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Iridium Ruthenium Titanium Anode Titanium Electrode Oxide Coating For Sodium Hypochlorite Generator Chemical Industry
Iridium Ruthenium Titanium Anode Titanium Electrode Oxide Coating For Sodium Hypochlorite Generator
When it comes to the production of sodium hypochlorite, the choice
of electrode matters. That's why BaseTi, a leading titanium
electrode manufacturer, offers Iridium Ruthenium Titanium Anode
Titanium Electrodes with oxide coating. This premium-grade product
is engineered to meet the specific needs of sodium hypochlorite
generators.
Usage:
These specialized anodes are designed for generating sodium
hypochlorite through electrochemical cell processes. They play an
essential role in water disinfection, serving various industries
like water treatment plants, cooling towers, and swimming pools.
Performance:
Crafted with a unique blend of iridium and ruthenium oxide coating,
these electrodes demonstrate excellent electrocatalytic performance
and extended lifespan. Their high corrosion resistance ensures that
they can withstand the aggressive environments found in
electrolytic cells.
Advantages:
Efficiency: Greater chlorine production rates at lower energy
consumption.
Durability: Significantly longer life compared to standard
electrodes.
Eco-Friendly: Minimizes harmful by-products, aligning with
environmental standards.
Grade and Standards:
BaseTi offers a range of grades and standards to choose from. If
you have specific needs that are not met by our standard products,
as a flexible titanium anode factory and titanium anode supplier,
we can provide customized solutions.
Application Areas:
Water Treatment Facilities
Swimming Pool Maintenance
Chemical Industry
Marine & Offshore
Choose BaseTi:
As a reputable titanium electrode supplier, BaseTi ensures that our
electrodes are built to meet or exceed international standards.
Choose us for efficient, reliable, and environmentally friendly
electrode solutions for sodium hypochlorite generation.
The coating of a Titanium Anode significantly influences its physical properties, operational efficiency, and lifespan. Below is a comprehensive table detailing different types of coatings and their respective physical properties. This data adheres to recognized American and European standards.
Coating Type | Electrical Conductivity (S/m) | Corrosion Resistance | Lifespan (Years) | Application Area |
---|---|---|---|---|
MMO (Mixed Metal Oxide) | High | Excellent | 5-7 | Water Treatment, Chlor-Alkali |
RuO2 | Medium | Good | 4-6 | Electroplating, Water Treatment |
IrO2 | High | Excellent | 5-7 | Chlor-Alkali, Oxygen Evolution |
Pt (Platinum) | Very High | Excellent | 7-9 | Premium Applications like Fuel Cells |
Analysis:
MMO (Mixed Metal Oxide): Provides a well-rounded performance suitable for diverse applications including water treatment and chlor-alkali processes.
RuO2: Especially effective in electroplating and less demanding water treatment applications.
IrO2: Exhibits high electrical conductivity and corrosion resistance, making it ideal for applications that require oxygen evolution.
Pt (Platinum): The most premium coating offering superior performance, especially in high-end applications like fuel cells.
Understanding these properties is crucial when selecting the appropriate anode for specific applications. Each coating offers a unique set of benefits, tailored to meet the requirements of various industrial processes.
When evaluating the optimal Titanium Anode for specific applications, understanding the distinct physical properties associated with various coatings is essential. Below is a table summarizing these properties, adhering to recognized American and European standards.
Coating | EC (S/m) | CR | LS (Yrs) | App |
---|---|---|---|---|
MMO | High | Ex | 5-7 | WT, CA |
RuO2 | Med | Gd | 4-6 | EP, WT |
IrO2 | High | Ex | 5-7 | CA, OE |
Pt | V. High | Ex | 7-9 | FC |
Insights:
MMO: An all-rounder, suitable for water treatment (WT) and chlor-alkali (CA) processes.
RuO2: Best for electroplating (EP) and moderate water treatment applications (WT).
IrO2: Ideal for oxygen evolution (OE) and chlor-alkali processes (CA).
Pt: For premium applications, such as fuel cells (FC), where top-notch performance is required.
This table serves as a quick guide for selecting the right Titanium Anode, taking into account the unique advantages that each coating offers for diverse industrial processes.
Q: Eyeing the model XX titanium anode?
A: BaseTi thrives on customization. Instead of predefined models,
we mold anodes as per your exact design requisites.
Q: Can our XX equipment have a specially designed anode?
A: Certainly! Whatever your equipment type, BaseTi can customize
the perfect anode. Just share the design details.
Q: What's the most fitting anode coating for us?
A: Let's understand your industry better. We'll then guide you to
the ideal coating choice.
Q: Operating current and voltage for BaseTi anodes?
A: They're versatile. Key operational metrics to consider:
Current density: ≤2000 A/M²
Temperature: 40-60°C
Steering clear of fluoride/cyanide ions in electrolytes is crucial.
Q: How long do these anodes last?
A: Durability is industry-dependent. You're looking at anywhere
from 6 months up to 50 years. We'll assure a certain lifespan based
on your industry.