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National Energy Group's Carbon Dioxide Hydrogenation to Green Methanol Project

The National Energy Group's carbon dioxide hydrogenation to green methanol project has developed a high-efficiency alkaline electrolysis water hydrogen production device, which has completed the optimization of the system's electric thermal mass balance and the integration of the complete set of electrolysis water equipment system. It has been successfully applied to the National Energy Group's carbon dioxide hydrogenation to green methanol project. This project relies on green electrolytic hydrogen production technology as its core, realizing innovative application of green energy, promoting the development of cutting-edge environmental protection technology combining hydrogen energy technology with carbon dioxide capture, promoting the market-oriented application of green methanol, and forming a good demonstration effect.

China National Petroleum Corporation's first hydrogen storage zero carbon pumping unit energy supply system in China

A pioneering project for green hydrogen energy storage in oil extraction business, using photovoltaics as the energy source, combined with hydrogen production system, hydrogen storage system, and fuel cell system, to achieve zero carbon throughout the entire oil extraction process.

The equipment has achieved full utilization of renewable energy and all-weather operation of oil wells, forming an integrated comprehensive energy solution for the integration and development of new energy and traditional oil and gas industries. It has been operating stably in Changqing Oilfield for 2 years.

Project type:
Pry Mounted, Distributed Photovoltaic
Project location:
Xian, Shaanxi
Strategic partners:
PetroChina
Hydrogen production power:

50KW

POWER GENERTION:

20KW

XD-10/1.6-A-000-00

MODEL SPECIFICATIONS:

Sinopec's first modular, efficient and energy-saving alkaline electrolysis hydrogen production unit in China

Addressing the pain points of long production and maintenance cycles, high energy consumption, poor consistency, and inability to rapidly expand capacity in traditional alkaline electrolysis cells.

It has seven advantages, including good product consistency, low cost (20% lower than traditional tanks), easy assembly (100% automation), convenient maintenance (≤ 24h), fast delivery (≤ 72h), rapid capacity expansion (modules can be expanded from MW to GW), and wide power fluctuation adaptability (10% -120%).

We are conducting long-term stability testing of the electrolytic cell mold at Yanshan Petrochemical.

PROJECT TYPE:
Electrolytic Water Hydrogen Production Project
PROJECT LOCATION:

Beijing

STRATEGIC PARTNERS:
SINOPEC
HYDROGEN PRODUCTION POWER:

5MW

Module-1000

MODEL SPECIFICATIONS:
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