Most Reliable, Efficient and Scalable technology for Green Hydrogen production: Alkaline water electrolysis technology has been in use for more than 100 years; it is a mature, robust and well-proven technology for green hydrogen generation. This technology offers a significant cost advantage over other methods because of its scalability (large sized stacks), usage of cost-effective raw materials, simple supply chain, efficiencies, and durability. Thus, making it a compelling choice for industries looking for a reliable and efficient hydrogen generation solution.
Parameter | WCES |
---|---|
Single stack size (Nm3/hour) | Up to 2,000 |
Pressure (bar-g) | 16 |
Dynamic operations (of rated capacity) | 30–110% |
Typical stack-life (hours) | 80,000 |
Stack efficiency (kWh/Nm3 of H2) | 4.3 |
Water consumption (per Nm3 of H2) | <1 Litre |
Stack degradation rate | ~1% per year |
Hydrogen Purity after purification unit | 99.999% |
Lower power consumption and flexible operations (30% to 110% loading), gas production capacity of a single electrolyzer stack up to 2,000 Nm³/h (10 MW)
Containerized and skid-mounted (5 - 4,000 Nm³/hour) solutions, "1-to-N" multi-module design, adaptable to different application requirements
HAZOP, SIL and LOPA analysis, interlock & controls, reliable & redundant designs, alarm and monitoring system to ensure human & machine safety
With rugged material of construction and conservatively designed equipment, our products are designed for low maintenance and proven worldwide
A high level of digitization allows sites to be less-manned, including one-key start-stop, and remote monitoring using cloud end-to-end systems
We work with our customers to ensure products meet their compliance needs, including ISO, ASME, IEC, and more.
Chemicals
Steel
Ammonia
Fertilizers
Glass
Cement
Mobility
The production of green ammonia involves a sustainable process that uses green hydrogen as a key input, produced through the electrolysis of water powered by renewable energy sources such as solar and wind. In this process, renewable electricity splits water into hydrogen and oxygen through electrolysis. The green hydrogen is then combined with nitrogen, typically extracted from the air, in the Haber-Bosch process to synthesize ammonia (NH₃). Unlike conventional ammonia production, which relies on natural gas as a feedstock and emits significant CO₂, green ammonia eliminates carbon emissions by utilizing clean hydrogen and nitrogen, thus significantly reducing its environmental impact. This green ammonia can be used as a sustainable fertilizer, an energy carrier, or a potential fuel, contributing to the decarbonization of agriculture and other hard-to-abate sectors. The overall process aligns with global goals for clean energy and carbon neutrality.
WCES can support through the entire life-cycle of green hydrogen generation, as per the customer requirement.
Waaree CES provides quality support to our customers through the entire journey of green hydrogen production, from project conceptualization, technology selection, procurement, erection & commissioning, operations, ongoing maintenance and spare parts supplies. Our engineering and manufacturing teams have decades of experience and specialization.
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