SUPERCRITICAL CO₂ EXTRACTION SYSTEM P-600- SUPEREX

Origin: Turkey

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The Supercritical CO₂ Extraction System is designed for industrial production with 300L or 600L extraction vessels, a maximum pressure of 345 bar, and a temperature of 70°C. The system is equipped with three 35L separators, precise pressure and temperature control, and a high CO₂ flow rate of 30 kg/min to optimize efficiency. With a fully automatic CO₂ recirculation system, a high-precision PID controller, and a heat pump with COP = 6, the system ensures clean extraction, energy efficiency, and environmental sustainability.

MODEL: P-600

SPECIFICATION 

  •  300 Lt or 2×300 Lt / 600 Lt Volume Extraction Vessels
  •  Designed for efficient industrial production
  •  Three separators, each with a capacity of 35 L (two are pressure and each temperature controlled)
  •  Separators include interchangeable nozzles for cyclone flow or liquid retention
  •  Maximum operating pressure: 345 bar
  •  Maximum operating temperature: 70°C
  •  High-speed CO₂ flow (30 kg/min)
  •  Auxiliary solvent feeding system (3 L/min)
  •  Fully automatic pressure increase, solvent feeding, and pressure reduction
  •  High-precision PID algorithm for temperature control
  •  Fully automatic pressure regulators
  •  Fully adaptive control of pressure and CO₂ flow
  •  Fully automatic CO₂ liquefaction and recycling system with up to 95% efficiency for reuse
  •  High-energy efficient heat pump (COP = 6)

PRODUCT VIEWED

The Supercritical CO₂ Extraction System P-1000 offers an advanced solution for industrial production, enabling efficient and safe extraction of natural compounds. Designed with modern technology, the system operates automatically, optimizes energy use, and ensures high-quality extraction. Its precise temperature and pressure control technology allow for the processing of various raw materials, including those with high moisture content. This is an ideal choice for the pharmaceutical, food, and cosmetic industries, providing a clean and sustainable extraction process.