H₂O₂ Separation Electrolysis Module for Hydrogen Water Bottles

The HM-HONS8258 keeps hydrogen and oxygen apart inside the cell. An ion membrane or MEA lets hydrogen through and routes the oxygen out of its own nozzle — so what reaches your drinking water is hydrogen, not a mixed gas. Platinum-coated titanium electrodes, two selectable output levels (≥ 2,000 PPB or ≥ 4,500 PPB), Ø43 mm, 33 g, and it drops straight into your existing bottle design.

Samples:

1-10 piece

Shipping:

PAD, By air, Sea freight

Place of Origin:

Foshan China

Payments:

L/C,D/A,D/P,T/T,Western Union,MoneyGram,OA

Lead Time:

7-10 days

Customization:

Customized logo (Min. Order: 100 sets),Customized packaging (Min. Order: 500 sets),Graphic customization (Min. Order: 500 sets)

Services:

OEM,ODM

Certificate:

ISO9001, ROSH, SGS

Product NameHydrogen-Oxygen Separation Module (hydrogen-rich water electrolysis module)Brand NameHOMIXE
Model NumberHM-HONS8258FeatureHydrogen and oxygen separated inside the cell. Hydrogen dissolves into the drinking water; oxygen is vented through a dedicated exhaust port, so no mixed gas enters the cup. No salt, no chlorine, no chemical additives.
GradeGR1 TitaniumCertificateISO 9001:2015, RoHS, SGS · MTC and CoC on request
ApplicationHydrogen-rich water bottles and cups; hydrogen water machines; portable H₂ generators; wellness and beauty appliances; OEM appliance integrationCustomizationLogo, housing colour, nozzle layout, cable & terminal, packing, custom PPB specification
CoatingPlatinum (Pt)Lead Time7 – 15 days after deposit



Product Details▼
Product NameHydrogen-Oxygen Separation Module (hydrogen-rich water electrolysis module)Brand NameHOMIXE
Model NumberHM-HONS8258FeatureHydrogen and oxygen separated inside the cell. Hydrogen dissolves into the drinking water; oxygen is vented through a dedicated exhaust port, so no mixed gas enters the cup. No salt, no chlorine, no chemical additives.
GradeGR1 TitaniumCertificateISO 9001:2015, RoHS, SGS · MTC and CoC on request
ApplicationHydrogen-rich water bottles and cups; hydrogen water machines; portable H₂ generators; wellness and beauty appliances; OEM appliance integrationCustomizationLogo, housing colour, nozzle layout, cable & terminal, packing, custom PPB specification
CoatingPlatinum (Pt)Lead Time7 – 15 days after deposit



How the Separation Module Works

It is a small water electrolyser running on low-voltage DC. Water sits against two platinum-coated titanium electrode plates. Apply current and the electrical energy splits the water molecules: hydrogen forms at the negative electrode as H₂, oxygen forms at the positive electrode as O₂. Nothing is added to the water — no salt, no electrolyte, no chemicals.


What makes this module different from a non-separation type is the membrane sitting between the electrodes. It is permeable to hydrogen but blocks oxygen, and the oxygen is routed to its own exhaust nozzle. Hydrogen is carried into the drinking water; oxygen leaves the bottle. The two gases never recombine inside the cup, which is why the separation type reaches a higher hydrogen concentration and gives a cleaner drinking experience.

What you get with separation

• Higher hydrogen concentration — up to ≥ 4,500 PPB with the MEA configuration

• Oxygen leaves through a dedicated exhaust port instead of entering the water

•No mixed-gas bubbles in the cup

• Supports a PPB claim on your retail packaging

• Preferred architecture for premium bottles and countertop machines

What it asks of your design

•One extra tube and nozzle position for the oxygen exhaust

•Slightly larger envelope than non-separation — Ø43 mm, 33 g

• A constant-current drive between 0.8 and 1.0 A

• Water kept between ambient and 60 °C, module stored damp

•Membrane activation (soak) before first use

Quality Assurance — From Titanium to Finished Electrode

Every HOMIXE platinized titanium anode is produced and inspected in-house, batch by batch. You receive the electrode — and the records behind it.

Testing available on request:

• Coating thickness test (XRF)

• Adhesion test (bending / thermal shock)

• Electrochemical performance test

• Accelerated life test on production samples

Our six-step production and inspection flow:

1. Titanium substrate inspection — incoming Gr1 / Gr2 titanium verified against ASTM B265 by material certificate and composition check.

2. Surface pretreatment — sand blasting and acid washing remove oxide scale and create the anchor profile the platinum layer needs for adhesion.

3. Platinum coating — controlled nano electro-plating deposits a dense, uniform platinum layer; thickness is set to your specification.

4. Coating thickness verification — X-ray fluorescence (XRF) measurement recorded for every batch.

5. Adhesion and surface inspection — visual and adhesion checks before packing.

6. Final inspection and packing — dimensions, terminals and appearance checked; electrodes protected for export.

Documents issued with your order on request:

• MTC (Material Test Certificate)

• Certificate of Compliance (CoC)

• XRF coating thickness report

• Batch traceability record


Certifications: ISO 9001:2015, RoHS, SGS.

We manufacture platinized, MMO and Ru-Ir anodes, so our recommendation is based on your duty cycle — not on what we happen to have in stock.

Send us your electrolyte, current density and running hours, and we will tell you honestly which coating belongs in your cell.




Platinum Coating Structure

The perfect combination of platinum and titanium


Platinum Coating — Provides the active electrochemical surface


Titanium Substrate — Structural strength, corrosion resistance


Titanium Base — High-purity titanium (Gr 1 / Gr 2)


Single-Sided & Double-Sided Coating

Flexible Design for Different Applications

Single-sided coatingSingle-sided coating

Single-sided coating

Cost-effective solution for general applications

Double-sided coatingDouble-sided coating

Double-sided coating

Higher active area for higher efficiency

Platinum-Titanium Anode vs MMO vs Pure Platinum

Rule of thumb: for hydrogen water / ionizer electrolysis where electrolyte purity matters, Pt/Ti is the professional choice. For heavy chlorine generation, ask us about our MMO anodes — we supply both.


Platinized Titanium (Pt/Ti)MMO (Mixed Metal Oxide)Solid Platinum
Best ForPrecious-metal plating, water ionizers, low-chlorine / clean electrolytesChlorine-evolving duty (seawater, pools, hypochlorite)Ultra-high-spec requirements only
CostModerateLowVery high
SubstrateTitanium (light, strong)Titanium— (solid metal, heavy)
Electrolyte PurityNo plating-bath contaminationCan leach oxides in some bathsCleanest
Service LifeLong; can be re-coatedLongVery long
RecoatingYes, availableLimitedNot applicable
Typical UsePrecision electroplating, lab electrolysis, water electrolysisSwimming pool chlorination, cathodic protectionSpec-driven research electrodes


Platinum Coating Thickness Selection Guide

Not sure which platinum thickness you need? Use this guide to shortlist, then tell us your application — we will confirm the best spec for your cell design and current density.

Pt Coating ThicknessRecommended Current DensityTypical Service LifeIdeal For
0.5 – 1.0 µm< 500 A/m²1 – 2 yearsHydrogen-rich water bottles, small appliance electrolysis
2.0 – 3.0 µm500 – 2,000 A/m²2 – 5 yearsAlkaline water ionizers, hypochlorous acid generators
4.0 – 5.0 µm2,000 – 5,000 A/m²3 – 7+ yearsIndustrial water electrolysis, HHO systems, continuous duty
Custom > 5.0 µm> 5,000 A/m²Long-term continuousHigh-corrosion environments, demanding production lines


Available Electrode Designs

Multiple Options to Meet Your Needs

Technical Specification Sheet

ParameterValue
Product NamePlatinized Titanium Anode Plates
BrandHOMIXE
Model No.HM-PTA99
Titanium SubstrateGrade 1 / Grade 2 (ASTM B265)
Ti Purity≥ 99.99%
Platinum Purity99.99%
Pt Coating Thickness0.2 – 5.0 µm standard; up to 20 µm on request
Coating MethodNano electro-plating (double-side coated)
DimensionUp to 1000 mm; custom shapes available
Operating Life5,000 – 20,000 hours (depending on current density & application)
TechniqueSand blasting, acid washing, electro-plating
ApplicationsWater electrolysis, alkaline water ionizer, hypochlorous acid generator, hydrogen-rich bottle, HHO electrolyzer
Surface TreatmentCustom holes, tabs, busbars available
CertificateISO 9001:2015, RoHS, SGS
SampleAvailable (1–10 pcs)
Lead Time7 – 14 days



How Does a Platinized Titanium Anode Work?


During electrolysis, electrical energy drives electrochemical reactions at the electrode surface. The platinum-coated titanium anode provides the active electrode surface, while the titanium substrate provides the required structural support.


The titanium core is light, mechanically strong and highly corrosion-resistant, so the anode holds its shape and conductivity under continuous current and aggressive electrolyte conditions. The platinum coating supplies the electrocatalytic activity: it lowers the overpotential for oxygen and chlorine evolution, allowing the cell to reach the required reaction rate at a lower voltage — which means less energy consumed per unit of output. Because platinum remains stable at high current density and resists oxidation, the coating also protects the titanium beneath it from passivation and keeps performance consistent over a long service life.


Together, the two materials deliver an anode that is efficient, durable and economical. Typical applications include hydrogen production by water electrolysis, Brown's Gas (HHO) generators, alkaline and acidic water ionizers, hydrogen-rich water bottles and hydrogen water machines, hypochlorous acid generators for fruit-and-vegetable disinfection, skin care and antioxidant water devices, and precision electroplating and laboratory electrochemical research.

Applications

Designed for Water Electrolysis, Hydrogen Generation and Customized Electrochemical Equipment

Hydrogen Water GeneratorHydrogen Water Generator

Hydrogen Water Generator

Water IonizerWater Ionizer

Water Ionizer

Antioxidant water devicesAntioxidant water devices

Antioxidant water devices

HHO GeneratorHHO Generator

HHO Generator

Electrolysis CellElectrolysis Cell

Electrolysis Cell

Custom Electrochemical SystemsCustom Electrochemical Systems

Custom Electrochemical Systems

Why Buy Platinized Titanium Anodes from HOMIXE?


A factory-direct manufacturer of electrocatalytic titanium electrodes — built to your drawing, your cell and your duty cycle.

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Content

  • How much hydrogen does the separation module produce?
  • Why choose separation instead of a non-separation module?
  • Do I need to add salt or any chemicals to the water?
  • What power supply does it need?
  • Why is the output low on my first test?
  • How should I store the module before installation?
  • Minimum order, lead time and samples?

Installation & Handling Notes


Six points that decide whether the module performs to spec in the field.

Activate the membrane first.:

Soak the module in cold water for 10 hours, or in 50–60 °C warm water for 1 hour. This activates the membrane and you get a noticeably stronger bubble output from the first cycle.

Polarity matters:

Wire the module backwards and output collapses — you will see a very small gas volume with oxygen appearing on the hydrogen side. Polarity is marked on the module body.

Keep it wet:

Store the module damp when it is not in use. A membrane left to dry out is damaged and its performance drops permanently.

Water temperature ≤ 60 °C:

Above 60 °C the module is damaged, and any hydrogen produced escapes from the water very quickly.

Fastening:

M2.5 screws. Specify titanium screws for better corrosion resistance — length to your drawing.

Leak check before you commit:

Close the bottle cap, run 30 minutes of continuous electrolysis, then rest 30 minutes. No leakage is acceptable.