Balance of Plant (BOP)
Balance of Plant (BOP) Strategies for Large-Scale Green Hydrogen Facilities
Engineering Insight: While electrolyzer stack design garners the majority of research focus, the Balance of Plant (BOP) accounts for up to 50% of total...
Technical Articles
Compressor Technologies for High-Pressure Green Hydrogen Storage
Engineering Insight: Skimping on upstream water treatment before your electrolyzer stack is the fastest way to poison expensive iridium catalysts and double your stack...
Balance of Plant (BOP)
Balance of Plant Engineering: Pumps, Cooling and Instrumentation for Green Hydrogen Plants
Engineering Insight: Feeding substandard water into a high-current electrolyzer stack is the fastest way to turn a multi-million-dollar capital investment into scrap metal. Maintaining...
Electrolyzer Technology
Next-Generation PEM Electrolyzer Architectures and Efficiency Gains
Engineering Insight: Next-generation proton exchange membrane (PEM) electrolyzer architectures achieve stacklevel efficiency gains exceeding 80% (HHV) by optimizing membrane electrode assembly (MEA) thickness down...
Electrolyzer Technology
BriHyNergy Ships 15MW PEM Hydrogen System
BriHyNergy Commercializes 15MW PEM Electrolyzer System: A DeepDive into MegawattScale Electrochemical Engineering, BOP Optimization, and LCOH DynamicsEngineering Insight: The global energy transition has reached...
Balance of Plant (BOP)
Navigating the Green Energy Pivot: Offshore Wind Integration, NextGen Electrolyzer Architectures, and Strategic Capital Realignment in Global Energy MarketsEngineering Insight: The global clean energy...
