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SUPEREX
P-10
Supercritical Extraction System
Specification
Additional Options
Extraction vessel with a capacity of 10 L (or 10×10 L)
Special design for efficient industrial production
2 x 4 L separators (one with pressure and temperature control)
Separators have interchangeable packing for cyclone flow or liquid trap
Maximum working pressure of 150 or 345 bar
Maximum working temperature of 70°C
High CO2 flow rate (1 L/min)
Co-solvent supply system (100 ml/min)
All contact surfaces are made of stainless steel 316
Fully automatic pressure increase, solvent supply and pressure decrease
Highly accurate PID algorithm for temperature control
Fully automatic pressure regulators
Fully automatic adaptive control of pressure and CO2 flow
Fully automatic CO2 liquefaction and recycling system for reuse with an efficiency of up to 95%
Highly energy efficient heat pump (COP=6)
Average energy consumption: 6 kWh
Average consumption CO2: 1.3 kg per working cycle (90-95% CO2 recirculation)
Increase maximum pressure to 600 bar (test pressure 900 bar)
Increase maximum extraction temperature to 90°C
Additional 10L extraction vessel
Additional 4L separator with pressure and temperature control
Cooling package for first or third separator (optional) to -10°C for more efficient fractionation
Bass Instruments Coriolis flow meter
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SUPEREX
P-15
Supercritical Extraction System
Specification
Additional Options
Extraction vessel with a capacity of 15 L (or 15×15 L)
Special design for efficient industrial production
2 x 5 L separators (one with pressure and temperature control)
Separators have replaceable packings for cyclone flow or liquid trap
All contact surfaces are made of stainless steel 316
Maximum working pressure of 150 or 345 bar
Maximum working temperature of 70°C
High CO2 flow rate (1.5 L/min)
Co-solvent supply system (150 ml/min)
Fully automatic pressure increase, solvent supply and pressure decrease
Highly accurate PID algorithm for temperature control
Fully automatic pressure regulators
Fully automatic adaptive control of pressure and CO2 flow
Fully automatic CO2 liquefaction and recycling system for reuse with an efficiency of up to 95%
Highly energy efficient heat pump (COP=6)
Average energy consumption: 8 kWh
Average CO2 consumption: 2.6 kg per working cycle (CO2 recirculation 90–95%)
Increase in maximum pressure to 600 bar (test pressure 900 bar)
Increase in maximum extraction temperature to 90°C
Additional 15L extraction vessel
Additional 5L separator with pressure and temperature control
Cooling package for the first or third separator (optional) to -10°C for more efficient fractionation
Bass Instruments Coriolis flow meter
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SUPEREX
P-20
P-20 Supercritical Extraction System
Specification
Additional Options
20L (or 20×20L) extraction vessel
Special design for efficient industrial production
2 x 7L separators (one with pressure and temperature control)
Separators have replaceable nozzles for cyclone flow or liquid trap
Maximum working pressure of 150 or 345 bar
Maximum working temperature of 70°C
High CO2 flow rate (2L/min)
Co-solvent supply system (200 ml/min)
All contact surfaces are made of 316 stainless steel
Fully automatic pressure increase, solvent supply and pressure decrease
Highly accurate PID algorithm for temperature control
Fully automatic pressure regulators
Fully automatic adaptive control of pressure and CO2 flow
Fully automatic CO2 liquefaction and recycling system for reuse with an efficiency of up to 95%
Heat pump with high energy efficiency (COP=6)
Average energy consumption: 10 kWh
Average CO2 consumption: 2.6 kg per working cycle (CO2 recirculation 90-95%)
Increase of maximum pressure to 600 bar (test pressure 900 bar)
Increase of maximum extraction temperature to 90°C
Additional 20L extraction vessel
Additional 7L separator with pressure and temperature control
Cooling package of the first or third separator (optional) to -10°C for more efficient fractionation
Bass Instruments Coriolis flow mete
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P-20
.Video
SUPEREX
P-30
Supercritical Extraction System
Specification
Additional Options
30L (or 30×30L) extraction vessel
Special design for efficient industrial production
2 x 10L separators (one with pressure and temperature control)
Separators have replaceable nozzles for cyclone flow or liquid trap
Maximum working pressure of 150 or 345 bar
Maximum working temperature of 70°C
High CO2 flow rate (3L/min)
Co-solvent supply system (300 ml/min)
All contact surfaces are made of 316 stainless steel
Fully automatic pressure increase, solvent supply and pressure decrease
Highly accurate PID algorithm for temperature control
Fully automatic pressure regulators
Fully automatic adaptive control of pressure and CO2 flow
Fully automatic CO2 liquefaction and recycling system for reuse with an efficiency of up to 95%
Highly energy efficient heat pump (COP=6)
Average energy consumption: 13 kWh
Average CO2 consumption: 3.9 kg per working cycle (CO2 recirculation 90–95%)
Increase in maximum pressure to 600 bar (test pressure 900 bar)
Increase in maximum extraction temperature to 90°C
Additional 30L extraction vessel
Additional 10L separator with pressure and temperature control
Cooling package for the first or third separator (optional) to -10°C for more efficient fractionation
Bass Instruments Coriolis flow meter
Get An Offer
P-30
.Video
SUPEREX
P-50
Supercritical Extraction System
Specification
Additional Options
50L (or 50×50L) extraction vessel
Special design for efficient industrial production
2 x 15L separators (one with pressure and temperature control)
Separators have replaceable nozzles for cyclone flow or liquid trap
Maximum working pressure of 150 or 345 bar
Maximum working temperature of 70°C
High CO2 flow rate (5L/min)
Co-solvent supply system (500 ml/min)
All contact surfaces are made of 316 stainless steel
Fully automatic pressure increase, solvent supply and pressure decrease
Highly accurate PID algorithm for temperature control
Fully automatic pressure regulators
Fully automatic adaptive control of pressure and CO2 flow
Fully automatic CO2 liquefaction and recycling system for reuse with an efficiency of up to 95%
Highly energy efficient heat pump (COP=6)
Low energy consumption (3 times lower than other SCE systems) (Patent No.: 2022/020748)
Average energy consumption: 20 kWh
Average CO2 consumption: 5.5 kg per working cycle (CO2 recirculation 90–95%)
Increase of maximum pressure to 600 bar (test pressure 900 bar)
Increase of maximum extraction temperature to 90°C
Additional 50 L extraction vessel
Additional 15 L separator with pressure and temperature control
Cooling package for the first or third separator (optional) to -10°C for more efficient fractionation
Bass Instruments Coriolis flow meter
Get An Offer
SUPEREX
P-100
Supercritical Extraction System
Specification
Additional Options
Extraction vessel with a capacity of 100 L (or 100×100 L)
Special design for efficient industrial production
2 x 35 L separators (one with pressure and temperature control)
Separators have replaceable packings for cyclone flow or liquid trap
Maximum working pressure of 150 or 345 bar
Maximum working temperature of 70°C
High CO2 flow rate (10 L/min)
Co-solvent supply system (1 L/min)
All contact surfaces are made of stainless steel 316
Fully automatic pressure increase, solvent supply and pressure decrease
Highly accurate PID algorithm for temperature control
Fully automatic pressure regulators
Fully automatic adaptive control of pressure and CO2 flow
Fully automatic CO2 liquefaction and recycling system for reuse with an efficiency of up to 95%
Highly energy efficient heat pump (COP=6)
Low energy consumption (3 times lower than other SCE systems) (Patent No.: 2022/020748)
Average energy consumption: 38 kWh
Average CO2 consumption: 5 kg per working cycle (CO2 recirculation 90–95%)
Increase of maximum pressure to 600 bar (test pressure 900 bar)
Increase of maximum extraction temperature to 90°C
Additional 100 L extraction vessel
Additional 35 L separator with pressure and temperature control
Cooling package for the first or third separator (optional) to -10°C for more efficient fractionation
Bass Instruments Coriolis flow meter
Get An Offer
SUPEREX
P-250
Supercritical Extraction System
Specification
Additional Options
2 x 250L Extraction Vessels
Special design for efficient industrial production
2 x 80L Separators (one with pressure and temperature control)
Separators have replaceable nozzles for cyclone flow or liquid trap
Maximum working pressure of 150 or 345 bar
Maximum working temperature of 70°C
High CO2 flow rate (25 L/min)
Co-solvent supply system (2.5 L/min)
All contact surfaces are made of 316 stainless steel
Fully automatic pressure increase, solvent supply and pressure decrease
Highly accurate PID algorithm for temperature control
Fully automatic pressure regulators
Fully automatic adaptive control of pressure and CO2 flow
Fully automatic CO2 liquefaction and recycling system for reuse with an efficiency of up to 95%
High-efficiency heat pump energy efficiency (COP=6)
Low energy consumption (3 times lower than other SCE systems) (Patent No.: 2022/020748)
Average energy consumption: 75 kWh
Average CO2 consumption: kg per working cycle (CO2 recirculation 90–95%)
Increase in maximum pressure to 600 bar (test pressure 900 bar)
Increase in maximum extraction temperature to 90°C
Additional 80 L separator with pressure and temperature control
Cooling package for the first or third separator (optional) to -10°C for more efficient fractionation
Bass Instruments Coriolis flow meter
Get An Offer
SUPEREX
P-500
Supercritical Extraction System
Specification
Additional Options
4 x 250L extraction vessels (2 x 250×2 x 250L)
Special design for efficient industrial production
2 x 80L separators (one with pressure and temperature control)
Separators have replaceable packings for cyclone flow or liquid trap
Maximum working pressure of 150 or 345 bar
Maximum working temperature of 70°C
High CO2 flow rate (50L/min)
Co-solvent supply system (5L/min)
All contact surfaces are made of 316 stainless steel
Fully automatic pressure increase, solvent supply and pressure decrease
Highly accurate PID algorithm for temperature control
Fully automatic pressure regulators
Fully automatic adaptive control of pressure and CO2 flow
Fully automatic CO2 liquefaction and recycling system for reuse with efficiency up to 95%
Heat pump with high energy efficiency (COP=6)
Low energy consumption (3 times lower compared to other SCE systems) (Patent No.: 2022/020748)
Average energy consumption: 80 kWh
Average CO2 consumption: 6.6 kg per working cycle (CO2 recirculation 90–95%)
Increase in maximum pressure to 600 bar (test pressure 900 bar)
Increase in maximum extraction temperature to 90°C
Additional 80 L separator with pressure and temperature control
Cooling package for the first or third separator (optional) to -10°C for more efficient fractionation
Bass Instruments Coriolis flow meter
Get An Offer
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