Batch systems and methods for hydrogen gas extraction from a liquid hydrogen carrier
A system for extracting hydrogen gas from a liquid hydrogen carrier may include a hydrogen gas reactor, a catalyst for facilitating extraction of the hydrogen gas from the liquid hydrogen carrier, and a reservoir for containing the liquid hydrogen carrier and a spend liquid hydrogen carrier. The system may be configured to regulate a flow of liquid hydrogen carrier in and out of the hydrogen gas reactor, to move a catalyst relative to a volume of the liquid hydrogen carrier, and to provide a continuous flow of the hydrogen gas, in response to a demand for the hydrogen gas.
1. A system for extracting hydrogen gas using a liquid hydrogen carrier, the system comprising:
a hydrogen gas reactor comprising an enclosure, the enclosure being configured to hold the liquid hydrogen carrier;
a liquid hydrogen carrier conduit for delivering the liquid hydrogen carrier into and out of the hydrogen gas reactor;
a hydrogen gas conduit for flowing the hydrogen gas out of the hydrogen gas reactor; and
a catalyst configured to selectively move linearly into and out of the liquid hydrogen carrier, when the liquid hydrogen carrier is present in the hydrogen gas reactor, to generate the hydrogen gas in response to contact between the catalyst and the liquid hydrogen carrier.
2. The system of claim 1 , further comprising:
a mechanical linkage attached to the catalyst; and
a motor configured to control a motion of the catalyst via the mechanical linkage.
3. The system of claim 1 , wherein the enclosure of the hydrogen gas reactor comprises a contractible bladder.
4. The system of claim 1 , further comprising:
a pressure sensor configured to generate an output indicative of a pressure associated with the hydrogen gas reactor; and
a control system configured to cause movement of the catalyst by an amount determined based on a difference between a target pressure value and the pressure associated with the hydrogen gas reactor, as indicated by the output of the pressure sensor.
5. The system of claim 1 , further comprising:
a temperature sensor configured to generate an output indicative of a temperature associated with the hydrogen gas reactor; and
a control system configured to cause cooling of the hydrogen gas reactor in response to a sensed difference between a target temperature value and the temperature associated with the hydrogen gas reactor, as indicated by the output of the temperature sensor.
6. A system for extracting hydrogen gas using a liquid hydrogen carrier, the system comprising:
a hydrogen gas reactor comprising an enclosure, the enclosure being configured to hold the liquid hydrogen carrier, wherein the enclosure of the hydrogen gas reactor comprises a contractible bladder; and
a catalyst configured to selectively move into and out of the liquid hydrogen carrier, when the liquid hydrogen carrier is present in the hydrogen gas reactor, to generate the hydrogen gas in response to contact between the catalyst and the liquid hydrogen carrier.
7. A system for extracting hydrogen gas using a liquid hydrogen carrier, the system comprising:
a hydrogen gas reactor comprising an enclosure, the enclosure being configured to hold the liquid hydrogen carrier;
a catalyst configured to selectively move into and out of the liquid hydrogen carrier, when the liquid hydrogen carrier is present in the hydrogen gas reactor, to generate the hydrogen gas in response to contact between the catalyst and the liquid hydrogen carrier;
a pressure sensor configured to generate an output indicative of a pressure associated with the hydrogen gas reactor; and
a control system configured to cause movement of the catalyst by an amount determined based on a difference between a target pressure value and the pressure associated with the hydrogen gas reactor, as indicated by the output of the pressure sensor.
8. A system for extracting hydrogen gas using a liquid hydrogen carrier, the system comprising:
a hydrogen gas reactor comprising an enclosure, the enclosure being configured to hold the liquid hydrogen carrier; and
a catalyst configured to selectively move into and out of the liquid hydrogen carrier, when the liquid hydrogen carrier is present in the hydrogen gas reactor, to generate the hydrogen gas in response to contact between the catalyst and the liquid hydrogen carrier;
a temperature sensor configured to generate an output indicative of a temperature associated with the hydrogen gas reactor; and
a control system configured to cause cooling of the hydrogen gas reactor in response to a sensed difference between a target temperature value and the temperature associated with the hydrogen gas reactor, as indicated by the output of the temperature sensor.