Steam Activation Rotary Kiln For Coconut Shell Activated Carbon
Steam activation rotary kiln for coconut shell activated carbon
1.Product Introduction Calcination Rotary Kiln
The Steam Activation Rotary Kiln is a high-temperature thermal processing system specifically designed for the continuous, large-scale production of coconut shell activated carbon. Utilizing high-quality coconut shells as raw material, the equipment employs a two-step process of carbonization and steam activation. In a high-temperature (typically 900–1,000°C), anaerobic or low-oxygen environment, water steam is used to deeply activate the carbonized material. This process carves out a highly developed porous structure within the carbon skeleton. Featuring an inclined rotating cylinder, precise temperature control, and advanced sealing, the kiln ensures uniform heating and continuous discharge for industrial-grade production of premium activated carbon.
2.Application Calcination Rotary Kiln
- Drinking Water Purification: The produced carbon is widely used in residential and industrial water filters to efficiently remove residual chlorine, odors, and organic pollutants (such as trihalomethanes).
- Gold Extraction: Due to its superior adsorption capacity for gold-cyanide complexes, it is the core adsorbent used in Carbon-in-Pulp (CIP) and Carbon-in-Leach (CIL)processes in gold smelting.
- Air Purification: Utilized in HVAC systems, refrigerators, automotive deodorizers, and industrial off-gas treatment to adsorb formaldehyde, benzene series, and hazardous gases.
- Food & Pharmaceutical Refining: Used for decolorization, deodorization, and solvent recovery in the MSG, beverage, and pharmaceutical industries.
- Environmental Remediation: Treating industrial wastewater and waste gases containing heavy metals and organic pollutants to support emission reduction.
3.Working Principle Calcination Rotary Kiln
- Raw Material Pretreatment: Coconut shells are crushed and screened before being fed into a carbonization furnace, where initial pyrolysis generates the carbonized intermediate.
- Rotary Kiln Activation: The carbonized material enters the inclined rotary kiln. As the kiln shell rotates slowly, the material moves from the high end toward the discharge end. High-temperature water steam is introduced from the lower end, achieving counter-current contact with the carbon.
- Steam Activation Reaction: At 900–1,000°C, the steam reacts with carbon . This chemical etching of the carbon skeleton creates a vast network of micropores and mesopores, significantly increasing the specific surface area to over 1,100 m²/g.
- Cooling & Collection: The activated carbon is cooled via a dedicated system before being screened and packaged as the final product.
4.Advantages Calcination Rotary Kiln
- Continuous Production: The rotary kiln supports 24/7 continuous operation with high automation (PLC control), drastically increasing capacity and batch stability.
- Uniform Activation: The rotation of the kiln shell ensures even heat distribution. Combined with precise temperature and steam regulation, this achieves consistent and repeatable pore structures.
- Energy Saving Eco-Friendly: Modern units are equipped with waste heat recovery systems that can preheat secondary air to over 700°C, lowering energy consumption. The sealed design minimizes off-gas leakage.
- Sustainable Raw Material: By utilizing coconut shells—a renewable resource—the process turns agricultural waste into high-value products, aligning with green manufacturing trends.
5.Technical Specifications
| Model | Speed (r/min) | Inclination (%) | Capacity (t/h) | Gearbox Model | Ratio | Motor Model | Motor Power (kW) | Motor Speed (r/min) | Thrust Roller Type | Support Count | Weight (t) |
| Φ1.9/1.6x36 | 0.53-1.59 | 4 | 2.5-3 | JZQ750-1 | 48.58 | JZT-72-4 | 30 | 1200/400 | Mechanical | 3 | 53 |
| Φ2.1/1.8x36 | 0.5-1.51 | 4 | 4 | UT2-110 | 163.38 | JZS-81 | 30/10 | 1410/470 | .. | 3 | 75 |
| Φ1.2x25 | 0.5-1.6 | 3 | PM650 | 40.17 | JZTY71-4 | 22 | 1200/120 | .. | 3 | 34 | |
| Φ1.6x32 | 0.158-0.258 | 3 | PM750 | 48.57 | JZJY61-4 | 15 | 1200/120 | .. | 3 | 46.82 | |
| Φ1.8x45 | 0.66-1.98 | 4 | 3.5 | UT2-110 | 163.38 | JZS-81 | 30/10 | 1410/470 | .. | 3 | 80 |
| Φ2.2x50 | 0.125-1.25 | 3.5 | 4 | ZS145-11 | 157 | YCT280-4A | 30 | 1320/132 | .. | 3 | 130.71 |
| Φ2.5x50 | 0.516-1.549 | 3.5 | 5.5 | ZS165-7 | 99.96 | YCT355-4A | 55 | 1320/440 | .. | 3 | 167.5 |
| Φ3x48 | 0.3309-3.309 | 3.5 | 35 | ZL130-14 | 32.11 | ZSN4-250-21B | 90 | 1000/100 | .. | 3 | 237 |
| Φ3.2x50 | 0.398-3.975 | 3.5 | 50 | ZL130-16 | 40.85 | ZSN4-280-11B | 190 | 1500/150 | .. | 3 | 263 |
| Φ3.3x52 | 0.391-3.91 | 3.5 | 50 | ZSY500-28 | 27.707 | ZSN4-315-082 | 190 | 1000/100 | .. | 3 | 280.8 |
| Φ4x60 | 0.396-3.96 | 3.5 | 104 | ZSY630-35.5 | 34.601 | ZSN4-355-092 | 315 | 1000/100 | Hydraulic | 3 | 487.5 |
| Φ4.2x60 | 0.4165-4.165 | 3.5 | 116 | ZSY710-35.5 | 35.526 | ZSN4-355-12 | 420 | 1000/100 | .. | 3 | 576.1 |
| Φ4.3x62 | 0.398-3.98 | 3.5 | 125 | ZSY710-35.5 | 35.714 | ZSN4-355-12 | 420 | 1000/100 | .. | 3 | 598.5 |
| Φ4.8x74 | 0.35-4 | 4 | 208 | JH710C-SW305-40 | 42.226 | ZSN4-400-092 | 630 | 1500/130 | .. | 3 | 841 |
6.Our Solutions
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