Achieve superior battery oil clarity with our Cosmetics Grade Coconut Shell Activated Carbon, engineered to deliver exceptional decolorization results for cosmetic manufacturing. Its high methylene blue adsorption value ensures efficient removal of impurities, streamlining your production process while maintaining the purity standards your formulations demand.
- Derived from premium coconut shell and processed via chemical activation, this powder-form carbon offers optimal surface area for targeted adsorption, making it ideal for battery oil treatment in cosmetic applications.
- With a low ash content and precise macroporous structure, it balances high performance with easy integration into your existing workflow, reducing downtime and ensuring consistent batch quality.
Description
For industrial manufacturing and laboratory research purposes only.
Product Specifications
| Parameter | Value |
|---|---|
| Model NO. | Coconut Activated Carbon |
| Active Carbon Material | Wooden Activated Carbon |
| Carbon Content | High-Carbon |
| Pore Diameter | Macroporous |
| Manufacturing Method | Chemical Method of Activated Carbon |
| Physical Properties | Shape |
| Chemical Properties | Ash Content |
| Adsorption Properties | Methylene Blue Adsorption Value |
| CAS No. | 64365-11-3 |
| Formula | C |
| EINECS | 264-846-4 |
| Artificial Graphite Type | Activated Carbon |
| Type | Water Treatment |
| Transport Package | 25kg/500kg |
| Specification | Powder |
| Trademark | LvYuan |
| Origin | China |
| Production Capacity | 1000 Ton/Month |
Cosmetics Grade Coconut Shell Activated Carbon (CAS 64365-11-3) for Consistent Battery Oil Decolorization
Industrial production of battery oil often faces challenges with inconsistent decolorization results due to low-quality activated carbon, leading to product batch variations and increased reprocessing costs. Researchers in material science laboratories similarly struggle with unreliable adsorption performance that hinders experimental reproducibility. After a decade of serving chemical manufacturers across 50+ countries, we’ve seen firsthand how these issues disrupt production timelines and compromise final product quality.
High Methylene Blue Adsorption Carbon: The Solution for Battery Oil Purification
Our Cosmetics Grade Coconut Shell Activated Carbon addresses these critical pain points through its superior adsorption properties, specifically engineered for battery oil decolorization. With a focus on high methylene blue adsorption value, this product ensures efficient removal of impurities and colorants, reducing processing time and improving batch consistency. Backed by our 10,000+ industrial client base and robust supply chain capabilities, we deliver reliable material solutions tailored for both large-scale production and precision laboratory research.
Industrial Applications of Cosmetics Grade Activated Carbon
This Coconut Shell Activated Carbon is primarily designed for industrial processes requiring precise decolorization and purification, such as battery oil treatment in the energy storage sector. Its macroporous structure and high-carbon content make it suitable for removing organic contaminants and color bodies in chemical manufacturing, while its cosmetics grade designation ensures compliance with strict purity standards for sensitive industrial applications. It is also utilized in laboratory research for adsorption kinetics studies and material purification experiments.
Key Specifications Driving Performance
The macroporous pore diameter of this activated carbon facilitates rapid adsorption of large organic molecules, critical for efficient decolorization of battery oil. Its high-carbon content ensures minimal ash residue, reducing the risk of secondary contamination during processing. The powder specification allows for easy dispersion in liquid systems, maximizing surface contact and adsorption efficiency. Most importantly, the methylene blue adsorption value serves as a direct indicator of its decolorization capacity, with higher values translating to more effective impurity removal—an essential parameter for maintaining consistent product quality in both industrial and research settings.
Benefits of Using Our High Adsorption Coconut Shell Activated Carbon
Choosing our Coconut Shell Carbon for Battery Oil Treatment reduces production costs by minimizing reprocessing needs and improving yield consistency. Unlike low-grade alternatives that may introduce unwanted impurities, our product meets stringent industrial standards, ensuring compliance with manufacturing regulations. The stable supply from our 1000 Ton/Month production capacity eliminates the risk of production delays due to material shortages. For research institutions, this translates to reliable experimental results and reduced variability between studies, ultimately accelerating the development of new battery technologies and purification processes.
Our Commitment to Quality and Reliability
Every batch of our Cosmetics Grade Coconut Shell Activated Carbon undergoes rigorous quality control testing, including adsorption efficiency analysis and impurity screening. We provide a Certificate of Analysis (COA) with each shipment, detailing key parameters such as methylene blue adsorption value and ash content. Our production facilities adhere to strict manufacturing protocols, ensuring consistent product quality across all batches. Should any product fail to meet specified requirements, we offer unconditional退换 to minimize disruption to your operations. Our dedicated technical support team is available to assist with application-specific questions, providing expert guidance based on a decade of industry experience.
Certificate of Analysis & Documentation
Each delivery includes a batch-specific COA and MSDS, providing comprehensive information on product specifications, safety handling, and storage requirements. For research institutions requiring detailed characterization data, additional testing reports can be requested, including adsorption isotherm analysis and particle size distribution. These documents ensure full traceability and compliance with industrial and laboratory quality management systems.
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 Ordering Process for Industrial and Research Needs
To place an order, simply submit an inquiry through our contact channels with your required quantity and specification details. We can provide small sample quantities for laboratory evaluation prior to full-scale procurement. Once specifications are confirmed, we ensure prompt delivery through our established logistics network, with all necessary documentation included. Our team works closely with clients to accommodate custom packaging requirements, ensuring the product arrives in optimal condition for immediate use.
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 product is intended FOR INDUSTRIAL AND LABORATORY RESEARCH USE ONLY and is not suitable for direct human consumption, therapeutic, or household use.
Q: What documentation is provided with each shipment?
A: Each order includes a Certificate of Analysis (COA) and Material Safety Data Sheet (MSDS) specific to the batch.
Q: Is custom packaging available?
A: Yes, we offer custom packaging options to meet specific industrial requirements; please contact our sales team for details.
Q: How is the methylene blue adsorption value tested?
A: The methylene blue adsorption value is determined using standard industrial methods, with results provided in the batch-specific COA.







