Brief Introduction

The lignite dryer is mainly used for drying lignite and the like. Rotary lignite dryer, under the condition of ensuring the quality of dried lignite, adopts a low-temperature four-stage drying process to evaporate lignite water to less than 13% water as fuel coal, which has good economic, social and environmental benefits.

The first-stage drying zone removes most of the water at a high temperature of 400 °C in a high-humidity state, ensuring that the chemical composition of the lignite does not change and is not easy to burn; the secondary drying zone has a room temperature of 300 ° C, and the water removal by medium-temperature strong wind to ensure that lignite is not coked; the indoor temperature of the third-stage drying zone is 120°C-210°C, and the crushing device in the drum is used to repeatedly impact and break up the material and dry; The four-stage drying zone is a high exhaust zone, and the room temperature is 60 ° C - 80 ° C, and the low-temperature hot air flow which is under negative pressure by the air intake system excludes water.

Working Principle

Lignite, fly ash and other materials are sent to the feeder through the conveyor belt, and the fly ash is sent to the drying roller through the feeder. The flanging of the evenly distributed plate device in the drying roller of the lignite dryer makes the coal ash and hot air evenly contact and transfer heat, and get perfect drying.

The dried fly ash is discharged into finished products by the pulverizer at the end of the drum, and the dried products are discharged by the belt discharge machine. The dryer has large processing capacity, low fuel consumption and low drying cost. Materials can be dried quickly with high-temperature hot air.

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Advantages

Cases and Price

FTM Rotary Dryer has been exported to over 160 countries, such as, Pakistan, Egypt, Indonesia, Malaysia, Ethiopia, Nigeria, South Africa, etc. Furthermore, we provide 100% factory price and maximum discount for you. Additionally, if you are new in this industry, we will provide professional suggestions and solutions for you.

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Technical Data

Spec./m
(Dia.×Length)
Shell Cubage
(m³)
Capacity
(t/h)
Installation
Obliquity
(%)
Highest Inlet
Air Temperature
(℃)
Main Motor
(kw)
Weight
(t)
Φ1.2×8.0
9.0
1.9~2.4
3~5
700~800
7.5
9
Φ1.2×10
11.3
2.4~3.0
3~5
700~800
7.5
11
Φ1.5×12
21.2
4.5~5.7
3~5
700~800
15
18.5
Φ1.5×14
24.7
5.3~6.6
3~5
700~800
15
19.7
Φ1.5×15
26.5
5.7~7.1
3~5
700~800
15
20.5
Φ1.8×12
30.5
6.5~8.1
3~5
700~800
18.5
21.5
Φ1.8×14
35.6
7.6~9.5
3~5
700~800
18.5
23
Φ2.2×12
45.6
9.7~12.2
3~5
700~800
22
33.5
Φ2.2×14
53.2
11.4~14.2
3~5
700~800
22
36
Φ2.2×16
60.8
13.0~16.2
3~5
700~800
22
38
Φ2.4×14
63.3
13.5~16.9
3~5
700~800
37
45
Φ2.4×18
81.4
17.4~21.7
3~5
700~800
37
49
Φ2.4×20
90.4
19.3~24.1
3~5
700~800
45
54
Φ2.4×22
99.5
21.2~26.5
3~5
700~800
45
58
Φ2.6×24
127.4
27.2~34.0
3~5
700~800
55
73
Φ3.0×20
141.3
30.1~37.7
3~5
700~800
75
85
Φ3.0×25
176.6
37.7~47.1
3~5
700~800
75
95
Φ3.2×25
201
42.9~53.6
3~5
700~800
90
110
Φ3.6×28
285
60.8~76.0
3~5
700~800
160
135

Technical parameters of indirect heat dryer:

  Shell 
diameter
×shell 
Length  
Items
Inside 
diameter 
of outer 
shell
(mm)
Inside 
diameter 
of inner 
shell
(mm)
Shell
 Length
(m)
Shell
 cubage
(m³)
Shell 
obliquity
Lifting 
blade
 form
Highest 
inlet air
 temperature
(℃)
Dimensions
(m)
Φ1.5×15m 1500 500 15 20.27 3-5% Lifting form 850 16.2×2.7×2.7
Φ1.5×17m 17 22.97 18.2×2.7×2.7
Φ1.5×19m 19 25.68 20.0×2.9×2.9
Φ1.8×21m 1800 650 21 35.91 3-5% Lifting form 850 22.5×2.7×2.7
Φ1.8×23m 23 39.33 24.5×2.9×2.9
Φ1.8×25m 25 42.75 26.5×2.9×2.9
Φ2.2×21m 2200 800 21 58.10 3-5% Lifting form 850 ----
Φ2.2×23m 23 63.61
Φ2.2×25m 25 69.15

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