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Hydrogen water

Hydrogen Water Production — Equipment and Process

Quick summary

Hydrogen water is produced by generating hydrogen from purified water in a PEM/SPE cell and dissolving that hydrogen into the water volume. Output is characterised by achievable dissolved hydrogen concentration, cycle time, feed-water requirement and consumable service interval.

Three key industrial facts

  1. Hydrogen is generated from the water itself; production and dissolution occur in the same water circuit.
  2. Achievable concentration depends on cell area, current, contact time, temperature and pressure.
  3. Dissolved hydrogen decays after production, so concentration is quoted with a measurement time.

Process stages

A production system has four functional stages: feed-water treatment, electrolysis, gas–liquid contact (dissolution), and separation or venting of the co-produced oxygen stream. Bottle formats compress these stages into one vessel; bench machines separate them, which allows higher and more repeatable dissolved concentrations.

  • Treatment: filtration and deionisation to the cell's feed specification.
  • Electrolysis: PEM/SPE stack splits water into hydrogen and oxygen.
  • Dissolution: contact time and pressure govern how much hydrogen enters solution.
  • Separation: oxygen is separated at the membrane and vented rather than dissolved.

Bottles versus machines

Portable bottles are convenient and self-contained but constrained by cell area and short contact time. Bench machines carry a larger stack and a dedicated dissolution stage, so they reach higher concentrations and are easier to characterise, at the cost of size, power and plumbing.

Format characteristics
FormatCharacteristics
Portable bottleIntegrated cell, short cycle, lower achievable concentration
Bench machineLarger stack and dissolution stage, higher achievable concentration
Plumbed systemContinuous feed-water treatment, output characterised at a tap point

Dissolved hydrogen stability

Hydrogen is only sparingly soluble in water and escapes readily. Concentration falls with time, agitation, elevated temperature and exposure to headspace. Any quoted concentration therefore needs a stated time and container condition to be meaningful, and comparisons made without that information are not valid.

Scope of statements

This page is neutral reference material describing what dissolved-hydrogen water is, how it is produced and how purity is specified. It makes no medical, health, wellness, performance, emissions or fuel-saving claim, and it is not a determination of suitability for any application.

Research and administrator references

PEM/SPE oxyhydrogen systems

PEM/SPE oxyhydrogen systems

Systems referenced across this cluster are PEM/SPE units that electrolyse purified water, rather than alkaline retrofit devices circulating a 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.

Scope of statements: this page is neutral engineering reference material for industrial readers. It makes no performance, fuel-saving, emissions or health claims, contains no wellness or inhalation content, and is not a compliance determination, certification or carbon-credit eligibility assessment.

FAQ

Frequently asked questions.

How is hydrogen water produced?

By electrolysing purified water in a PEM/SPE cell and dissolving the resulting hydrogen into the water volume, with the co-produced oxygen separated at the membrane.

Why do machines reach higher concentrations than bottles?

They carry a larger cell and a dedicated dissolution stage, giving greater contact time and better control of pressure and temperature.

Why does concentration fall after production?

Hydrogen has low solubility in water and escapes to the headspace, so concentration decays with time, agitation and temperature.

What makes a stated concentration comparable?

A stated measurement method, measurement time after production and container condition. Without those, figures from different products are not comparable.
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