Complete production equipment layout — from activation furnaces to crushing & screening lines, acid-alkali washing units, and fluidized drying beds
High-temperature steam activation equipment — the core facility for activated carbon production, providing stable physicochemical activation conditions
Automated temperature, steam flow, and feed rate regulation ensuring batch-to-batch consistency
Multi-stage crushing with vibrating classification to produce a full range of mesh sizes from pellets to powder
High-precision multi-deck screening to ensure strict particle size distribution requirements
Deep purification equipment removing ash and soluble impurities, significantly improving carbon purity
Dedicated acid-treatment line for producing ultra-low-ash high-end activated carbon products
Vibrating fluidized drying technology minimizing particle attrition while ensuring uniform moisture control
High-efficiency hot-air drying, automated temperature and humidity monitoring delivering stable product moisture content
Distilled water washing process avoiding soluble impurity introduction to ensure high-purity products
Weighing, bagging, and sealing in one automated process; various packaging formats available to meet different transport and storage requirements
Standardized warehousing management with classified storage ensuring product traceability and supply stability
Comprehensive analytical and testing instruments to ensure all activated carbon quality indicators meet customer requirements
Standard compliant iodine adsorption testing to evaluate micropore development and adsorption performance
Methylene blue adsorption value testing — a key indicator for liquid-phase decolorization applications
High-temperature furnace method for precise determination of total, water-soluble, and acid-soluble ash
BET specific surface area and pore size distribution analysis for advanced application performance evaluation
PHS-3C digital acidity meter for precise pH measurement meeting application-specific requirements
Rapid moisture content determination to verify drying process effectiveness and product consistency
Laser diffraction-based accurate measurement of particle size distribution for strict mesh specifications
Ball-pan hardness method to test abrasion resistance, ensuring product durability during transport and use