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How to test PEM oxyhydrogen properly

Short answer

Short answer: A rigorous evaluation should measure gas composition, gas purity, flow, electrical input, engine load, fuel consumption, emissions and HHO dosing across controlled engine operating conditions, with repeated runs and stated statistical uncertainty.

Last reviewed: August 2026 · Combustion Enhancement technical review

This page is part of our oxyhydrogen evidence cluster. Published figures are attributed to the paper reporting them, manufacturer figures are labelled as manufacturer claims, and our own interpretation is labelled as our technical analysis. See the 2026 Scientific Reports HHO study review.

Terminology

Terminology used on this page

Definitions of terms used in this review
TermDefinition
H₂Hydrogen.
O₂Oxygen.
H₂/O₂A hydrogen and oxygen mixture.
HHO / oxyhydrogenCommonly used terminology for an electrolytically generated hydrogen/oxygen mixture delivered to an engine intake.
PEM / SPEProton exchange membrane / solid polymer electrolyte electrolysis — a solid-membrane, pure-water architecture with no liquid caustic electrolyte.
Alkaline KOH electrolysisElectrolysis using a liquid potassium hydroxide electrolyte.
BSFCBrake specific fuel consumption — fuel consumed per unit of engine work.
BTEBrake thermal efficiency — the share of fuel energy converted to useful engine work.
01 · OUR TECHNICAL ANALYSIS

The measurement set

Our technical analysis: the measurement set below is written as an objective standard that applies to any supplier, including us.

Each parameter exists to remove an alternative explanation for an observed change. Omitting one does not invalidate a test, but it does limit what the result can be attributed to.

  • Gas side: H₂ concentration, O₂ concentration, H₂:O₂ ratio, purity, moisture, flow
  • Electrical side: electrolyser input power and alternator parasitic load
  • Engine side: load, speed, fuel consumption, combustion parameters
  • Emissions: CO, CO₂, HC, NOx, particulate or smoke
  • Design: repeated runs, multiple loads, stated uncertainty, dosing recorded per condition
02 · PEER-REVIEWED LITERATURE

Why each element is there

According to the published literature, hydrogen addition effects vary with load and dose and commonly trade particulates against NOx, so single-condition testing without emissions coverage cannot describe the outcome.

Reviews of compression-ignition testing report both benefits and null results depending on operating condition, which is why repeats across loads matter more than a single headline figure.

OUR INDUSTRIAL OXYHYDROGEN WORK

Our industrial oxyhydrogen work

Our technical analysis: Combustion Enhancement supplies PEM/SPE oxyhydrogen systems that electrolyse purified water across a solid proton-exchange membrane. There is no potassium hydroxide electrolyte in the cell and no onboard hydrogen storage — gas is generated on demand while the equipment runs. Systems are applied to internal combustion engines (fleet, mining, marine, generator sets, agriculture) and to industrial combustion equipment.

Our audited results: an installation at a Coca-Cola bottling operation in India was evaluated with third-party audit of the specific fuel ratio before and after installation; audit scope and measurement method are provided on request. Our field observations: furnace, burner and engine trials are described in general terms only, and we do not publish figures where a documented measurement method is not available.

No projected, typical or expected fuel-saving figure is published. Actual results vary materially with engine condition, duty cycle, load profile, fuel quality, installation and operating conditions. A controlled field evaluation on your own equipment, with baseline data captured before installation, is required before any commercial projection.

Read our industrial oxyhydrogen case studies and field observations
FAQ

Questions.

What would be required to properly evaluate PEM oxyhydrogen?

A rigorous evaluation should measure gas composition, gas purity, flow, electrical input, engine load, fuel consumption, emissions and HHO dosing across controlled engine operating conditions.

Why measure electrical input?

The electrolyser draws power from the alternator, which draws mechanical energy from the engine. Any net efficiency result has to clear that penalty.

How many runs are enough?

Enough repeated runs at each tested condition to state a statistical uncertainty alongside the mean; a single pass cannot separate an effect from normal variation.
References

Sources

PEM/SPE oxyhydrogen systems

PEM/SPE oxyhydrogen systems

Unlike the HG80 alkaline system tested in the 2026 Scientific Reports experiment, PEM/SPE oxyhydrogen systems such as the HydroHub™ use solid-polymer electrolysis and pure water, with no potassium hydroxide electrolyte.

Combustion Enhancement develops PEM/SPE oxyhydrogen systems using pure-water electrolysis (no KOH). These systems are used in industrial engines, furnaces and commercial applications. Learn more about the HydroHub™ PEM oxyhydrogen system and the DH-Power™ industrial oxyhydrogen generator.

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