Copper pyrophosphate dryer, copper pyrophosphate dryer, copper pyrophosphate flash dryer
Our company has a professional installation, debugging, and after-sales service team that can smoothly install, correctly debug, and reliably start and operate according to technical requirements. We also dispatch technical personnel to the site to guide or directly carry out installation and debugging at the request of users. The role of installation and debugging services is to provide practical guarantee conditions for users to quickly realize their benefits after purchasing the product, and to establish a good reputation among users, creating opportunities for future product sales.
Copper pyrophosphate dryer, copper pyrophosphate dryer, copper pyrophosphate flash dryerWorking principle
The hot air enters the bottom of the dryer through a tangent line and forms a strong rotating wind field driven by the agitator. The paste like material is fed into the dryer by a spiral feeder, and under the strong action of high-speed rotating stirring blades, the material is dispersed by impact, friction, and shear forces. The block like material is quickly crushed, fully contacted with hot air, heated, and dried. The dehydrated dry material rises with the hot air flow, and the classification ring intercepts large particles. Small particles are discharged from the center of the ring outside the dryer and are recovered by the cyclone separator and dust collector. Undried or large materials are thrown towards the wall by centrifugal force and fall back to the bottom for crushing and drying.
Copper pyrophosphate dryer, copper pyrophosphate dryer, copper pyrophosphate flash dryerStructure diagram
Copper pyrophosphate dryer, copper pyrophosphate dryer, copper pyrophosphate flash dryerPerformance characteristics
The organic combination of swirl, fluidization, jetting, and crushing classification technologies.
Compact equipment, small size, high production efficiency, continuous production, achieving "small equipment, large production".
High drying intensity, low energy consumption, and high thermal efficiency.
The material has a short residence time, good product quality, and can be used for drying heat sensitive materials.
◎ Negative pressure or micro negative pressure operation, good sealing, high efficiency, and elimination of environmental pollution.
Copper pyrophosphate dryer, copper pyrophosphate dryer, copper pyrophosphate flash dryerAdapt to materials
Organic compounds: atrazine (pesticide insecticide), lauric acid, benzoic acid, benzoic acid, fungicide, sodium oxalate, cellulose acetate, organic pigments, etc.
Dyes: anthraquinone, black iron oxide, indigo pigment, butyric acid, titanium hydroxide, zinc sulfide, various azo dye intermediates.
Inorganic substances: borax, calcium carbonate, hydroxides, copper sulfate, iron oxide, barium carbonate, antimony trioxide, various metal hydroxides, various heavy metal salts, synthetic cryolite, etc.
Food: soy protein, gelatinous starch, wine trough, wheat sugar, wheat starch, etc.
Copper pyrophosphate dryer, copper pyrophosphate dryer, copper pyrophosphate flash dryertechnical specifications
model |
XSG-2 |
XSG-4 |
XSG-6 |
XSG-8 |
XSG-10 |
XSG-12 |
XSG-16 |
XSG-20 |
Inner diameter of the hostmm |
200 |
400 |
600 |
800 |
1000 |
1200 |
1600 |
2000 |
Air volumeM3/h |
350-500 |
1150-2000 |
2450-4500 |
4450-7550 |
7000-12500 |
10000-20000 |
18000-36000 |
28200-56500 |
Evaporate waterkg/h |
12-17 |
40-70 |
80-150 |
150-250 |
230-4250 |
300-600 |
600-1000 |
1000-1500 |
Maximum installed capacitykw |
10 |
20 |
40 |
65 |
85 |
105 |
150 |
230 |
maximum heightm |
4.0 |
4.8 |
5.8 |
6.5 |
7.1 |
7.8 |
8.8 |
10.1 |
cover an aream2 |
15 |
20 |
28 |
35 |
40 |
52 |
80 |
150 |
Note:1. The evaporation rate of water is based on an inlet air temperature of 180 degrees CelsiusoC, The outlet air temperature is 80oThe water evaporated per hour at C
2. In addition to the above models, special designs can be made for users
3. The above installed capacity is standard matching, and can be significantly reduced according to different power matching of materials.
Handling materials and their characteristicsBased on Type 6 flash evaporation
Material name |
stearic acid |
Aluminum hydroxide |
Zinc Carbonate |
monosultap |
TMTD |
DSD Acid |
Iron oxide red |
Antimony dioxide |
Cuprous chloride |
White too black |
inlet air temperatureoC |
150 |
180 |
150 |
120 |
140 |
150 |
200 |
180 |
200 |
280 |
Initial moisture content% |
80 |
55 |
80 |
30 |
65 |
60 |
60 |
45 |
30 |
85 |
Final moisture content% |
0.5 |
1.5 |
1.0 |
1.0 |
0.5 |
0.5 |
0.5 |
1.0 |
3.0 |
5.0 |
Actual drying capacitykg/h |
140-160 |
250-280 |
130-170 |
80-110 |
80-120 |
80-120 |
300-350 |
280-320 |
290-310 |
250-300 |
Material name |
accelerator |
Oil soluble ink |
Manganese zinc substituted acid |
Phthalic orchid |
calcium citrate |
ultrafine calcium carbonate |
mud conditioner |
Sodium Dioxoisocyanurate |
Sodium trimethoxyisocyanurate |
inlet air temperatureoC |
150 |
150 |
120 |
150 |
140 |
160 |
200 |
180 |
150 |
Initial moisture content% |
60 |
45 |
30 |
55 |
40 |
70 |
75 |
25 |
30 |
Final moisture content% |
0.5 |
2.0 |
1.0 |
1.0 |
1.0 |
1.5 |
5.0 |
0.2-2 |
1.0 |
Actual drying capacitykg/h |
80-110 |
350-380 |
120-150 |
160-180 |
300-350 |
430-470 |
290-310 |
80-120 |
90-150 |