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Hydrogen is extremely light, highly diffusive, and highly flammable. It can leak through very small gaps, accumulate in enclosed spaces, and burn with a flame that can be difficult to see. That combination makes accurate measurement and rapid detection non-negotiable at every stage of the hydrogen value chain, including production, storage, transportation, testing, and fueling.

That is why a well-designed hydrogen facility needs multiple layers of measurement and protection. Three technologies that each play an important role are:

  • Alicat for flow measurement and control
  • QEL for hydrogen gas detection
  • Spectrex for flame detection

Each solves a different problem. Together, they help create a safer, more controlled hydrogen process.

Why Instrumentation Matters in Hydrogen Applications

Hydrogen applications rely on accurate, reliable data. Electrolysis, fuel cell testing, gas blending, and research systems all require engineers to know exactly what is happening inside the process.

How much gas is flowing? Is it moving at the correct rate? Is hydrogen escaping into the surrounding environment? Has ignition occurred?

The right instrumentation helps answer those questions before a small problem becomes a much bigger one.

Let's look at the role each technology plays.

Hydrogen Energy Explained: Why Is It Back in the Spotlight? (Part 1) - Brand's Brands Episode 36

Alicat: Precision Flow Measurement and Control

Hydrogen processes depend heavily on accurate flow measurement.

Too little hydrogen and a fuel cell underperforms. Too much or too fast and you risk pressure spikes, inefficient combustion, or safety exceedances. Alicat mass flow meters, mass flow controllers, and pressure controllers provide the precision needed to monitor and manage these critical gas flows. 

Alicat instruments are used in a variety of hydrogen applications, including:

  • Electrolyzer testing
  • Fuel cell testing
  • Hydrogen production research
  • Gas blending
  • Laboratory and pilot-scale systems
  • Hydrogen and natural gas blending applications

Why Alicat is a good fit for hydrogen applications

  • Fast, accurate mass flow control: for electrolyzer stacks and fuel cell test benches, where gas composition and flow rate directly affect efficiency and safety.
  • Multi-gas capability: letting engineers switch calibration between hydrogen, oxygen, nitrogen, and blended gas streams without swapping hardware.
  • Hazardous area configurations available: select Alicat models can be configured for use in hazardous locations, allowing accurate flow measurement and control in environments where flammable gases are present and safety requirements are more stringent.
  • Digital communication and data logging: which is essential for the tight process control and traceability demanded by hydrogen production and quality-assurance workflows.

In simple terms, Alicat helps answer the question “How much gas is moving, and how quickly?” That’s the metrology that lets engineers trust their process data and tune systems for maximum efficiency.

Spectrex: Detecting the Invisible Hydrogen Flame

Hydrogen has a particularly challenging characteristic when it comes to fire safety: its flame can be extremely difficult to see. It burns almost invisibly in daylight, emits very little smoke, and radiates in the infrared water-vapor band rather than the carbon dioxide band that conventional hydrocarbon flame detectors are tuned to. A standard flame detector designed for oil and gas fires can completely miss a hydrogen fire.

This is where Spectrex optical flame detection technology can play an important role.

Spectrex, (part of Emerson), built its reputation specifically around solving this problem. Its SharpEye line of optical flame detectors uses multi-spectrum infrared and UV/IR sensing designed to catch the specific emission signature of hydrogen flames, not just hydrocarbon ones.

Hydrogen flame detection can be important in applications such as:

  • Hydrogen production facilities
  • Storage areas
  • Fueling stations
  • Fuel cell facilities
  • Industrial process areas
  • Research and testing environments

Why rapid flame detection matters for hydrogen infrastructures:

  • Purpose-built hydrogen flame detection at long range, critical for refueling stations, storage tank farms, and fuel cell facilities where a flame may be nearly invisible to the human eye.
  • Ultra-fast response times (often under 50 milliseconds), which matters enormously given how quickly a hydrogen fire can escalate due to its high flame speed.
  • False-alarm immunity engineered for harsh industrial and outdoor environments, so facilities aren't shutting down operations on sunlight glare or unrelated heat sources.

Spectrex essentially provides the "eyes" of a hydrogen safety system by detecting ignition the instant it happens, rather than relying on smoke or heat cues that hydrogen fires may never produce.

QEL: Detecting Hydrogen Before it Becomes a Fire

The best hydrogen fire is the one that never starts. Early detection of a leak can help prevent hydrogen concentrations from reaching dangerous levels. QEL (Quatrosense Environmental Ltd.) manufactures toxic and combustible gas detection sensors and controllers used across industrial and commercial facilities, including dedicated pre-calibrated hydrogen sensor modules that monitor gas concentration as a percentage of the Lower Explosive Limit (LEL).

Hydrogen is extremely light, so when it is released, it can rise and accumulate near ceilings or other high points in enclosed or semi-enclosed spaces.

Potential applications for hydrogen gas detection include:

  • Hydrogen storage areas
  • Fueling stations
  • Equipment and mechanical rooms
  • Industrial facilities
  • Research and testing environments
  • Enclosed or semi-enclosed transportation areas

Where QEL fits into hydrogen safety:

  • Continuous ambient monitoring in enclosed or semi-enclosed spaces (parking garages, mechanical rooms, hydrogen storage and fueling areas) where hydrogen can accumulate near ceilings due to its low density.
  • Smart sensor/controller integration, tying gas detection directly into building or facility control systems (via BACnet, Modbus, and relay outputs) to automatically trigger ventilation fans or alarms the moment hydrogen concentration rises.
  • Rugged, field-serviceable hardware designed for demanding environments, supporting the kind of long-term reliability that safety codes require.

QEL provides the early-warning layer of the safety system. The goal is to identify a leak before hydrogen concentrations reach a level where ignition becomes a concern.

How Alicat, Spectrex, and QEL Work Together

The real strength of these technologies is that they address different points in the risk chain.

A simple way to think about it is:

Alicat: Control the Process

Is the process operating as intended?

Alicat helps measure and control gas flow so engineers can understand what is happening inside the system.

QEL: Detect the Leak

Is hydrogen escaping into the environment?

QEL gas detection systems monitor for rising hydrogen concentrations and can provide an early warning before a fire occurs.

Spectrex: Detect the Fire

Has ignition occurred?

Spectrex flame detection systems provide rapid detection if a hydrogen fire starts.

Together, they support a layered approach:

Measure → Detect → Respond

And when you're working with hydrogen, layers are a good thing.

Hydrogen Energy Explained: The Critical Role of Instrumentation (Part 2) - Brand's Brands Episode 37

The Future of Hydrogen Depends on Better Instrumentation

Hydrogen may be one of the most promising energy carriers for the future, but the success of hydrogen infrastructure will depend on much more than production and storage technology.

It will also depend on the measurement and safety systems supporting it.

Accurate flow measurement helps optimize processes. Gas detection helps identify leaks before they become more serious. Flame detection provides rapid warning if ignition occurs.

Each plays a different role. Together, they help create the instrumentation backbone needed to support a growing hydrogen economy.