IP Library Granted Patent US 12669222
Granted Patent B2
US 12669222 · App. 18/295,298 · Granted Jun 30, 2026

Boil-off management system

Inventors: Guido Bartlok (Graz, AT); Daniel Kupelwieser (Graz, AT); Andreas Podlipnig (Markt Hartmannsdorf, AT); Florian Wimmer (Riegersburg, AT)
Assignee: MAGNA Energy Storage Systems GesmbH
F17C13/123B01D53/8671B60L50/72F17C7/02H01M8/04208H01M8/0662B01D2251/102B01D2251/11B01D2257/108B01D2258/0208B01D2259/4566B60L2270/12F17C2205/0323F17C2221/012F17C2223/0161F17C2250/043F17C2250/0439F17C2260/044F17C2265/03F17C2270/0184
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Quick Facts
Patent No.
US 12669222
App. No.
18/295,298
Granted
Jun 30, 2026
Kind
B2
Abstract

A boil-off management system for a cryotank includes a boil-off conduit which is fluidically connectable to a cryotank via a boil-off valve. The boil-off management system further includes an air feed conduit and a mixing chamber for mixing a first medium (e.g., hydrogen) flowing in through the boil-off conduit with a second medium (e.g., air and/or oxygen) flowing in through the air feed conduit. A catalytic converter is arranged downstream of the mixing chamber and an outlet downstream of the catalytic converter. At least one enrichment apparatus is provided and configured to temporarily increase the proportion of the first medium flowing in through the boil-off conduit in relation to the second medium flowing in through the air feed conduit at the catalytic converter.

Claims (37)

1 . A boil-off management system for a cryotank, comprising:

a boil-off conduit having a boil-off valve which is fluidically connectable to a cryotank, through which is received a first medium that includes hydrogen;

an air feed conduit, through which is received a second medium that includes air and/or oxygen;

a mixing chamber configured to mix the first medium with the second medium;

a catalytic converter arranged downstream of the mixing chamber;

an outlet arranged downstream of the catalytic converter; and

at least one enrichment comprising a control unit configured to detect an existence of an enrichment criterion, temporarily increase a proportion of the first medium in relation to the second medium flowing at the catalytic converter, and stop an increase in the proportion of the first medium in relation to the second medium flowing at the catalytic converter.

2 . The boil-off management system of claim 1 , wherein the enrichment apparatus is configured such that the proportion of the first medium in relation to the second medium at the catalytic converter is increased in response to a startup operation of the boil-off management system.

3 . The boil-off management system of claim 1 , wherein the enrichment apparatus is configured such that the proportion of the first medium in relation to the second medium at the catalytic converter is increased in response to an impairment to the catalytic converter.

4 . The boil-off management system of claim 1 , wherein the enrichment apparatus is configured such that the proportion of the first medium in relation to the second medium at the catalytic converter is increased in response to a detected low temperature of the catalytic converter.

5 . The boil-off management system of claim 1 , wherein the enrichment apparatus is configured such that the proportion of the first medium in relation to the second medium at the catalytic converter is increased in response to a detected high humidity condition of the catalytic converter.

6 . The boil-off management system of claim 1 , wherein the enrichment apparatus is configured such that the proportion of the first medium in relation to the second medium at the catalytic converter is increased in response to a detected deterioration of a chemical condition of the catalytic converter.

7 . The boil-off management system of claim 1 , wherein the enrichment apparatus is mechanically activated in response to a detected predetermined pressure or a detected predetermined temperature in such a way that the proportion of the first medium is increased in relation to the second medium at the catalytic converter.

8 . The boil-off management system of claim 1 , wherein the enrichment apparatus is mechanically deactivated in response to a detected predetermined pressure or a predetermined temperature in such a way that the proportion of the first medium is not increased in relation to the second medium flowing at the catalytic converter.

9 . The boil-off management system of claim 1 , wherein the enrichment apparatus comprises a closure at the air feed conduit that is configured, when in a wholly closed position or a partially closed position, to stop or reduce the flow of air in the air feed conduit.

10 . The boil-off management system of claim 9 , wherein the closure comprises a flap, a lid, or lamellas.

11 . The boil-off management system of claim 1 , wherein the enrichment apparatus comprises a closure at the outlet that is configured to, when in a wholly closed position or a partially closed position, prevent or reduce escape of the medium downstream of the catalytic converter in a manner such that the medium is at least be recirculated to the catalytic converter.

12 . The boil-off management system of claim 11 , wherein the closure comprises a flap, a lid, or lamellas.

13 . The boil-off management system of claim 1 , wherein the enrichment apparatus comprises a nozzle configured to feed the first medium at the catalytic converter or upstream of the catalytic converter.

14 . A cryotank apparatus, comprising:

a cryotank; and

a boil-off management system fluidically connected to the cryotank, the boil-off management system including:

a boil-off conduit having a boil-off valve which is fluidically connectable to a cryotank, through which is received a first medium that includes hydrogen;

an air feed conduit, through which is received a second medium that includes air and/or oxygen;

a mixing chamber configured to mix the first medium with the second medium;

a catalytic converter arranged downstream of the mixing chamber;

an outlet arranged downstream of the catalytic converter; and

at least one enrichment apparatus comprising a control unit configured to detect an existence of an enrichment criterion, temporarily increase a proportion of the first medium in relation to the second medium flowing at the catalytic converter, and stop an increase in the proportion of the first medium in relation to the second medium flowing at the catalytic converter.

15 . The cryotank apparatus according to claim 14 , wherein the enrichment apparatus comprises a nozzle configured to feed the first medium at the catalytic converter or upstream of the catalytic converter.

16 . A method of operating a boil-off management system of claim 1 , the method comprising:

increasing, in response to a detection of a startup operation of the boil-off management system and/or an impairment at the catalytic converter, the proportion of the first medium flowing in through the boil-off conduit in relation to the second medium flowing in through the air feed conduit at the catalytic converter.

17 . The method of claim 16 , wherein the impairment at the catalytic converter comprises a low temperature of the catalytic converter.

18 . The method of claim 16 , wherein the impairment at the catalytic converter comprises a high humidity condition of the catalytic converter.

19 . The method of claim 16 , wherein the impairment at the catalytic converter comprises a deterioration of a chemical condition of the catalytic converter.

20 . The method of claim 16 , further comprising, in response to a detection of a predetermined temperature at the catalytic converter:

wholly or partially opening a closure in the air feed conduit and/or a closure at the outlet, and/or

stopping a flow of the first medium through the boil-off conduit at the catalytic converter or upstream of the catalytic converter.