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White-paper

White paper: Gas Detection for Hydrogen Electrolysers White paper: Gas Detection for Hydrogen Electrolysers

White paper: Gas Detection for Hydrogen Electrolysers

As the hydrogen economy expands, so do the safety challenges associated with hydrogen production. In this white paper, International Gas Detectors (IGD) delve into the critical hazards of hydrogen electrolysis, such as explosive gas leaks and oxygen enrichment.

Explore cutting-edge gas detection technologies, including dual-sensor systems that reduce CAPEX and enhance operational safety. Backed by over 100 years of innovation, IGD provides the insights and solutions necessary to protect personnel, plants, and the environment.

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White paper: New Dimensions in Water Treatment White paper: New Dimensions in Water Treatment

White paper: New Dimensions in Water Treatment

High-performance filter mesh is the key to effectively removing impurities from the planet’s most valuable resource. Precise mechanical filtration is crucial for efficient, economical and sustainable water treatment, as it reduces the need for additional purification stages. The direct separation of solids and microplastics leads to energy and space savings as well as less use of chemicals, which both reduces costs and protects the environment.

In this white paper, wire weaving and machinery division, Haver & Boecker, discuss the possible applications of modern metal wire mesh.

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White paper: Hydrogen: How to Meet the Safety Challenges White paper: Hydrogen: How to Meet the Safety Challenges

White paper: Hydrogen: How to Meet the Safety Challenges

Production, storage and transport of hydrogen bears specialist safety risks. Managing them requires expert knowledge throughout all phases of hydrogen processes.

What are the key safety challenges with hydrogen? What solutions to handle them are available? Dräger, a leading safety technology and gas detection expert, introduces the key points in this guide.

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Minimizing LCOH with advanced Proton Exchange Membranes for Water Electrolysis Minimizing LCOH with advanced Proton Exchange Membranes for Water Electrolysis

Minimizing LCOH with advanced Proton Exchange Membranes for Water Electrolysis

For Proton Exchange Membrane (PEM) water electrolysis to become a viable pathway for green hydrogen production at scale, the levelized cost of hydrogen (LCOH) must come down.

Gore, a global leader in PEM, collaborated with FEV Consulting to investigate the impact of PEM attributes on the LCOH through a “material to system level” analysis across three distinct use cases. This white paper reports on the cost reductions achieved through the GORE® PEM M275.80 compared to alternative PEM technology and Alkaline electrolysis.

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Ensuring Process Safety and Product Quality in Water Electrolysis Using Oxygen, Hydrogen, and Moisture Analyzers Ensuring Process Safety and Product Quality in Water Electrolysis Using Oxygen, Hydrogen, and Moisture Analyzers

Ensuring Process Safety and Product Quality in Water Electrolysis Using Oxygen, Hydrogen, and Moisture Analyzers

The growing demand for clean hydrogen production has driven significant advancements in water electrolysis technology. However, ensuring process safety and product quality remains paramount when handling hydrogen, a highly flammable gas.

This white paper, brought to you by Panametrics (a Baker Hughes business), explores the critical role of gas and moisture analyzers in safeguarding water electrolysis processes and guaranteeing the purity of produced hydrogen.

 

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