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MMO ruthenium iridium coated Titanium Anode Mesh Net for Potassium Chlorate

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Electrochemical Efficiency: Designed for industrial electrolysis processes, particularly potassium chlorate production, leveraging a ruthenium-iridium coated titanium mesh to enhance conductivity and durability in harsh chemical environments.
  • Customizable Fabrication: Offers cutting, bending, decoiling, punching, and welding services to tailor mesh configurations for specific applications, ensuring precise fitment in electrochemical systems.

Key features

  • 1. Material Technology

  • With ruthenium-iridium coated pure titanium (99.6% Ti content), achieve superior corrosion resistance in harsh chemical environments like potassium chlorate processing. ~30% longer lifespan compared to uncoated anodes*

  • 2. Interactive Design

  • With customizable processing services (cutting, bending, punching, welding), tailor the mesh net to fit specific industrial configurations, reducing installation time by up to 40%*

  • 3. Performance Parameters

  • With high electrical conductivity from 99.6% titanium content, ensure efficient electrolysis processes, outperforming standard titanium anodes by ~25% in output speed*

  • 4. Scenario Solutions

  • With robust construction for potassium chlorate applications, ensure reliable operation in high-temperature and corrosive industrial settings, supporting continuous 24/7 use*

  • 5. Certification Standards

  • With 99.6% pure titanium, meet stringent industrial purity standards for chemical-resistant applications, ensuring compliance with demanding manufacturing protocols.

Product details

MMO ruthenium iridium coated Titanium Anode Mesh Net for Potassium Chlorate

The MMO ruthenium iridium coated Titanium Anode Mesh Net is engineered for industrial electrolysis applications, particularly in potassium chlorate production. Crafted from 99.6% pure titanium with a durable mixed metal oxide (MMO) coating, this mesh net offers exceptional corrosion resistance and conductivity. Its modular design allows customization for precise fitment, while processing services like cutting and welding ensure adaptability to specific operational needs.

Technical specifications

FeatureSpecificationApplication Scenario
Material99.6% pure titaniumIndustrial electrolysis, potassium chlorate production
CoatingRuthenium-iridium MMOEnhanced durability in corrosive electrolyte environments
Mesh DesignRectangular pattern, solid baseStructural stability during high-current electrolysis
Processing ServicesCutting, bending, decoiling, punching, weldingCustomized installation in reactors or tanks
CertificationIndustrial-grade anodizing complianceMeets safety standards for chemical processing plants

Customization guide

Adjustable parameters include mesh aperture size, wire diameter, and overall dimensions to match specific electrolyte flow requirements or reactor geometries. The solid base can be modified for seamless integration with existing infrastructure.

Get inspired

With its MMO coating, this anode mesh net delivers 30% longer service life in aggressive chemical environments compared to uncoated titanium. Its open mesh structure ensures optimal electrolyte circulation while maintaining structural integrity under high current loads.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Corrosion Resistance1000+ hours (salt spray)+15% (1150+ hours)+30% (1300+ hours)*
Current Efficiency85%Enhanced (92%)Premium (98%)
Service Life2 yearsExtended (3 years)Durable (5 years)

Supplier's note

  1. Three Technical Breakthroughs:

    • MMO Coating: Triple-layer ruthenium-iridium coating boosts oxidation resistance, extending lifespan in potassium chlorate electrolysis.
    • Titanium Purity: 99.6% Ti content reduces impurity-related degradation, ensuring stable conductivity over time.
    • Modular Design: Customizable mesh apertures optimize electrolyte flow rates for specific reactor setups.
  2. Optimal Version Selection:

    • Base Model: Ideal for small-scale anodizing labs requiring basic corrosion protection and cost efficiency.
    • Advanced Model: Suited for medium-sized industrial plants needing extended service life (e.g., 24/7 chlorate production).
    • Pro Model: Recommended for heavy-duty applications like marine electrolysis or high-purity chemical synthesis, where extreme durability and efficiency are critical.

With the Pro Model’s 98% current efficiency, you can reduce energy consumption by 20% compared to traditional titanium anodes. Its 1300-hour corrosion resistance rating ensures safe operation in concentrated potassium chlorate solutions. Pair this with customizable mesh spacing to match your reactor’s flow dynamics, maximizing productivity.

Frequently asked questions

  • Which MMO ruthenium iridium coated titanium anode mesh net model is best for potassium chlorate production?

  • How do I maintain the MMO titanium anode mesh net to prevent corrosion during industrial use?

  • Titanium vs stainless steel anode mesh: Which is better for anodizing processes?

  • Can I customize the MMO titanium anode mesh net’s dimensions for my specific reactor size?

  • Is the ruthenium-iridium coating on the titanium anode mesh FDA-approved for food-grade electrolysis?

  • How does the ruthenium-iridium coating enhance the titanium anode mesh’s performance?

  • What makes this titanium anode mesh suitable for harsh industrial environments?

  • What processing services are available for the MMO titanium anode mesh net?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Industry Standard Anode MeshGeneral industrial processesTitanium (99% purity), basic oxide coating (ASTM G85: 200hr salt spray resistance)Cost-effective, widely compatible with standard electrolytes.Limited corrosion resistance in harsh chemicals (e.g., potassium chlorate).
Our Base ModelStandard anodizing, moderate chemical useTitanium (99.6% ASTM F139), MMO coating (ruthenium/iridium, 250hr ASTM G85)+5% Ti purity vs industry standard → enhanced durability.Basic processing (cutting/bending only).
Our Advanced ModelPotassium chlorate production, high-corrosion environmentsTitanium (99.6% ASTM F139), enhanced MMO (ASTM G85: 500hr, 0.5mm coating thickness)▲▲ +3x corrosion resistance vs Base; full processing (cutting, bending, decoiling, punching, welding).Higher cost due to advanced coating and customization capabilities.
Stainless Steel MeshLow-corrosion environments (e.g., mild acids)316L stainless steel (ISO 15156), no MMO coatingLower cost, easy to fabricate.-30% resistance to chlorate vs titanium → unsuitable for potassium chlorate.
Plastic Composite MeshNon-chemical, lightweight applicationsPolypropylene (ISO 1043-1: 1.0g/cm³ density)Lightweight, cost-effective for non-industrial uses.No conductivity → incompatible with electrolytic processes.
Competitor’s High-Grade MeshSimilar to Our AdvancedTitanium (99.5% ASTM F139), MMO (ASTM G85: 400hr)Comparable performance to Our Advanced.Limited customization (no welding/decoiling); ▲ -10% Ti purity vs Our models.

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