Nuclear Materials, Facilities and Equipment
Plant for the separation of isotopes of 'natural uranium', 'depleted uranium' or 'special fissile materials', and specially designed or prepared equipment and components therefor.
| Reference | Parameter | Threshold |
|---|---|---|
| 0B001.b.3 | rotor tube wall thickness | <= 12 mm |
| 0B001.b.3 | rotor tube diameter | within 75-650 mm |
| 0B001.b.4 | ring/bellows wall thickness | <= 3 mm |
| 0B001.b.4 | ring/bellows diameter | within 75-650 mm |
| 0B001.b.5 | baffle diameter | within 75-650 mm |
| 0B001.b.6 | cap diameter | within 75-650 mm |
| 0B001.c.5 | and designed for a leakage pressure rate of | < 10 Pa |
| 0B001.d.1 | curved channels having a radius of curvature | < 1 mm |
| 0B001.f.1 | ric acid and designed to have an exchange rate half-time of | < 10 s |
| 0B001.i.1 | with an output frequency | > 30 GHz and |
| 0B001.i.1 | output frequency greater than 30 GHz and mean power output | > 50 kW |
| 0B001.j.4 | Magnet pole pieces with a diameter | > 2 m |
0B001.aPlant specially designed for separating isotopes of 'natural uranium', 'depleted uranium' or 'special fissile materials', as follows:
0B001.a.1Gas centrifuge separation plant
0B001.a.2Gas diffusion separation plant
0B001.a.3Aerodynamic separation plant
0B001.a.4Chemical exchange separation plant
0B001.a.5Ion exchange separation plant
0B001.a.6Atomic Vapour Laser Isotope Separation (AVLIS) plant
0B001.a.7Molecular Laser Isotope Separation (MLIS) plant
0B001.a.8Plasma separation plant
0B001.a.9Electromagnetic separation plant
0B001.bGas centrifuges and assemblies and components, specially designed or prepared for gas centrifuge separation process, as follows:
0B001.b.1Gas centrifuges
0B001.b.2Complete rotor assemblies
0B001.b.3Rotor tubes with a wall thickness of 12 mm or less, a diameter of between 75 mm and 650 mm, and manufactured from high strength-to-density ratio materials
0B001.b.4Rings or bellows with a wall thickness of 3 mm or less, a diameter of between 75 mm and 650 mm, designed to give local support to the rotor tube or to join together a number of rotor tubes, and manufactured from high strength-to-density ratio materials
0B001.b.5Baffles of between 75 mm and 650 mm diameter for mounting inside the centrifuge rotor tube, manufactured from high strength-to-density ratio materials
0B001.b.6Top caps or bottom caps of between 75 mm and 650 mm diameter designed to fit the ends of the rotor tube, manufactured from high strength-to-density ratio materials
0B001.cEquipment and components, specially designed or prepared for gas diffusion separation process
0B001.dEquipment and components, specially designed or prepared for aerodynamic separation process
0B001.eEquipment and components, specially designed or prepared for chemical exchange separation process
0B001.fEquipment and components, specially designed or prepared for ion exchange separation process
0B001.gEquipment and components, specially designed or prepared for laser-based separation processes (AVLIS, MLIS, CRISLA)
0B001.hEquipment and components, specially designed or prepared for plasma separation process
0B001.iEquipment and components, specially designed or prepared for electromagnetic separation process
0B001.a.1Gas centrifuge separation plant;
0B001.a.2Gaseous diffusion separation plant;
0B001.a.3Aerodynamic separation plant;
0B001.a.4Chemical exchange separation plant;
0B001.a.5Ion-exchange separation plant;
0B001.a.6Atomic vapour "laser" isotope separation plant;
0B001.a.7Molecular "laser" isotope separation plant;
0B001.a.8Plasma separation plant;
0B001.a.9Electro magnetic separation plant;
0B001.b.1Gas centrifuges;
0B001.b.2Complete rotor assemblies;
0B001.b.3Rotor tube cylinders with a wall thickness of 12 mm or less, a diameter of between 75 mm and 650 mm, made from ‘high strength-to-density ratio materials’;
0B001.b.4Rings or bellows with a wall thickness of 3 mm or less and a diameter of between 75 mm and 650 mm and designed to give local support to a rotor tube or to join a number together, made from ‘high strength-to-density ratio materials’;
0B001.b.5Baffles of between 75 mm and 650 mm diameter for mounting inside a rotor tube, made from ‘high strength-to-density ratio materials’;
0B001.b.6Top or bottom caps of between 75 mm and 650 mm diameter to fit the ends of a rotor tube, made from ‘high strength-to-density ratio materials’;
0B001.b.7Magnetic suspension bearings as follows:
0B001.b.7.aBearing assemblies consisting of an annular magnet suspended within a housing made of or protected by "materials resistant to corrosion by UF6" containing a damping medium and having the magnet coupling with a pole piece or second magnet fitted to the top cap of the rotor;
0B001.b.7.bActive magnetic bearings specially designed or prepared for use with gas centrifuges;
0B001.b.8Specially prepared bearings comprising a pivot-cup assembly mounted on a damper;
0B001.b.9Molecular pumps comprised of cylinders having internally machined or extruded helical grooves and internally machined bores;
0B001.b.10Ring-shaped motor stators for multiphase AC hysteresis (or reluctance) motors for synchronous operation within a vacuum at a frequency of 600 Hz or more and a power of 40 VA or more;
0B001.b.11Centrifuge housing/recipients to contain the rotor tube assembly of a gas centrifuge, consisting of a rigid cylinder of wall thickness up to 30 mm with precision machined ends that are parallel to each other and perpendicular to the cylinder’s longitudinal axis to within 0,05° or less;
0B001.b.12Scoops consisting of specially designed or prepared tubes for the extraction of UF6 gas from within the rotor tube by a Pitot tube action and capable of being fixed to the central gas extraction system;
0B001.b.13Frequency changers (converters or inverters) specially designed or prepared to supply motor stators for gas centrifuge enrichment, having all of the following characteristics, and specially designed components therefor: a. A multiphase frequency output of 600 Hz or greater; and b. High stability (with frequency control better than 0,2 %);
0B001.b.14Shut-off and control valves as follows:
0B001.b.14.aShut-off valves specially designed or prepared to act on the feed, product or tails UF6 gaseous streams of an individual gas centrifuge;
0B001.b.14.bBellows-sealed valves, shut-off or control, made of or protected by "materials resistant to corrosion by UF6", with an inside diameter of 10 mm to 160 mm, specially designed or prepared for use in main or auxiliary systems of gas centrifuge enrichment plants;
0B001.c.1Gaseous diffusion barriers made of porous metallic, polymer or ceramic "materials resistant to corrosion by UF6" with a pore size of 10 to 100 nm, a thickness of 5 mm or less, and, for tubular forms, a diameter of 25 mm or less;
0B001.c.2Gaseous diffuser housings made of or protected by "materials resistant to corrosion by UF6";
0B001.c.3Compressors or gas blowers with a suction volume capacity of 1 m^3/min or more of UF6, with a discharge pressure up to 500 kPa, and having a pressure ratio of 10:1 or less, and made of or protected by "materials resistant to corrosion by UF6";
0B001.c.4Rotary shaft seals for compressors or blowers specified in 0B001.c.3. and designed for a buffer gas in-leakage rate of less than 1 000 cm^3/min.;
0B001.c.5Heat exchangers made of or protected by "materials resistant to corrosion by UF6", and designed for a leakage pressure rate of less than 10 Pa per hour under a pressure differential of 100 kPa;
0B001.c.6Bellows-sealed valves, manual or automated, shut-off or control, made of or protected by "materials resistant to corrosion by UF6";
0B001.d.1Separation nozzles consisting of slit-shaped, curved channels having a radius of curvature less than 1 mm, resistant to corrosion by UF6, and having a knife-edge contained within the nozzle which separates the gas flowing through the nozzle into two streams;
0B001.d.2Cylindrical or conical tubes, (vortex tubes), made of or protected by "materials resistant to corrosion by UF6" and with one or more tangential inlets;
0B001.d.3Compressors or gas blowers made of or protected by "materials resistant to corrosion by UF6", and rotary shaft seals therefor;
0B001.d.4Heat exchangers made of or protected by "materials resistant to corrosion by UF6";
0B001.d.5Separation element housings, made of or protected by "materials resistant to corrosion by UF6" to contain vortex tubes or separation nozzles;
0B001.d.6Bellows-sealed valves, manual or automated, shut-off or control, made of or protected by "materials resistant to corrosion by UF6", with a diameter of 40 mm or more;
0B001.d.7Process systems for separating UF6 from carrier gas (hydrogen or helium) to 1 ppm UF6 content or less, including:
0B001.d.7.aCryogenic heat exchangers and cryoseparators capable of temperatures of 153 K (– 120°C) or less;
0B001.d.7.bCryogenic refrigeration units capable of temperatures of 153 K (– 120 °C) or less;
0B001.d.7.cSeparation nozzle or vortex tube units for the separation of UF6 from carrier gas;
0B001.d.7.dUF6 cold traps capable of freezing out UF6;
0B001.e.1Fast-exchange liquid-liquid pulse columns with stage residence time of 30 s or less and resistant to concentrated hydrochloric acid (e.g. made of or protected by suitable plastic materials such as fluorinated hydrocarbon polymers or glass);
0B001.e.2Fast-exchange liquid-liquid centrifugal contactors with stage residence time of 30 s or less and resistant to concentrated hydrochloric acid (e.g. made of or protected by suitable plastic materials such as fluorinated hydrocarbon polymers or glass);
0B001.e.3Electrochemical reduction cells resistant to concentrated hydrochloric acid solutions, for reduction of uranium from one valence state to another;
0B001.e.4Electrochemical reduction cells feed equipment to take U^+4 from the organic stream and, for those parts in contact with the process stream, made of or protected by suitable materials (e.g. glass, fluorocarbon polymers, polyphenyl sulphate, polyether sulfone and resin-impregnated graphite);
0B001.e.5Feed preparation systems for producing high purity uranium chloride solution consisting of dissolution, solvent extraction and/or ion exchange equipment for purification and electrolytic cells for reducing the uranium U^+6 or U^+4 to U^+3;
0B001.e.6Uranium oxidation systems for oxidation of U^+3 to U^+4;
0B001.f.1Fast reacting ion-exchange resins, pellicular or porous macro-reticulated resins in which the active chemical exchange groups are limited to a coating on the surface of an inactive porous support structure, and other composite structures in any suitable form, including particles or fibres, with diameters of 0,2 mm or less, resistant to concentrated hydrochloric acid and designed to have an exchange rate half-time of less than 10 s and capable of operating at temperatures in the range of 373 K (100 °C) to 473 K (200 °C);
0B001.f.2Ion exchange columns (cylindrical) with a diameter greater than 1 000 mm, made of or protected by materials resistant to concentrated hydrochloric acid (e.g. titanium or fluorocarbon plastics) and capable of operating at temperatures in the range of 373 K (100 °C) to 473 K (200 °C) and pressures above 0,7 MPa;
0B001.f.3Ion exchange reflux systems (chemical or electrochemical oxidation or reduction systems) for regeneration of the chemical reducing or oxidizing agents used in ion exchange enrichment cascades;
0B001.g.1Uranium metal vaporization systems designed to achieve a delivered power of 1 kW or more on the target for use in laser enrichment;
0B001.g.2Liquid or vapour uranium metal handling systems specially designed or prepared for handling molten uranium, molten uranium alloys or uranium metal vapour for use in laser enrichment, and specially designed components therefor;
0B001.g.3Product and tails collector assemblies for collecting uranium metal in liquid or solid form, made of or protected by materials resistant to the heat and corrosion of uranium metal vapour or liquid, such as yttria-coated graphite or tantalum;
0B001.g.4Separator module housings (cylindrical or rectangular vessels) for containing the uranium metal vapour source, the electron beam gun and the product and tails collectors;
0B001.g.5"Lasers" or "laser" systems specially designed or prepared for the separation of uranium isotopes with a spectrum frequency stabilisation for operation over extended periods of time;
0B001.h.1Supersonic expansion nozzles for cooling mixtures of UF6 and carrier gas to 150 K (– 123 °C) or less and made from "materials resistant to corrosion by UF6";
0B001.h.2Product or tails collector components or devices specially designed or prepared for collecting uranium material or uranium tails material following illumination with laser light, made of "materials resistant to corrosion by UF6";
0B001.h.3Compressors made of or protected by "materials resistant to corrosion by UF6", and rotary shaft seals therefor;
0B001.h.4Equipment for fluorinating UF5 (solid) to UF6 (gas);
0B001.h.5Process systems for separating UF6 from carrier gas (e.g. nitrogen, argon or other gas) including:
0B001.h.5.aCryogenic heat exchangers and cryoseparators capable of temperatures of 153 K (– 120 °C) or less;
0B001.h.5.bCryogenic refrigeration units capable of temperatures of 153 K (– 120 °C) or less;
0B001.h.5.cUF6 cold traps capable of freezing out UF6;
0B001.h.6"Lasers" or "laser" systems specially designed or prepared for the separation of uranium isotopes with a spectrum frequency stabilisation for operation over extended periods of time;
0B001.i.1Microwave power sources and antennae for producing or accelerating ions, with an output frequency greater than 30 GHz and mean power output greater than 50 kW;
0B001.i.2Radio frequency ion excitation coils for frequencies of more than 100 kHz and capable of handling more than 40 kW mean power;
0B001.i.3Uranium plasma generation systems;
0B001.i.4Not used;
0B001.i.5Product and tails collector assemblies for uranium metal in solid form, made of or protected by materials resistant to the heat and corrosion of uranium vapour such as yttria-coated graphite or tantalum;
0B001.i.6Separator module housings (cylindrical) for containing the uranium plasma source, radio-frequency drive coil and the product and tails collectors and made of a suitable non-magnetic material (e.g. stainless steel);
0B001.jEquipment and components, specially designed or prepared for electromagnetic separation process, as follows:
0B001.j.1Ion sources, single or multiple, consisting of a vapour source, ioniser, and beam accelerator made of suitable non-magnetic materials (e.g. graphite, stainless steel, or copper) and capable of providing a total ion beam current of 50 mA or greater;
0B001.j.2Ion collector plates for collection of enriched or depleted uranium ion beams, consisting of two or more slits and pockets and made of suitable non-magnetic materials (e.g. graphite or stainless steel);
0B001.j.3Vacuum housings for uranium electromagnetic separators made of non-magnetic materials (e.g. stainless steel) and designed to operate at pressures of 0,1 Pa or lower;
0B001.j.4Magnet pole pieces with a diameter greater than 2 m;
0B001.j.5High voltage power supplies for ion sources, having all of the following characteristics: a. Capable of continuous operation; b. Output voltage of 20 000 V or greater; c. Output current of 1 A or greater; and d. Voltage regulation of better than 0,01 % over a period of 8 hours;
0B001.j.6Magnet power supplies (high power, direct current) having all of the following characteristics: a. Capable of continuous operation with a current output of 500 A or greater at a voltage of 100 V or greater; and b. Current or voltage regulation better than 0,01 % over a period of 8 hours.
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