Fly ash surface coating machine, powder dryer, powder disperser


The efficient resource utilization of industrial solid waste fly ash has always been an important issue in the environmental protection field. Fly ash modification is a technology that improves its physicochemical properties (such as activity, particle morphology, surface charge, etc.) through physical, chemical, or biological means, thereby expanding its Applications. Our intelligent powder processing system can realize the industrial production of the entire process of fly ash from drying and activation to surface modification, especially with significant advantages in the field of zeolite material preparation. This technology transforms industrial waste into new environmentally friendly materials, providing an innovative path for waste treatment.

Technical highlights of the honeycomb composite modification machine: Modular structural design, integrating mixing, modification, and dispersion ball mill functions into one Uses a blind-free cylindrical cavity, coupled with an intelligent wind sweeping conveying system Modifier precision metering system Monolayer coating technology (activation rate reaches 99.8% coating rate reaches 99.2% ) Intelligent control system Uses a permanent magnet direct drive motor to reduce costs.

Process advantages: Processing efficiency: can be customized according to customer needs to process powder materials Energy consumption index: unit energy consumption is lower than traditional processes 40% Environmental characteristics: fully enclosed negative pressure system, low dust emission low Adaptability: suitable for a variety of powder materials such as calcium carbonate, talc powder, and kaolin

Through surface chemical modification technology, the modified zeolite materials: Increased adsorption capacity for heavy metal ions 3-5 times; organic pollutant removal rate reaches more than 92%; achieves synergistic treatment of multiple pollutants; expands in-depth Applications in water treatment, catalyst carriers, and low-carbon buildings, environmental remediation, and new energy fields

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