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B100 CETANE Animal Fat Laboratory Crystallization Bio Diesel Plant

B100 CETANE Animal Fat Laboratory Crystallization Bio Diesel Plant
B100 CETANE Animal Fat Laboratory Crystallization Bio Diesel Plant
B100 CETANE Animal Fat Laboratory Crystallization Bio Diesel Plant
B100 CETANE Animal Fat Laboratory Crystallization Bio Diesel Plant
B100 CETANE Animal Fat Laboratory Crystallization Bio Diesel Plant
B100 CETANE Animal Fat Laboratory Crystallization Bio Diesel Plant
B100 CETANE Animal Fat Laboratory Crystallization Bio Diesel Plant

B100 CETANE Animal Fat Laboratory Crystallization Bio Diesel Plant Specification

  • Type
  • Biodiesal Plant
  • Material
  • SS304
  • Computerized
  • Yes
  • Automatic Grade
  • Automatic
  • Control System
  • PLC Control
  • Drive Type
  • Electric
  • Voltage
  • 440 Volt (v)
  • Power
  • 250000 Watt (w)
 

B100 CETANE Animal Fat Laboratory Crystallization Bio Diesel Plant Trade Information

  • Minimum Order Quantity
  • 1 Number
  • Delivery Time
  • 4
 

About B100 CETANE Animal Fat Laboratory Crystallization Bio Diesel Plant

The **B100 CETANE Animal Fat Laboratory Crystallization Bio Diesel Plant** is a specialized, small-scale research and development system engineered for the high-precision conversion of animal fat feedstocks into premium B100 biodiesel. Designed specifically for laboratory and pilot-testing environments, this plant focuses on optimizing the ignition quality (Cetane number) and cold-flow performance of biofuels derived from tallow, lard, or poultry fats.

A core feature of this system is its integrated crystallization module. Since animal fats are naturally high in saturated fatty acids, they often exhibit poor performance in cold climates. The crystallization process allows for controlled fractionation and the removal of high-melting-point components, ensuring the final product meets rigorous international standards for winter stability and viscosity.

Equipped with advanced transesterification and purification stages, the plant provides researchers with granular control over reaction parameters. This makes it an indispensable tool for feedstock analysis and the development of high-cetane, low-emission fuel formulations, effectively bridging the gap between laboratory innovation and industrial-scale biodiesel production.

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