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Chinese nuclear reactor design
The Hualong One (Chinese: 华龙一号; pinyin: Huálóng yī hào; lit. 'China Dragon №1') is a Chinese Generation III pressurized water nuclear reactor jointly
Hualong_One
reactors (PWR) such as the Hualong One, CAP-1000, Guohe One are the mainstream technology in the near future, and the Hualong One is also exported to Pakistan
Nuclear_power_in_China
Chinese state-owned enterprise
into one standardised design - the Hualong One. After the merger, both companies retain their own supply chain and their versions of the Hualong One will
China National Nuclear Corporation
China_National_Nuclear_Corporation
Chinese state-owned company
into one standardised design - the Hualong One. After the merger, both companies retain their own supply chain and their versions of the Hualong One will
China General Nuclear Power Group
China_General_Nuclear_Power_Group
Series of nuclear reactors developed by China National Nuclear Corporation
Nuclear Corporation (CNNC), and are predecessors of the more current Hualong One design. The CNP-300 is a pressurized water nuclear reactor developed
CNP_/_ACP_nuclear_reactors
first Hualong One nuclear reactor starts commercial operations". Reuters. 30 January 2021. Retrieved 30 January 2021. "Second Fuqing Hualong One enters
List of commercial nuclear reactors
List_of_commercial_nuclear_reactors
Type of nuclear reactor
Generation II reactors; newer Generation III designs such as the AP1000, Hualong One, APR-1400 and VVER-1000. New Generation III+ reactor designs: the AP1000
Pressurized_water_reactor
Chinese nuclear reactor design
merged design was to be called the ACC-1000, but ultimately it was named Hualong One. In August 2014 the Chinese nuclear regulator review panel classified
CPR-1000
Topics referred to by the same term
Hualong may refer to: Hualong District (华龙区), Puyang, Henan Hualong Hui Autonomous County (化隆回族自治县), of Haidong Prefecture, Qinghai Hualong, Guangzhou
Hualong
Nuclear plant in Shandong, China
July 2024, first concrete was poured for Shidaowan 1, the first of four Hualong One reactors. In May 2025, first concrete was poured for Shidaowan 2. In
Shidao Bay Nuclear Power Plant
Shidao_Bay_Nuclear_Power_Plant
Nuclear power plant in Karachi, Pakistan
of Karachi Nuclear Power Plant and signed an agreement to supply two Hualong One nuclear power plants with the start of commercial operations scheduled
Karachi_Nuclear_Power_Complex
represents the first nuclear power project in Northeast China to adopt the "Hualong One"—an independently developed third-generation nuclear power technology
Zhuanghe_Nuclear_Power_Plant
Nuclear power plant in Pakistan
build third Hualong One nuclear reactor’ in Pakistan Proctor, Darrell (20 June 2023). "Pakistan Expanding Nuclear Plant With New Hualong One Reactor". POWER
Chashma_Nuclear_Power_Complex
Nuclear power station in Fujian, China
concrete for Unit 1 was poured one week later, on 16 October. China's State Council approved the construction of two Hualong One units as Phase II on 14 September
Zhangzhou_Nuclear_Power_Plant
Proposed nuclear power plant in Guangdong, China
to have AP1000 light water reactors, but later changed plans to the Hualong One design. Approval for the plant was granted in February 2019 and first
Taipingling Nuclear Power Plant
Taipingling_Nuclear_Power_Plant
Nuclear power plant in Fujian Province, China
In November 2014 it was announced that units 5 and 6 would be of the Hualong One (updated CPR-1000) design, with unit 5 scheduled to be in operation about
Fuqing_Nuclear_Power_Plant
Nuclear power plant in Ningde, China
In July 2024, first concrete was poured for Unit 5, the first of two Hualong One reactors. The Ningde Nuclear Power Plant consist of 4 operational reactors
Ningde_Nuclear_Power_Plant
Chinese nuclear power plant
in the Zhejiang province of eastern China. It is planned to house 6 Hualong One pressurized water reactors. CNNC subsidiary CNNC Zhejiang Energy Co Ltd
Jinqimen_Nuclear_Power_Plant
Very small nuclear reactor of 1-20 MW capacity
areas, and industries such as desalinization and hydrogen fuel production. One of the primary advantages of nuclear microreactors is that they have a lower
Nuclear_microreactor
secretary Xi Jinping signed a cooperation agreement, and the build of a Hualong One design power station has been proposed. In December 2015 a new uranium
Nuclear_power_in_Argentina
American nuclear power plant
bankruptcy in 2017, China decided in 2019 to build the domestically designed Hualong One rather than the AP1000 at Zhangzhou. After 2019, all plans for future
AP1000
Chinese nuclear power plant
2015. In April 2022, the government approved the construction of two Hualong One reactors, which were designated Units 5 and 6. Construction of the first
Lufeng_Nuclear_Power_Plant
Chinese nuclear power plant
in the Zhejiang province of eastern China. It is planned to house six Hualong One pressurised water reactors. The plant is expected to produce 52.5 terawatt-hours
San'ao_Nuclear_Power_Plant
Nuclear generating complex in Argentina
agreed on an engineering, procurement, and construction contract for a Hualong One nuclear power plant with a gross generation capacity of 1200 MWe, at
Atucha_Nuclear_Power_Plant
Small modular nuclear reactor design
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
BWRX-300
Nuclear power plant in Guangxi, China
Units 1 and 2 are both CPR-1000s, units 3–4 are Hualong Ones, units 5–6 are planned also to be Hualong One reactors. Fangchenggang 3 and 4 will be the reference
Fangchenggang Nuclear Power Plant
Fangchenggang_Nuclear_Power_Plant
Chinese Sufi leader (died 1871)
Ma Hualong (simplified Chinese: 马化龙; traditional Chinese: 馬化龍; pinyin: Mǎ Huàlóng; Wade–Giles: Ma Hua-lung) (died March 2, 1871), was the fifth leader
Ma_Hualong
Nuclear fuel that has been irradiated in a nuclear reactor
the lanthanides; much of the fission yield is concentrated in two peaks, one in the second transition row (Zr, Mo, Tc, Ru, Rh, Pd, Ag) and the other later
Spent_nuclear_fuel
Nuclear plant in Shandong, China
power plant in Shandong province, China. It is planned to house six Hualong One pressurized water reactors, which will produce about 50 TW-hr per year
Zhaoyuan_Nuclear_Power_Plant
Proposed nuclear power plant in Jiangsu, China
Power Company. Phase I will consist of two 1208 MWe Hualong One pressurized water reactors (PWR) and one 660 MWe HTR-PM600 high-temperature gas-cooled reactors
Xuwei_Nuclear_Power_Plant
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
Lists_of_nuclear_reactors
Class of nuclear reactors with improved safety over its predecessors
August 2020[update], the commission has approved seven new designs, and is considering one more design as well as renewal of an expired certification. Proponents of
Generation_III_reactor
Nuclear reactor
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
KN-3_reactor
Naturally occurring uranium self-sustaining nuclear chain reactions
directly in appreciable amounts but rather as a decay product of iodine-135 (or one of its parent nuclides). Xenon-135 itself is unstable and decays to caesium-135
Natural nuclear fission reactor
Natural_nuclear_fission_reactor
Type of nuclear fission reactor
Power Program. The preliminary design for one such reactor was produced by ORNL under Weinberg's supervision. One of the Army reactors, PM-2A, was noted
Small_modular_reactor
Nuclear fission reactor
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
OK-650_reactor
Nuclear plant in Zhejiang, China
2014 and 2015. In April 2015, a start date of 2016 was projected for both. One month later, the start date was put back to 2017. In January 2017 China National
Sanmen_Nuclear_Power_Station
Device for controlled nuclear reactions
Japanese Advanced Pressurized Water Reactor, American AP1000, Chinese Hualong Pressurized Reactor and the Franco-German European Pressurized Reactor
Nuclear_reactor
Soviet marine nuclear reactor
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
OK-150_reactor
Type of nuclear reactor
Hans von Halban and Lew Kowarski at the University of Cambridge carried out one of the first heavy water-moderated pile experiments, measuring net neutron
Heavy-water_reactor
Type of nuclear reactor that uses normal water
is used as both a coolant and a neutron moderator in these reactors, if one of these reactors suffers damage due to military action, leading to a compromise
Light-water_reactor
Decommissioned nuclear power plant in England
including one at Bradwell. On 19 January 2017, the Office for Nuclear Regulation started their Generic Design Assessment process for the Hualong One design
Bradwell nuclear power station
Bradwell_nuclear_power_station
Nuclear reactor in Fujian province, China
CFR-600 642 MWe 682 MWe 1882 MWt 2020-12-27 Phase II Xiapu-3 PWR Hualong One 1000 MW 1215 MW 3400 MW Xiapu-4 PWR Hualong One 1000 MW 1215 MW 3400 MW
CFR-600
Russian nuclear pressurized water reactors
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
VM_reactor
Molten salt reactor program
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
TMSR (Chinese reactor project)
TMSR_(Chinese_reactor_project)
Nuclear power plant in Guangdong, China
August 2022. Retrieved 28 August 2022. "Taishan nuclear power plant to be one of world's largest". People's Daily. 22 December 2009. Retrieved 2 December
Taishan_Nuclear_Power_Plant
Canadian heavy water nuclear reactor design
worldwide: 17 in Canada, three in South Korea, two each in Romania and China, and one each in India and Argentina. There have been two major types of CANDU reactors
CANDU_reactor
Nuclear reactor
shore using 50 high-voltage cables. Three main floating power units and one reserve unit will be installed, which will be used during the repair of the
RITM-200
Proposed nuclear power station in Essex, England
technology to the Bradwell B project, with the Chinese designed and developed Hualong One reactor expected to be used. On 19 January 2017, the United Kingdom Office
Bradwell B nuclear power station
Bradwell_B_nuclear_power_station
Prototype pebble bed reactor, China
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
HTR-10
Soviet / Russian nuclear reactor type
VVER-210 was built at the Novovoronezh Nuclear Power Plant before the 1970s, as one of two initial Soviet reactor designs (the other being the RBMK). There have
VVER
Nuclear fission reactor family
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
KLT-40_reactor
Chinese small modular nuclear reactor
2021, reactor two achieved first criticality. On 20 December 2021, reactor one was connected to the state power grid and began producing power. On 9 December
HTR-PM
Nuclear reactor where water boils in core
frequency of the reactor was estimated to be between 10−4 and 10−7 (i.e., one core damage accident per every 10,000 to 10,000,000 reactor years). Steam
Boiling_water_reactor
Type of nuclear reactor
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
Graphite-moderated_reactor
Russian nuclear fission reactor for use in submarines
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
BM-40A_reactor
Molten salt reactor prototype
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
TMSR-LF1
Nuclear power plant in China
Phase II 3 Hualong One 1000 1197 3190 2021-03-31 2026-07-10 2026-08-01 2026 4 Hualong One 1000 1197 3190 2021-12-28 2026 SMR 5 Linglong One 100 125 385
Changjiang Nuclear Power Plant
Changjiang_Nuclear_Power_Plant
Proposed nuclear power plant design
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
ThorCon_nuclear_reactor
Russian small nuclear reactor design
December 2021, however a decision was made in 2020 to renew the license of one of the three reactors until December 2025. Spent fuel of the EGP-6 reactors
EGP-6
Indian fast breeder nuclear reactor design
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
FBR-600
Proposed nuclear reactor currently undergoing development in the U.S.
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
Small, sealed, transportable, autonomous reactor
Small,_sealed,_transportable,_autonomous_reactor
Nuclear fission reactor
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
OK-550_reactor
Nuclear reactor where the coolant is liquid metal
disposal concern. There are two proposals for a sodium cooled Gen IV LMFR, one based on oxide fuel, the other on the metal-fueled integral fast reactor
Liquid_metal_cooled_reactor
Nuclear reactor generating more fissile material than it consumes
stations are sodium cooled liquid metal fast breeder reactors (LMFBR) of one of the following two designs: Loop type, in which the primary coolant is
Breeder_reactor
Nuclear reactor design
nuclear chain reaction within a nuclear reactor is to use, on average, exactly one of the neutrons released from each nuclear fission event to stimulate another
Pressurized heavy-water reactor
Pressurized_heavy-water_reactor
US/Russian design concept ~1997 - never built
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
Gas turbine modular helium reactor
Gas_turbine_modular_helium_reactor
Nuclear power plant component
Association". www.world-nuclear.org. "Reactor Pressure Vessel Is Installed in Hualong One". www.yicaiglobal.com. "Framatome forge raises replacement parts production :
Reactor_pressure_vessel
Breeder reactor in Tamil Nadu, India
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
Fast_Breeder_Test_Reactor
Fast-neutron nuclear reactor cooled by molten lead
1970s, but some proposed new nuclear reactor designs are lead-cooled, with one under construction. Fuel designs being explored for this reactor scheme include
Lead-cooled_fast_reactor
Russian nuclear reactor design based on the RBMK reactor design
concrete wall. The two structures are independent and separated physically from one another on a common foundation. Damage from an earthquake of M L {\displaystyle
MKER
Type of Soviet nuclear power reactor
like a boiling water reactor as water boils in the pressure tubes. It is one of two power reactor types to enter serial production in the Soviet Union
RBMK
Type of nuclear reactor
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
UNGG_reactor
Lead-cooled reactor family designed in Russia
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
BREST_(reactor)
South Korean advanced pressurized water nuclear reactor
2013, but the schedules for both Units 3 & 4 were delayed by approximately one year to replace safety-related control cabling, which had failed some tests
APR-1400
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
Light_water_graphite_reactor
Third-generation pressurised water nuclear reactor design
indicated EDF was considering designing two new lower powered reactors, one with output of 1500 MW and the other 1000 MW. Machenaud stated there would
EPR_(nuclear_reactor)
Type of nuclear reactor that uses molten material as fuel
fissioning the bred plutonium. Since one neutron is required to sustain the fission reaction, this leaves a budget of less than one neutron per fission to breed
Liquid fluoride thorium reactor
Liquid_fluoride_thorium_reactor
Type of British nuclear reactor
Treasury Economic Advisor, David Henderson, described the AGR programme as one of the two most costly British government-sponsored project errors, the other
Advanced_gas-cooled_reactor
First industrial-scale reactor in the Soviet Union
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
A-1_(nuclear_reactor)
U.S. project 1946–1961
Connecticut. This concept would have produced far less radioactive pollution. One or two loops of liquid metal would carry the heat from the reactor to the
Aircraft_Nuclear_Propulsion
Indian nuclear reactor design
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
IPHWR-700
reactors at four locations (eight advanced gas-cooled reactors (AGR) and one pressurised water reactor (PWR)), producing 5.9 GWe. It also has nuclear
Nuclear power in the United Kingdom
Nuclear_power_in_the_United_Kingdom
Type of nuclear reactor cooled by molten sodium
Russia, and India have operational sodium-cooled fast reactors. The SFR was one of the six technologies selected by the Generation IV International Forum
Sodium-cooled_fast_reactor
reducing the dependence on fossil fuels. Argentina will also build a Hualong One nuclear plant that is expected to commence construction in 2022 and be
List of projects of the Belt and Road Initiative
List_of_projects_of_the_Belt_and_Road_Initiative
Russian fast breeder nuclear reactor, operating since 2016
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
BN-800_reactor
Type of nuclear reactor that operates at high temperatures as part of normal operation
1974 as a technology demonstrator. Fort St. Vrain Generating Station was one example of this design that operated as an HTGR from 1979 to 1989. Though
High-temperature gas-cooled reactor
High-temperature_gas-cooled_reactor
Indian nuclear reactor design
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
IPHWR-220
Nuclear reprocessing plant in Russia
destruction of a process building. 21 April 1957 – Criticality accident. One operator died from receiving over 3000 rad. Five others received doses of
Mayak
Indian nuclear reactor design
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
Advanced_heavy-water_reactor
Nuclear power safety method that does not require electrical power nor intervention
reactors and boiling water reactors are systems that have been designed with one kind of passive safety feature. In the event of an excessive-power condition
Passive_nuclear_safety
Russian fast neutron research reactor
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
BOR-60
Chemical compound
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
FLiBe
Type of nuclear reactor, CO2 or He cooled
origin, with a few export sales: two Magnox plants to Italy and Japan, and one UNGG to Spain. More recently, GCRs based on the declassified drawings of
Gas-cooled_reactor
Nuclear reactor where fast neutrons maintain a fission chain reaction
to the collision of two ping pong balls; when a fast ping pong ball hits one that is stationary or moving slowly, they will both end up having about half
Fast-neutron_reactor
Type of nuclear reactor cooled by heat pipes
efficiently transfer heat. A working fluid absorbs heat and evaporates at one end of the pipe, then circulates naturally to the other end where it condenses
Heat_pipe-cooled_reactor
Indian nuclear reactor design
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
IPHWR
Indian nuclear reactor design
similar reactor of US origin EPR, similar reactor of European origin Hualong One, similar reactor of Chinese origin APR-1400, similar reactor of South
IPWR-900
Public school in Sichuan Province, China
(邢继), deputy general manager, chief engineer, and chief designer of Hualong One, China Nuclear Power Engineering Co., Ltd. {{coord missing|China}} "四川省南充高级中学"
Nanchong_Senior_High_School
2011 book by Hassan Rowhani
fission Pressurized AP1000 APR-1400 APR+ APWR ATMEA1 CAP1400 CPR-1000 EPR Hualong One ACPR1000 ACP1000 VVER RITM-200 KLT-40 OK-150/OK-900 OK-650 KN-3 VM IPWR-900
National Security and Nuclear Diplomacy
National_Security_and_Nuclear_Diplomacy
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