Maximize gold recovery yields and achieve crystal-clear water purification with our premium 8X16 Mesh Coconut Shell Activated Carbon. Engineered with a high-carbon content and macroporous structure, this granular carbon delivers exceptional adsorption efficiency for both precious metal recovery processes and water treatment applications.
- Optimized 8X16 mesh size ensures balanced flow rate and contact time, critical for maximizing gold adsorption in cyanidation systems
- Physical-chemical activation method enhances pore volume, providing superior contaminant removal for industrial and municipal water purification
- Packaged in 25kg or 500kg options to streamline your supply chain and reduce handling costs, backed by our Asia-Pacific logistics expertise
Description
For industrial manufacturing and laboratory research purposes only.
Product Specifications
| Parameter | Value |
|---|---|
| Model NO. | Activated Carbon |
| Carbon Content | High-Carbon |
| Pore Diameter | Macroporous |
| Manufacturing Method | Physical-Chemical Method of Activated Carbon |
| Type | Gas Adsorption |
| Physical Properties | Pore Volume |
| Chemical Properties | Ph Value |
| Adsorption Properties | Methylene Blue Adsorption Value |
| CAS No. | 64365-11-3 |
| Formula | C |
| EINECS | 264-846-4 |
| Artificial Graphite Type | Activated Charcoal |
| Active Carbon Material | Coconut Shell Activated Carbon |
| Transport Package | 25kg, 500kg |
| Specification | granular |
| Trademark | Lvyuan |
| Origin | China |
| HS Code | 3802109000 |
| Production Capacity | 2000tons/Day |
8X16 Mesh Coconut Shell Activated Carbon (CAS 64365-11-3) for Consistent Industrial Performance
For over a decade in the chemical supply industry, we’ve seen how inconsistent activated carbon quality can derail operations—from gold recovery plants losing precious metals due to low adsorption capacity to water treatment facilities facing regulatory issues from impurity-laden carbon. Researchers repeatedly report实验结果无法复现 when using substandard coconut shell carbon, while manufacturers struggle with unexpected downtime caused by supply chain disruptions.
Stabilizing Your Process with High-Carbon Coconut Shell Activated Carbon
Our 8X16 Mesh Coconut Shell Activated Carbon addresses these critical pain points through precise manufacturing control and a robust supply chain. As a leading chemical trade hub in the Asia-Pacific region, we leverage Hong Kong’s free trade policies and bonded warehousing capabilities to ensure 2000 tons/day production capacity translates to reliable delivery for industrial clients across 50+ countries. The macroporous structure and high-carbon content are engineered specifically for the dual demands of gold recovery and water treatment applications.
Industrial Applications & Research Uses
This granular activated carbon finds primary application in mining operations for gold adsorption processes, where its 8X16 mesh size provides optimal flow dynamics and contact efficiency. In water treatment facilities, it serves as a critical adsorbent for removing organic contaminants and heavy metals. Research institutions utilize it for environmental analysis and material science studies requiring consistent adsorption properties. Water Purification Carbon variants are also employed in industrial pre-treatment systems prior to reverse osmosis or ion exchange processes.
Key Specifications Driving Performance
The macroporous pore diameter is essential for facilitating rapid mass transfer in gold recovery circuits, allowing efficient adsorption and desorption cycles. High-carbon content directly correlates with adsorption capacity, ensuring maximum contaminant removal in water treatment applications. Methylene Blue Adsorption Value serves as a critical quality indicator, with our product consistently meeting or exceeding industry benchmarks for industrial-grade activated carbon. The physical-chemical activation method balances pore structure development with mechanical strength, preventing particle breakage during handling and use.
Risk Mitigation Through Quality Assurance
Choosing our Coconut Shell Activated Carbon mitigates the risks associated with inferior products: inconsistent adsorption leading to process inefficiencies, particulate contamination causing equipment damage, and supply interruptions delaying production schedules. Our manufacturing process adheres to ISO 9001 quality standards, with each batch subjected to rigorous testing for pore volume, pH value, and adsorption performance. Unlike low-cost alternatives, our High-Carbon Coconut Shell Activated Carbon maintains stability across production batches, ensuring your processes remain predictable and compliant with industry regulations.
Our Quality Commitment
Every shipment of 8X16 Mesh Activated Carbon undergoes comprehensive testing using HPLC and elemental analysis to verify carbon content and impurity levels. We provide a detailed Certificate of Analysis (COA) with each delivery, including batch-specific data on methylene blue adsorption and pore volume. Our Jinan-based production facility operates under strict quality control protocols, with raw material traceability from coconut shell sourcing to final packaging. In the rare event of non-conformance with specifications, we offer unconditional replacement or refund, backed by our 10+ years of industry reputation serving 10000+ industrial clients.
Certificate of Analysis & Documentation
All orders include a batch-specific COA and MSDS (Material Safety Data Sheet) compliant with REACH regulations. For critical applications requiring additional verification, we can provide full adsorption isotherm data and particle size distribution reports upon request. Researchers and quality control teams can access historical batch data by providing their order reference number, ensuring complete traceability for experimental reproducibility and process validation.
Storage & Handling
- Store in a cool, dry, well-ventilated area, sealed and away from direct sunlight.
- Keep away from incompatible materials, food and feed sources.
- Handle with appropriate personal protective equipment (gloves, goggles, lab coat).
- Follow good industrial hygiene practices. Avoid inhalation and skin contact.
- Refer to MSDS for detailed storage and safety instructions.
Streamlined Order Process for Industrial Clients
Our industrial procurement process is designed for efficiency: submit an online inquiry specifying your required quantity and delivery timeline, receive a comprehensive quotation including logistics and customs clearance support, and request a sample for qualification testing. Once specifications are confirmed, our bonded warehousing allows for flexible batch deliveries to match your production schedule, with door-to-door delivery options available throughout the Asia-Pacific region. All shipments include the necessary documentation for customs clearance and quality control verification.
Frequently Asked Questions
Q: What is the shelf life of this activated carbon?
A: When stored properly in sealed packaging under recommended conditions, the product maintains its adsorption properties for 24 months from the date of manufacture.
Q: Can this product be used for food or pharmaceutical applications?
A: No. This activated carbon is produced for industrial and laboratory research use only, and is not certified for direct contact with food, pharmaceuticals, or for therapeutic applications.
Q: What documentation is provided with each shipment?
A: Every order includes a Certificate of Analysis (COA), Material Safety Data Sheet (MSDS), and commercial invoice. Additional documentation for customs clearance can be provided upon request.
Q: Do you offer custom packaging or mesh sizes?
A: Yes, we can provide custom packaging options for bulk orders and offer various mesh sizes including 4X8, 8X16, and 12X20. Minimum order quantities apply for custom specifications.
Q: How is the adsorption capacity verified?
A: Each batch is tested for methylene blue adsorption value using standard methods, with results reported on the COA. Additional testing for specific contaminants can be arranged for research purposes.







