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The XSG-12 rotary flash dryer represents the high-capacity tier of the XSG series, engineered for heavy-duty, large-volume continuous drying in demanding industrial environments. Featuring a 1200 mm barrel diameter, overall dimensions of 1300 × 5800 mm, installed power of 22–45 kW, airflow capacity of 8000–18,000 m³/h, and a water evaporation rate of 150–1500 kg/h, it maintains a relatively compact footprint of 5200 × 4200 mm—delivering exceptional output without excessive space requirements. Compared to the XSG-10, the XSG-12 provides up to 50% greater evaporation capacity and enhanced handling of ultra-high-moisture or highly viscous feeds, making it ideal for processing difficult materials like thick filter cakes, concentrated slurries, and heat-sensitive crystalline compounds. Tailored for chemical, pharmaceutical, food, and advanced materials manufacturers operating at scale, the XSG-12 combines robust construction, superior thermal efficiency, and precise product control—positioning it as the premier solution for facilities requiring maximum throughput, operational reliability, and future-ready drying performance
Key Applications
High-viscosity chemical compounds
Industrial slurry materials
Crystallization products
Mud and slag residues
Filter cake drying
TECHNICAL PARAMETERS
Type
Barrel diameter(mm)
Main machine dimensions(mm)
Main machine power(kw)
Air volume(m³/h)
water evaporation capacity (kg/h)
occupied area (mm²)
XSG-2
200
250×2800
0.75–2.2
300–800
10–20
3500×2500
XSG-3
300
400×3300
3–4
600–1500
20–50
3800×2700
XSG-4
400
500×3500
4–7.5
1250–2500
25–70
4000×3000
XSG-5
500
600×4000
5.5–11
1500–4000
30–100
4200×3200
XSG-6
600
700×4200
7.5–18.5
2500–5000
40–200
4250×3250
XSG-8
800
900×4600
11–18.5
3000–8000
60–600
4500×3500
XSG-10
1000
1100×5000
15–30
5000–12500
100–1000
4750×3750
XSG-12
1200
1300×5200
15–37
10000–20000
150–1300
5000×4000
XSG-14
1400
1500×5400
30–55
30–55
200–1600
5250×4250
XSG-16
1600
1700×6000
45–75
18700–36000
250–2000
5500×4500
Operating Principle
Cold air passes through an air filter and is directed by a blower to the air heater
Heated air enters the drying tower at appropriate velocity from the bottom
Wet material is fed into the drying tower via screw feeder
Strong shear forces, blowing, floating, and rotating actions occur
Material crushing takes place through external mechanical force
Heated air transfers thermal energy to wet material components
Moisture absorption and evaporation phenomena occur
Air carrying evaporated moisture moves to cyclone separator and pulse bag filter