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Carbide, Hydroxide, Or Crystal Water-Containing Material Pyrolysis Furnace.
| Price | Negotiable |
|---|---|
| Min Order | 1 Piece |
| Availability | In Stock |
| Shipping From | Liaoning, China |
| Popularity | 490 people viewed |
Model NO.:
not defined
Certification:
CE, ISO
Place Style:
Vertical
Range of Applications:
Industrial
Type:
Calcination Furnace
Usage:
Material Calcining
Fuel:
Gas
Suitable Material:
Carbides, Hydroxides
Main Heating Method:
Dynamic Heating
Product:
Magnesium Oxide, Zinc Oxide, Nickel Oxide, Kaolin
Effect of Pyrolysis:
Even and Sufficient Decomposition
Trademark:
DONGDA POWDER ENGINEERING
Transport Package:
Suitable for Shipping
Specification:
variable
Origin:
Benxi, China
Product Description
Brief introduction:
By heating, materials such as carbide, hydroxide, or materials containing crystal water undergo pyrolysis to form new products.
Suitable material:
Carbides, hydroxides such as magnesium carbonate, zinc carbonate, magnesium hydroxide, and calcium
hydroxide are heated to form magnesium oxide, calcium oxide, and zinc oxide. The dihydrate gypsum is
heated to remove the crystal water and transforms into hemi-hydrate gypsum or anhydrite. Magnesium
chloride hexahydrate decomposes into magnesium dihydrate and anhydrous magnesium upon heating.
These reactions occur through the process of heating.
The heating methods depend on the state of material in the heating chamber, and dynamic heating is one
of the main methods. It involves mixing wet material (through desiccation) or dry material with
combusted gas, and completing pyrolysis in a flow motion. The above-mentioned heating method is used for
the dynamic pyrolysis furnace. The gas suspension pyrolysis furnace is a modernized version that achieves
this type of decomposition, with its main features including even and sufficient decomposition, good activity
and dispersity of decomposed material, no dust leakage in the system, high degree of automation, and
significant energy saving.
Applied production:
Magnesium oxide, zinc oxide, nickel oxide, kaolin and anhydrite.
Pictures at application sites:
By heating, materials such as carbide, hydroxide, or materials containing crystal water undergo pyrolysis to form new products.
Suitable material:
Carbides, hydroxides such as magnesium carbonate, zinc carbonate, magnesium hydroxide, and calcium
hydroxide are heated to form magnesium oxide, calcium oxide, and zinc oxide. The dihydrate gypsum is
heated to remove the crystal water and transforms into hemi-hydrate gypsum or anhydrite. Magnesium
chloride hexahydrate decomposes into magnesium dihydrate and anhydrous magnesium upon heating.
These reactions occur through the process of heating.
Performance & features:
The heating methods depend on the state of material in the heating chamber, and dynamic heating is one
of the main methods. It involves mixing wet material (through desiccation) or dry material with
combusted gas, and completing pyrolysis in a flow motion. The above-mentioned heating method is used for
the dynamic pyrolysis furnace. The gas suspension pyrolysis furnace is a modernized version that achieves
this type of decomposition, with its main features including even and sufficient decomposition, good activity
and dispersity of decomposed material, no dust leakage in the system, high degree of automation, and
significant energy saving.
Applied production:
Magnesium oxide, zinc oxide, nickel oxide, kaolin and anhydrite.
Pictures at application sites:
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