IP Library Granted Patent US 12674909
Granted Patent B2
US 12674909 · App. 18/316,526 · Granted Jul 7, 2026

Geological hydrogen productivity evaluation system

Inventors: Min June Yang (Busan, KR); Seong Woo Jeong (Busan, KR); Jin Young Park (Busan, KR)
Assignee: PUKYONG NATIONAL UNIVERSITY INDUSTRY-UNIVERSITY COOPERATION FOUNDATION
G01V9/007E21B43/168E21B49/087G01N33/0021G01K1/045
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Quick Facts
Patent No.
US 12674909
App. No.
18/316,526
Granted
Jul 7, 2026
Kind
B2
Abstract

Proposed is a geological hydrogen productivity evaluation system. The system may include a gas injection device configured to inject a reactive gas, a water vapor collecting device configured to collect water vapor generated in the gas injection device when the gas is injected. The system may also include a main reacting device in which a reaction between a solvent and a rock sample, which are loaded into the inside thereof, is performed using the gas supplied from the gas injection device. The system may further include a discharging device through which reactants generated by the reaction in the main reacting device are discharged, and a collecting device configured to collect gas from reactants produced by the reaction by being connected to the discharging device. The system may capture hydrogen from a reactant produced by the reaction of the rock sample in the main reacting device, in the collecting device.

Claims (18)

1 . A geological hydrogen productivity evaluation system, the system comprising:

a gas injection device configured to inject a reactive gas;

a water vapor collecting device configured to collect water vapor generated in the gas injection device in response to the gas being injected;

a main reacting device in which a reaction between a solvent and a rock sample, which are loaded into the inside thereof, is configured to be performed using the gas supplied from the gas injection device;

a discharging device through which reactants generated by the reaction in the main reacting device are configured to be discharged; and

a collecting device configured to collect gas from reactants produced by the reaction by being connected to the discharging device,

wherein the system is configured to capture hydrogen from the reactants produced by the reaction of a rock sample in the main reacting device, in the collecting device.

2 . The system of claim 1 , wherein the gas injection device is configured to use a gas booster for gas injection.

3 . The system of claim 1 , wherein the discharging device further comprises a pressure relief device configured to discharge pressure in excess of a set pressure.

4 . The system of claim 1 , wherein the main reacting device and the collecting device each further comprise a temperature-pressure control system to control corresponding internal temperature and pressure,

wherein the temperature-pressure control system further includes:

a thermocouple comprising a temperature detection sensor;

a temperature controller configured to control a temperature;

a pressure transducer configured to regulate a pressure;

a pressure indicator controller configured to control a pressure indicator displaying the pressure; and

a pressure-reducing valve configured to lower the pressure.

5 . The system of claim 1 , further comprising:

a data storage device configured to collect and store data generated from the reaction of the rock sample.