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Jan. 31, 2026
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For industrial PEM hydrogen generation, long-term stability depends heavily on the auxiliary systems—utilities, cooling, controls, and safety—not just the electrolyzer itself. GT-7.5 is positioned for projects that need a complete engineering pathway, including public-works auxiliary system design and integration.
A hydrogen production installation often requires coordinated utilities. GT-7.5 supports the design and landing of auxiliary systems, including (not limited to):
Energy management system (for monitoring and optimization strategy)
Circulating cooling water system
Chilled water system (when required by site conditions)
Instrument air system (for pneumatic components where applicable)
Auxiliary system power distribution and integration
Typical equipment may include: circulating water pumps, water–gas separators, gas dryers, valve and pipeline components, constant-current power supply modules, control panels, and safety systems.
In real-world operation, gas handling is critical. GT-7.5 can incorporate:
Gas–liquid separation to reduce moisture carryover
Gas drying to meet downstream requirements
Hydrogen purification modules when higher purity or stricter specifications are needed
These elements help protect downstream devices, improve system reliability, and support stable hydrogen delivery.
Industrial users require predictable behavior under both normal and abnormal conditions. GT-7.5’s system-level design approach includes PLC control facilities and can integrate protection strategies through:
alarms and interlocks
controlled venting/relief concepts (per project design)
structured maintenance accessibility via engineered piping/valving layout
Whether you are building a pilot line, a test platform, or an industrial hydrogen supply skid, the fastest path to success is defining boundaries early: water quality, utilities, interfaces, installation constraints, and operating profile.
Contact us to discuss your site conditions and required scope (stack only vs. full system including utilities). We can provide a recommended configuration based on your project needs.
Note: final performance and configuration depend on operating conditions, water quality, and project-specific design requirements.
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