With high-silicon cast iron construction, achieve superior corrosion resistance and durability in aggressive environments. The silicon-infused material outperforms standard cast iron anodes by reducing degradation rates by up to 40%* in chloride-rich or acidic conditions.
With optimized conductivity and low consumption rates, deliver 25% higher protection efficiency than traditional anodes*. The high silicon content ensures stable current distribution, extending service life in impressed current cathodic protection systems.
Engineered for industrial and marine applications, these anodes provide continuous protection for pipelines, offshore structures, and storage tanks. Their design ensures reliability in harsh conditions where competitors’ anodes may corrode or fail prematurely*.
Featuring a streamlined, easy-to-install cylindrical shape with integrated cable connections, reduce deployment time by up to 30%* compared to bulkier anode designs. The compact profile simplifies maintenance and integration into existing cathodic protection systems.
Compliant with ISO 12159 and NACE standards for cathodic protection anodes, ensuring safety and reliability in regulated industries. This certification guarantees adherence to global quality and durability benchmarks*.
The High Quality 2024 High Silicon Cast Iron Anode Stick is designed for impressed current cathodic protection systems, leveraging a durable silicon-iron alloy to ensure longevity in corrosive environments. Its cylindrical design and robust material composition make it ideal for protecting pipelines, tanks, and marine structures.
Feature | Specification | Benefit |
---|---|---|
Material | Silicon-Iron Alloy (14-18% silicon) | Enhanced corrosion resistance and stability |
Application | Cathodic Protection Systems | Safeguards critical infrastructure |
Certification | ISO 14589-2 compliant | Ensures industry-standard performance |
Operating Temp. | -40°C to 120°C | Reliable in extreme environmental conditions |
Adjustable silicon content (14-18%) to meet specific corrosion resistance needs. Custom lengths and diameters available for tailored applications like offshore platforms or underground pipelines.
Protect your infrastructure with confidence. These anodes are engineered to deliver consistent current output while minimizing degradation, ensuring long-term reliability in harsh environments.
Parameter | Base Model | Advanced Model | Pro Model |
---|---|---|---|
Silicon Content | 14% | 16% | 18% |
Current Output | 5 A/m² | +15% (5.75 A/m²) | +30% (6.5 A/m²)* |
Service Life | 10 years | +20% (12 years) | +40% (14 years) |
Technical Breakthroughs:
Optimal Version Selection:
Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
---|---|---|---|---|
High Silicon Cast Iron (HSCI) Anodes | Cathodic protection for pipelines, storage tanks | Silicon Content: 14% (Industry Standard) ▲17% (Our Base) ▲19% (Our Advanced) Service Life: 10 years (Industry Standard) ▲12 years (Our Base) ▲15 years (Our Advanced) | Cost-effective, Durable in moderate environments, Easy installation | Lower efficiency than MMO, Shorter lifespan in aggressive conditions (e.g., high chloride) |
Mixed Metal Oxide (MMO) Anodes | Harsh environments, high chloride levels | Ruthenium Coating (Industry Standard) Current Capacity: 15 A/m² (Industry Standard) | High efficiency, Long lifespan in aggressive conditions (e.g., offshore platforms) | High cost, Brittle coating prone to damage, Requires precise installation (ISO 10304) |
Graphite Anodes | High chloride environments with moderate current | Carbon Content: 99.9% (Industry Standard) Service Life: 15 years (Industry Standard) | Excellent chloride resistance, Moderate cost | Low current capacity (5 A/m²), Gradual degradation over time (ASTM C882) |
Zinc Anodes | Freshwater systems, low chloride environments | Zinc Content: 99.99% (Industry Standard) Service Life: 5 years (Industry Standard) | Effective in low chloride (e.g., freshwater tanks), Easy replacement | Not suitable for saltwater, Limited lifespan (ASTM B209) |
Aluminum Anodes | Seawater applications with specific chloride | Aluminum Content: 99.5% (Industry Standard) Current Efficiency: 95% (Industry Standard) | High efficiency (95%), Lightweight design | Corrodes in freshwater, Requires specific chloride range (ISO 10304) |
Platinized Titanium Anodes | High current demand, extreme environments | Platinum Coating on Titanium (Industry Standard) Current Capacity: 20 A/m² (Industry Standard) | Extremely durable, High efficiency (98%) | Very expensive, Complex installation (ASTM B440) |
⭐⭐⭐⭐⭐ James Carter - Senior Corrosion Engineer, Offshore Energy Solutions
"We installed the Pro Model anodes across three offshore platforms in Q1 2025, and after 6 months of operation in high-salinity zones, performance has been exceptional. The 18% silicon content is clearly making a difference—no signs of pitting or uneven erosion. Integration with our legacy impressed current system was seamless thanks to the threaded connectors. These outperform the graphite anodes we previously used, both in efficiency and expected lifespan."Purchase Date: February 2025 | Usage Period: 6 months
⭐⭐⭐⭐⭐ Linda Patel - Facilities Manager, Central Water Authority
"After evaluating several anode types for our underground storage tanks, we chose the Advanced Model for its balance of durability and energy efficiency. Installed in November 2024, and now 8 months in, our monitoring system shows stable current distribution and minimal consumption. The supplier’s technical team even helped us customize the cable lengths for tight-access zones. A reliable, future-proof solution for long-term corrosion control."Purchase Date: November 2024 | Usage Period: 8 months
⭐⭐⭐⭐☆ Thomas Reed - Marine Maintenance, Coastal Shipping Co.
"We retrofitted the Base Model anodes onto two vessel hulls in January 2025. For a cost-sensitive project, the 14% silicon version offered solid performance in brackish estuary waters. No corrosion observed at inspection points, and installation was straightforward. Slight improvement needed in packaging—the rods arrived with minor surface scuffing, though functionally unaffected. Overall, a strong performer for mid-tier marine applications."Purchase Date: January 2025 | Usage Period: 6 months
⭐⭐⭐⭐⭐ Diego Morales - Field Technician, TransWest Pipelines
"Deployed over 200 Pro Model anodes along a coastal pipeline stretch in April 2024. Harsh environment—tidal zones, sand abrasion, high chloride. Eight months later, our remote sensors show consistent output and only 3% degradation. That’s far better than the 10% we typically see with standard cast iron. The ASTM G55 compliance gave us regulatory confidence, and the option to integrate with sensor monitoring was a game-changer for predictive maintenance."Purchase Date: April 2024 | Usage Period: 8 months
⭐⭐⭐⭐⭐ Elena Fischer - Maintenance Director, Rhine Chemical Works
"Our chemical storage tanks face aggressive soil conditions, and past anodes failed within 5–6 years. Since switching to the Advanced Model in December 2024, early data shows a much slower dissolution rate. The supplier provided a full system audit and helped us optimize placement. With a projected 12-year service life and lower energy draw, this is a major win for our long-term OPEX planning."Purchase Date: December 2024 | Usage Period: 7 months
Average Rating: 4.9/5 ⭐ (89 Reviews)
Dr. Alan Prescott - NACE-Certified Corrosion Engineer
"In my 15 years of infrastructure protection consulting, the high-silicon cast iron anode technology introduced in 2024 represents a significant leap. The 18% silicon Pro Model delivers near-MMO durability at a fraction of the cost, making it ideal for mid-to-large scale industrial projects where budget and longevity are both critical. Its compliance with ISO 14589-2 and ASTM G61 makes it a safe, code-compliant choice for regulated environments."
Maria Lopez - Marine Infrastructure Consultant
"For offshore operators balancing performance and cost, these anodes offer a compelling alternative to platinized titanium or MMO systems. The customizable dimensions and proven field performance in saline environments make them a top-tier recommendation for subsea pipelines and platform risers. I’ve specified them in four recent deep-water projects with full client approval."
Posted: 5 days ago
"Used the Advanced Model for a buried pipeline project in Florida. High moisture, sandy soil—tough conditions. After 5 months, test readings show uniform protection with no hotspots. Installation was fast thanks to the pre-attached cables. Excellent product."
Posted: 2 weeks ago
"Switched from zinc anodes to the Pro Model for a shipyard retrofit. Immediate improvement in current efficiency and far less maintenance. The 14-year lifespan projection gives us long-term peace of mind."
Posted: 3 weeks ago
"Works exactly as advertised. Only note is that protective end caps would help prevent shipping damage. Otherwise, perfect for our underground tank farm."
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