Banana Chip Microwave Vacuum Dehydrator

Banana Chip Microwave Vacuum Dehydrator photo-1
US$ 20,000 - 50,000 MOQ: 1 Set
Key Specifications
Get Latest Price
Condition:
New
Place of Origin:
Henan, China
Brand Name:
BODA
Payment & Shipping
Payment Methods:
Port of Shipment:
Qingdao Tianjin Shanghai
Delivery Detail:
Delivery time depends on order quantity.
Condition New
Place of Origin Henan, China
Brand Name BODA
Model Number BDMD-M-V-30
Type Dehydrator
Voltage 380V
Power(W) 30Kw
Weight 3500kg
Dimension(L*W*H) 2.8x2x2.3
Certification ISO9001, CE, GMP, BV
Warranty 1 year
After-sales Service Provided Engineers available to service machinery overseas

Specifications

Banana chip microwave vacuum dehydrator
type:dehydrator
dehydrating method:microwave
production method:batch
feature:vacuum

Banana chip microwave vacuum dehydrator

Banana chip microwave vacuum dehydratorBanana chip microwave vacuum dehydrator

 

Product NameBanana chip microwave vacuum dehydrator
ModelBDMD-M-V-30
Operating Voltage380V±10%
Supply Frequency50Hz
Rated Current80A
Max Input Power40KW
Supply Power≥55KVA
Microwave Frequency2450±50MHz
Max Output Power of Microwave30KW
Dimensions (L*W*H) (mm)2800×2000×2300
Inner Dimension (mm)Φ1700×1100
Materialstainless steel 304
Weight≈3.5 tons

Banana chip microwave vacuum dehydratorCompared with conventional drying methods, which are heating from the outside to the inside by heat conduction, microwave show so-called volume heating with the following advantages:

  • a temperature gradient directed towards the surface, i.e. temperatures inside are higher than outside, giving rise to a higher partial pressure that drives the evaporating liquid to the surface
  • consequently, the superficial layer does not dry up completely and the surfaces remain permeable
  • the liquid evaporating inside the product is emitted through the porous structure of the solid material’s macro-capillary system, resulting in a high drying velocity
  • the heating of water and most organic solvents occurs selectively - due to the greater dielectric losses of water as compared to the product to be dried
  • swift and thorough drying of moist products with low thermal conductivity
  • static drying of thick layers without frictional losses
  • high total efficiency of energy application
  • high-speed control of the energy transport
  • short processing times, i.e. suitable for automated manufacturing
Drying methodMicrowaveBoilingHot airVibrating
Temperature
low
high
high
high
Time
short
long
long
short(several times)
Quality
very good
good
normal
normal
Loss
none
little
much
much
Solubility
good
good
normal
bad
Appearance
very good
good
normal
noraml
Consumption
low
high
high
high
Continuous
available
difficult
N/A
difficult
Sterilization
good
bad
bad
bad
Drying methodMW+VacuumFreezingVacuumSpray
Temperature
low
very low
low
high
Time
short
long
very long
short
Quality
good
good
normal
bad
Loss
none
little
none
much
Solubility
very good
very good
normal
normal
Appearance
good
good
bad
normal
Consumption
low
very high
high
very high
Continuous
available
difficult
N/A
available
Cost
low
very high
low
low
 

 

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Business Type
Manufacturer, Trading Company
Year Established
2009
Factory Size
5,000-10,000 square meters
Total Employees
301 - 500 People