramp and two experimental levels, with a maximum depth of 560 m. The facility provides a platform for research and international cooperation on the safe geological disposal of high-level radioactive waste. 支撑中国高放废物处置库研发的地下科研设施,位于甘肃戈壁,采用"三竖井+一斜坡道"方案,设有两个实验层段,最大深度560米。为高放废物安全地质处置研究与国际合作提供平台。

PANGU facility exterior PANGU test platform interior
China Nuclear Power Engineering Co., Ltd. (CNPE)中国核电工程有限公司

Platform for Integral Thermal-hydraulic Behaviour of Containment (PANGU)安全壳热工水力综合实验装置(盘古)

1,000 m³H 19.8 m · Ø 8.5 m高19.8米 · 直径8.5米Passive cooling非能动冷却
Facility profile设施详情

Built in 2017, PANGU investigates containment thermal-hydraulic behaviour and verifies passive cooling systems. The facility has a free internal volume of 1,000 m³, a height of 19.8 m and a diameter of 8.5 m. Research includes passive heat removal, non-condensable gases and thermal stratification. It supports experimental studies, system development and validation, joint projects and technical training. 建成于2017年,用于研究安全壳热工水力行为、验证非能动冷却系统。装置内部净容积1000立方米,高19.8米、直径8.5米;研究涵盖非能动排热、不凝结气体与热分层等,支撑实验研究、系统开发与验证、联合项目及技术培训。

XUANWU containment mockup XUANWU containment mockup, aerial view
China Nuclear Power Engineering Co., Ltd. (CNPE)中国核电工程有限公司

Containment Mockup for Performance Test (XUANWU)安全壳结构性能实验平台(玄武)

1.6 MPa · 160 °C1,400+ measurement points个测点1:3.2
Facility profile设施详情

XUANWU combines a prestressed reinforced-concrete containment mockup, a coupled temperature-pressure loading system and intelligent monitoring. The 25 m-high facility represents a typical PWR containment at a scale of 1:3.2. It can simulate severe-accident loading up to 1.6 MPa and 160 °C, with more than 1,400 measurement points supporting structural performance, load-bearing capacity, monitoring technology and ageing management research. 集预应力钢筋混凝土安全壳模型、温压耦合加载系统与智能监测于一体。装置高25米,按典型压水堆安全壳1:3.2比例建造,可模拟最高1.6兆帕、160摄氏度的严重事故载荷;1400余个测点支撑结构性能、承载能力、监测技术与老化管理研究。

Full-scope PWR simulator control room
Harbin Engineering University (HEU)哈尔滨工程大学

Full-scope Simulation Platform for a PWR Nuclear Power Plant压水堆核电站全范围模拟机平台

300 MWe PWRFull-scope simulator全范围模拟机Training & research培训与科研
Facility profile设施详情

Developed for a 300 MWe pressurized water reactor plant, this platform integrates full-scope models of reactor physics, thermal hydraulics, coolant systems, electrical systems, auxiliary systems and engineered safety features. It simulates normal operation, start-up, shutdown, power regulation and design-basis accidents. Detailed three-dimensional equipment models provide high-fidelity visualization for teaching, operator training and research on nuclear power plant operational safety. 面向300兆瓦级压水堆核电站开发,集成反应堆物理、热工水力、冷却剂系统、电气系统、辅助系统与专设安全设施的全范围模型,可模拟正常运行、启动、停堆、功率调节及设计基准事故。精细三维设备模型提供高保真可视化,服务教学、操纵员培训与核电站运行安全研究。

CIRP atmospheric boundary layer wind tunnel Wind tunnel test section instrumentation CIRP environmental laboratory
China Institute for Radiation Protection (CIRP)中国辐射防护研究院

Wind Tunnel Featured Nuclear Environment Simulation Facilities以风洞为代表的核环境模拟设施

Boundary layer wind tunnel大气边界层风洞Radionuclide tracing核素示踪7 laboratories七大实验平台
Facility profile设施详情

Founded in 1962, CIRP is the only comprehensive research establishment in China solely dedicated to radiation protection research and application, with full coverage from source, pathway, dose to effect. Its environment simulation facilities include the atmospheric boundary layer wind tunnel, the surface water and groundwater laboratories, the field in-situ tracer experimental platform for radionuclides, the radioactive aerosol deposition simulation laboratory, the radioactive high-illumination artificial climate laboratory, and aquatic ecology laboratories. They simulate the migration of radioactive substances released under normal operation and accident conditions of nuclear facilities, with simulation capability and measurement technology comparable to international standards. 中国辐射防护研究院成立于1962年,是我国唯一专门从事辐射防护研究与应用的综合性科研机构,具备从源项、途径、剂量到效应的全链条辐射防护研究体系。核环境模拟设施包括大气边界层风洞、地表水实验室、地下水实验室、放射性核素野外原位示踪实验平台、放射性气溶胶沉积模拟实验室、放射性高照度人工气候实验室以及放射性与非放射性水生生态学实验室,能够模拟核设施正常运行及事故工况下释放的放射性物质的迁移过程,模拟能力与测量技术达到国际先进水平。

✦ More facilities coming soon.更多设施即将加入,敬请期待。
Partners伙伴

Shared facilities of international partners国际伙伴共享设施

INRIO's vision is global. At the Vienna side event, partner institutions will present their own open facilities and user programmes. INRIO的愿景是全球性的。在维也纳边会上,伙伴机构将介绍各自的开放设施与用户计划。

Open facilities of international partners — coming soon国际伙伴开放设施——即将上线

Leading research reactors, accelerators and neutron sources from partner institutions around the world will join the INRIO open-sharing platform. Partners will present their facilities and user programmes at the Vienna side event — stay tuned. 来自全球伙伴机构的研究堆、加速器与中子源等一流设施将陆续加入INRIO开放共享平台。伙伴机构将在维也纳边会上介绍各自设施与用户计划,敬请期待。

User access用户对接

How to propose an experiment如何提出实验申请

1 · Get in touch取得联系
Send the INRIO contact point a short description of your experiment, the facility of interest and your timeline.向INRIO联系人简要说明实验内容、意向设施与时间安排。
2 · Joint definition共同商定
Feasibility, safety review, schedule, costs, data delivery and IP are agreed directly with the operator — voluntary, equal, compliant and risk-controlled.可行性、安全审查、进度、费用、数据交付与知识产权等由双方直接商定——自愿、平等、合规、风险可控。
3 · Via INRIO经INRIO对接
Members may also submit needs through the INRIO platform for matching and coordination by the Secretariat.会员亦可通过INRIO平台提交需求,由秘书处对接协调。
Facility access & general inquiries设施对接与一般咨询

Ms. Li Jinfeng 李金凤

China Institute of Atomic Energy (CIAE)中国原子能科学研究院
✉ info@inrio.net
☎ +86-15801343514

What to include申请建议包含

A short proposal helps us respond faster简明的申请说明有助于更快响应

Your experiment objectives and technique · the facility and type of access you need (beam time, irradiation, testing, training) · proposed schedule · your institution and team. 实验目标与方法 · 意向设施与所需机时/辐照/测试/培训类型 · 计划时间 · 所在机构与团队情况。

Stay connected with INRIO与INRIO保持联系

Subscribe to news on open facilities, membership and cooperation.订阅开放设施、会员与合作动态。

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