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Activated carbon, also known as activated charcoal, is a versatile material with an extremely large surface area and exceptional adsorption properties. This unique substance has become indispensable in numerous industries, including water treatment, air purification, medical applications, food processing, and chemical manufacturing. Driven by increasingly stringent environmental regulations and growing awareness of purification technologies, the global activated carbon market continues to expand rapidly.
At Xuye Machinery, at the heart of this industry, we produce advanced activated carbon manufacturing equipment that transforms raw materials into high-performance activated carbon. This equipment has evolved from simple batch production processes to highly automated continuous production systems, offering unprecedented efficiency and product quality. Transforming raw materials such as coconut shells, wood, coal, and agricultural waste into valuable activated carbon requires precise control of temperature, atmosphere, and process parameters—all achieved through advanced machinery.
This equipment does more than simply increase production efficiency. It enables manufacturers to produce products with customized pore structures and surface properties for specific applications. Whether producing powdered activated carbon for water treatment facilities or granular activated carbon for air purification systems, the right equipment is crucial to product performance and economic viability.

The operation of an activated carbon machine generally involves three main stages:
Coconut shells, fruit shells, wood chips, bamboo, or coal are first crushed into suitable particle sizes using a crusher. This ensures efficient carbonization and activation.
The prepared raw materials are fed into a carbonization furnace in an oxygen-free or low-oxygen environment. Through high-temperature pyrolysis, volatile components are removed, leaving behind primary charcoal. Typical equipment includes continuous carbonization furnaces, rotary carbonization kilns, or tube furnaces.
The primary charcoal is then processed in an activation furnace, using either of the following methods:
The activated carbon produced has a highly developed microporous structure and superior adsorption capability, making it suitable for multiple applications.
Suitable for small-scale production. It has a simple structure and low investment cost but limited capacity.
Allows continuous feeding and discharging. Ideal for large-scale activated carbon production, featuring higher efficiency and lower energy consumption.
A rotary kiln ensures uniform heating by continuously rotating the raw material inside the drum. It is widely applied in industrial-scale production lines.
Mainly used in laboratories or pilot-scale testing. It offers precise temperature control and is suitable for studying carbon properties and pore structures.
A standard activated carbon production line generally includes:
When selecting equipment, consider the following factors:
According to industry research, the global activated carbon market is expected to maintain a compound annual growth rate (CAGR) of over 7% in the coming years.
This favorable environment creates significant opportunities for activated charcoal making machine manufacturers and investors.
| capacity | 5-8t/d | 8-10t/d | 10-12t/d | 12-15t/d | 15-20t/d |
| Dryer model | HG-800 | HG-1000 | HG-1200 | HG-1500 | HG-1800 |
| Dryer power | 3kw | 4kw | 7.5kw | 15kw | 22kw |
| continuous carbonization furnace model | TH-1500 | TH-1500 | TH-1800 | TH-2000 | TH-2000 |
| Carbonization temperature | 600-850℃ | ||||
| Fixed carbon content after carbonization | 70-80% | ||||
| Carbonization furnace drum material | 309S/310S | 309S/310S | 309S/310S | 309S/310S | 309S/310S |
| Activation furnace model | HN-5 | HN-8 | HN-10 | HN-12 | HN-15 |
| Activation furnace power | 15kw | 22kw | 30kw | 37kw | 37kw |
| Activation furnace chamber material | QQ345+nano thermal insulation board+refractory | ||||
| Activation temperature | 850-950℃ | ||||
| Activator | Water vapor or Phosphoric acid (customized according to customer requirements, equipment design will be updated) | ||||
| Activation time | 1-2h | ||||
| Cooling machine model | GTL-1004 | GTL-1204 | GTL-1206 | GTL-1504 | GTL-1506 |
| Temperature after cooling | ≤40℃ | ||||
| Activated carbon crusher model | SGP-400 | SGP-400 | SGP-600 | SGP-800 | SGP-800 |
| Activated carbon finished product size | 4-60mesh | ||||
| Activated carbon iodine value | 800-1300mg/g | ||||
| Activated carbon specific surface area | 800-1500m²/g | ||||
| Activated carbon strength | ≥95 | ||||
| CTC | ≥60% | ||||
| Filling density | 0.45-0.55g/cm3 | ||||
| Activated carbon ash | ≤3% | ||||
