Rounnd Design Alkaline Electrolyzer
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Rounnd Design Alkaline Electrolyzer

This Square AWE equipment has a huge hydrogen production capacity of up to 3000 Nm³/h, which can provide powerful support for application scenarios with high demand for hydrogen energy and reliable guarantee for large-scale applications in the hydrogen energy industry.
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Product Introduction

500 Nm3/h Alkaline Water Electrolyzer

Advantage
 

 

1. High stability

  • Double protection of internal and external sealing
  • Fastening system upgrade to reduce electrolytic cell leakage under alternating working conditions
  • Large-diameter bipolar plate technology effectively reduces the length of the electrolytic cell
  • The lowest thickness of bipolar plate coating is ≥50μm

 

2. Low power consumption

  • New flow field design, simulation + testing ensure uniformity of flow field in the chamber
  • A new generation of electrodes, leading the industry in overpotential and tolerance
  • Comprehensive power consumption ≤4.9kWh/Nm³

 

3. Short cold start time

  • Independently developed alkali heating circulation system, reducing cold start time by 50%

 

Technical specifications and performance
 

 

1. High efficiency and energy saving, DC power consumption ≤4.3kWh/Nm³

As a representative of modern energy technology, this AWE hydrogen production equipment is distinctively efficient in terms of energy utilization, with the DC power consumption ≤4.3 kWh/Nm³. The equipment is more efficient than traditional methods, effectively reducing production costs, and meeting the core concept of sustainable development.

 

2. Exquisite technology with the purity of hydrogen before purification of more than 99.8%

This AWE hydrogen production equipment has achieved the purity of produced hydrogen of more than 99.999%, which can meet the most rigorous requirements for hydrogen purity in diverse high-tech industries, such as semiconductor manufacturing and other fields, to provide a reliable energy base for the industrial upgrading in the future.

 

3. Safe and reliable with the working pressure of 1.8 MPa

The working pressure of this AWE hydrogen production equipment is 1.8 MPa, which can not only meet the needs of efficient production, but also reduce operational risks to some extent to ensure the safety of the production process.

 

4. Intelligent control with the working temperature of 90±5℃

To better adapt to various working environments, this equipment is designed with an intelligent temperature control system, which can maintain its temperature within the range of 90±5℃ during operation, so that both the efficiency and the life of the equipment are improved for a more stable and reliable experience of users.

 

5. Flexible and stable with power fluctuation range of 30-120%

For different hydrogen production scenarios, the power fluctuation range of this AWE hydrogen production equipment is 30-120%, allowing it to adapt to different scenarios where it can maintain efficient and stable production under different working conditions, so that the flexibility of energy supply is guaranteed.

 

Name Parameter
Hydrogen production (Nm3/h)

500

Standard working range (%)

30~120

DC power consumption (kWh/Nm3)

≤4.3

Hydrogen purity (before purification)

≥99.8%

Hydrogen purity (after purification)

≥99.999%

Working pressure (MPa)

1.8

Working temperature (℃)

90±5

Ambient temperature (℃)

5~45

 

Scope of Application
 
1

Energy industry: Used in fields such as power generation, energy storage and fuel cells.

2

Transportation:Used in the transportation field to promote the development of hydrogen fuel cell vehicles.

3

Industrial applications:Used in industrial fields such as chemical production, metal processing, and hydrogen synthesis of hydrides.

What are the types of hydrogen power generation?

1.Phosphate fuel cell
Phosphate fuel cells are the earliest type of fuel cells, and the process is basically mature. The United States and Japan have built commercial power stations of 4,500 kilowatts and 11,000 kilowatts respectively. The operating temperature of this fuel cell is 200°C, the maximum current density can reach 150 mA/cm2, and the power generation efficiency is about 45%. The fuel is hydrogen, methanol, etc., the oxidant is air, but the catalyst is platinum series. Currently, it generates electricity The cost is still high, about 40 to 50 cents per kilowatt hour.
 

2.molten carbonate fuel cell
Molten carbonate fuel cells are generally called second-generation fuel cells. Their operating temperature is about 650°C and their power generation efficiency is about 55%. Mitsubishi Corporation of Japan has built a 10-kilowatt power generation device. The electrolyte of this type of fuel cell is liquid. Due to its high operating temperature, it can withstand the presence of carbon monoxide. The fuel can be hydrogen, carbon monoxide, natural gas, etc. The oxidizing agent is air. The cost of generating electricity can be less than 40 cents per kilowatt hour.
 

3.solid oxide fuel cell
Solid oxide fuel cells are considered to be the third generation of fuel cells. Their operating temperature is about 1000°C and the power generation efficiency can exceed 60%. Many countries are currently studying it. It is suitable for building large power stations. Westinghouse Company of the United States is developing it. , the cost of generating electricity is expected to be less than 20 cents per kilowatt hour.

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