Alectrolyze Alkaline
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Alectrolyze Alkaline

Upgraded fastening system reducing the leakage of electrolyzer under alternating working conditions
Large diameter double pole plate technology, effectively reducing the length of the electrolyzer
Bipolar plate coating thickness of more than 50 μm at the lowest point
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Product Introduction

1500 Nm3/h Alkaline Water Electrolyzer

Advantage
 
 

 

1. Expanded Power Fluctuation Range
- The AWE hydrogen production system boasts a wide power fluctuation range spanning from 30% to 120%. This versatility is specifically tailored to accommodate the intermittent nature of wind and solar-based energy sources, ensuring optimal performance and efficiency in hydrogen production processes.

 

2. Enhanced Reliability Features
- Ensuring unparalleled reliability, this system incorporates double security measures with both internal and external sealing mechanisms. Moreover, an upgraded fastening system effectively minimizes electrolyzer leakage, particularly under alternating working conditions. The integration of large diameter double pole plate technology not only reduces the length of the electrolyzer but also enhances structural integrity. Additionally, the bipolar plate coating, with a thickness exceeding 50μm at the lowest point, exhibits exceptional corrosion resistance, ensuring prolonged service life and uninterrupted operation.

 

3. Optimized DC Power Consumption
- Achieving remarkable efficiency, the system features a new flow-field design meticulously simulated and tested to ensure uniform flow distribution within fuel cells. Additionally, next-generation electrodes with industry-leading overpotentials and tolerance in electrode reactions contribute to reducing power consumption. The comprehensive power consumption is capped at ≤4.8 kWh/Nm³, reflecting a commitment to energy efficiency and sustainability.

 

4. Improved Cold Start Capability
- Innovatively designed, the system incorporates a self-developed lye heating circulation system, which reduces cold start times by an impressive 50%. This transformative enhancement streamlines operational workflows, ensuring rapid activation and minimizing downtime, thereby optimizing productivity and reliability.

 

Technical specifications and performance
 

 

Name

Parameter

Hydrogen production capacity(Nm3/h)

1500

DC power consumption(kWh/Nm3)

4.4~4.6

Hydrogen purity(Before purification)

≥99.8%

Hydrogen purity(After purification)

≥99.999%

Operating pressure(MPa)

1.8

Operating temperature(℃)

90±5

Power consumption range

30~120%

 

Scope of Application
 

 

1. Meeting the Needs of Transportation Terminals
- The rising demand for hydrogen equipment at transportation terminals necessitates versatile solutions. This includes electrolyzers for on-site hydrogen production and hydrogen refueling stations, creating integrated facilities for both production and distribution. Furthermore, the adoption of on-board hydrogen storage systems and external hydrogen refueling stations caters to the requirements of medium-duty and heavy-duty hydrogen-fueled vehicles. Additionally, tube-bundle trucks serve to deliver hydrogen to areas lacking direct hydrogen resources, ensuring accessibility and widespread adoption of hydrogen-powered transportation solutions.

 

2. Addressing Alternative Equipment Demands in the Green Hydrogen Industry
- The burgeoning green hydrogen industry calls for diverse equipment solutions tailored to specific applications. This encompasses electrolyzers dedicated to green hydrogen production for ammonia synthesis, methanol synthesis, and various processes in the refining and coal chemical sectors. Additionally, electrolyzers serving as reducing agents in the metallurgical industry play a crucial role in advancing sustainable practices and reducing environmental impact across industrial operations.

 

3. Fulfilling the Need for Large-Scale Hydrogen Energy Storage
- The increasing demand for large-scale hydrogen energy storage prompts the deployment of centralized electrolyzers capable of producing hydrogen from fluctuating power generation sources. Integrated hydrogen production and refueling stations, leveraging distributed renewable energy or harnessing the valley load of the grid, offer scalable solutions for efficient energy storage and distribution. These initiatives contribute to grid stability and facilitate the integration of renewable energy sources into existing infrastructure.

 

4. Meeting the Requirements of High-Purity Hydrogen in Laboratories and Medical Services
- The demand for high-purity hydrogen in laboratories and medical services necessitates specialized equipment solutions. Small-scale PEM electrolyzers cater to the specific needs of hydrogen production in laboratory settings, offering compact and efficient hydrogen generation capabilities. Moreover, the provision of high-purity hydrogen for PEM electrolysis laboratories ensures precise and reliable outcomes in scientific research and medical applications, fostering advancements in clean energy technology and healthcare practices.

 

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