IP Library Granted Patent US 12,444,512
Granted Patent B2
US 12,444,512 · App. 17/607,547 · Granted Oct 14, 2025

Modular core molten salt nuclear reactor

Inventors: Sander De Groot (Amsterdam, NL); Lucas Marius Pool (Amsterdam, NL)
Assignee: THORIZON HOLDING B.V.
G21C1/22G21C3/24G21C7/30G21C3/54G21C19/205
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Quick Facts
Patent No.
US 12,444,512
App. No.
17/607,547
Granted
Oct 14, 2025
Kind
B2
Abstract

A nuclear reactor circuit contains nuclear fuel-containing molten salt in a channel which is substantially vertically arranged and provides an up-down passage. A modular reactor has removable, individual molten salt nuclear circuits. The channel of one circuit contains a non-critical amount of nuclear material, but the channels together create the critical zone of the reactor core. A method of operating a modular nuclear reactor circuit and a nuclear reactor include the use of the circuits.

Claims (52)

1. A nuclear reactor comprising

a core area and a shell area;

a plurality of separate and individual nuclear reactor circuits, each circuit comprising:

a containment;

a loop comprising a liquid comprising a nuclear fuel comprising molten salt,

wherein the loop comprises a channel that is arranged in a substantial vertical arrangement within the containment, wherein the channel provides an up-and-down passage for the liquid in the loop,

wherein each of the channels of the plurality of circuits is arranged in the core area,

wherein each separate and individual nuclear reactor circuit is independently replaceable from the nuclear reactor while maintaining a capability to contain the liquid, and

wherein the containment has a sidewall with an inner surface spaced from the loop.

2. The nuclear reactor according to claim 1 , wherein an individual circuit contains a sub-critical amount of nuclear fuel in a critical zone of the core area of the reactor.

3. The nuclear reactor according to claim 1 , wherein the plurality of separate and individual nuclear reactor circuits are configured to provide a critical amount of fuel in the reactor such that a nuclear reaction can be maintained.

4. The nuclear reactor according to claim 1 , wherein the channel in the circuit is a single pipe, a pipe bundle, or a pipe-in-pipe.

5. The nuclear reactor according to claim 1 , wherein a top edge or a bottom edge of the containment is releasably connected to the core area.

6. The nuclear reactor according to claim 2 , wherein the arrangement of the channels form the critical zone of the nuclear reactor.

7. The nuclear reactor according to claim 2 , wherein each channel contains a sub-critical amount of nuclear fuel in the critical zone of the reactor.

8. The nuclear reactor according to claim 2 , wherein the critical zone of the reactor further comprises a moderator.

9. The nuclear reactor according to claim 1 , wherein the channels are arranged in a moderator.

10. A method of operating a nuclear reactor, the method comprising the steps of

providing the nuclear reactor as defined in claim 1 comprising multiple circuits; and

bringing the nuclear fuel in the channels of the circuits in a critical configuration.

11. The method according to claim 10 , comprising the steps of

circulating the nuclear fuel in the circuits; and

subjecting the nuclear fuel of each circuit to the neutron flux of other circuits in a critical zone of the nuclear reactor.

12. The method according to claim 10 , further comprising the steps of:

operating the reactor in a critical configuration, wherein at least part of the circuits provide fission material to the critical zone, to sustain a fission reaction;

operating part of the circuits in a breeding-burning mode in the critical zone, wherein excess neutrons from the fission reaction are allowed to generate fissionable material from fertile materials and fission at least part of the fissionable materials generated;

establishing an equilibrium between breeding and burning in one or more first circuits of the multiple circuits;

replacing the liquid in one or more of second circuits of the multiple circuits thereby changing the second circuits from a burning to a breeding mode; and

thereby providing a reactor system that operates in a closed breed-burn nuclear fuel cycle.

13. The method according to claim 11 , further comprising

placing the nuclear reactor circuits in a nuclear reactor configuration,

replacing one of the nuclear reactor circuits from the shell or core area of the nuclear reactor.

14. The method according to claim 13 , wherein the replacement is performed by a substantially vertical translocation of the respective circuit.

15. A nuclear reactor, comprising:

a core area and a shell area;

a plurality of separate and individual nuclear reactor circuits, each circuit containing molten salts and comprising:

a containment;

a loop, wherein the loop contains a liquid comprising a nuclear fuel comprising the molten salts,

wherein the loop contains a channel that is arranged in a substantial vertical arrangement within the containment, wherein the channel provides an up-and-down passage for the liquid in the loop,

wherein each of the channels of the plurality of circuits is arranged in the core area, and

wherein each separate and individual nuclear reactor circuit is independently replaceable from the nuclear reactor,

wherein each separate and individual nuclear reactor circuit is movable relative to the core so as to be independently removable from the nuclear reactor, and

wherein the containment has a sidewall with an inner surface spaced from the loop.

16. A nuclear reactor, comprising:

a core area and a shell area;

a plurality of separate and individual nuclear reactor circuits, each circuit containing molten salts and comprising:

a containment;

a loop, wherein the loop contains a liquid comprising a nuclear fuel comprising the molten salts,

wherein the loop comprises a channel that is arranged in a substantial vertical arrangement within the containment, wherein the channel provides an up-and-down passage for the liquid in the loop,

wherein each of the channels of the plurality of circuits is arranged in the core area,

wherein each separate and individual nuclear reactor circuit is independently replaceable from the nuclear reactor in a single piece, and

wherein the containment has a sidewall with an inner surface spaced from the loop.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2021
From: DE GROOT, SANDER; POOL, LUCAS MARIUS
To: THORIZON HOLDING B.V.
Reel/Frame 058155/0591 →
Priority Claims (1)
EP 19172597 · May 3, 2019 · regional
Continuity (1)
Related Publication 20220223302A1 · Jul 14, 2022
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