H2Tech - Electrolyzer Handbook 2022 - 46

2022 ELECTROLYZER HANDBOOK
PRODUCT CATEGORIES
COMPANY INDEX
AEM
AEM Multicore
DESCRIPTION: Enapter's AEM Multicore unifies the chemistry of alkaline water
electrolysis with the best features and functionalities of Proton Exchange Membrane
(PEM) technology, at a lower cost. AEM stacks or " cores " are known for producing
hydrogen with high pressure and purity. AEM Multicore uses many electrolyzer cores
for a more reliable and resilient system that always runs at optimal efficiency.
MW electrolyzer: For a bigger electrolyzer system, AEM cores are stacked,
taking the proven AEM stack module with its 0.5 Nm³/h hydrogen production
rate and integrating several hundred of them to reach a megawatt electrolyzer.
Individually stacked modules are mounted into racks, which can be enclosed in
containers or delivered on skids. A redundant balance of plant also fully ensures
that the failure of any single component does not result in the complete shutdown
of hydrogen production. Racks are installed on each side of the container, with
plenty of working space in between.
The Enapter AEM Multicore is fully assembled, ready to run and packaged
in a 40-ft container. Site works are limited to the connection of vent and purge
lines, water supply, hydrogen outlet piping and grid connections.
Energy Management System (EMS) Toolkit: AEM Multicores are hardware and
software hybrids that come with intelligent the EMS Toolkit for automated energy
generation, storage and transmission. Regulation of hydrogen production based on
energy load is managed automatically by the Enapter control system. The toolkit
also has everything needed to integrate the AEM Multicore into a unified energy
network with other devices.
ADVANTAGES/KEY FEATURES:
* High efficiency: Rapid reaction to intermittent renewable energy loads,
producing quality hydrogen, with high efficiency in any context.
* Low downtime: Individual core modules can be replaced without shutting
down the entire system, allowing for maximum uptime equivalent to
maximum hydrogen production.
* No single point of failure: Multiple stacks avoid single point of failure and
ensure component failure does not result in plant shutdown
* Modular architecture: Multiple AEM stacks are connected in parallel
and powered by standard off-the-shelf power supply units. They enable
each string to be individually regulated and switched on/off, ensuring
optimal operation at different load levels when integrated with renewables
like wind and solar.
* Low-cost material: AEM technology uses widely available and low-cost
materials, which results in significantly lower-cost hydrogen.
Continued 
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H2Tech - Electrolyzer Handbook 2022

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