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Short Path Distillation Systems

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Distillation Systems

Our range of short path distillation systems has been designed with the processing of oil extracted from hemp or cannabis in mind, in order to produce higher purity CBD Oil or THC Oil. Our systems range from entry-level through to industrial scale, so whether you are new to the market or expanding your operation we have a system that will meet your needs.

All of our systems are manufactured to CE mark standards, taking into account all relevant European regulations, are GMP compliant and we also offer localised support including on-site installation, training, technical support, maintenance and inspection services.

We work to very high standards and use the best components available on the market today, making our short path distillation systems robust, reliable and excellent value for money.

Spectrum operates a business management system which incorporates 9001:2015 for Quality Management, 14001:2015 for Environmental Management and ISO 45001:2018 for Health and Safety.

Looking for something different? We offer comprehensive services for the development, design, engineering and manufacture of high vacuum distillation systems, so if you’ve not found what you’re looking for, contact us today to discuss your specific requirements.

Mini-4

Mini-4

SUPPORT FRAME

  • 304SS Welded Frame

FEED SYSTEM

  • 2 Litre Hot Oil Heated Feed Tank
  • Gravity Feed Metering with Valve
  • Non-Heated Evaporator Support Plate
  • Optional 5-litre Feed Tank

EVAPORATOR

  • Borosilicated Glass
  • 0.040 Sq. Meter Surface Area
  • Estimated Process Rate 1.00 litre/hour*

CIRCULATORS

  • Evaporator Circulator; 25-300°C
  • Condenser Circulator; -28-200°C
  • Optional Cold Trap Circulator
  • Optional Residue Circulator
  • Feed Circulator; 0-250°C

SAMPLE COLLECTION

  • 1 litre flask
  • Optional 2-litre or 5-litre Receiving Flask

VACUUM SYSTEM

  • Cryowell Cold Trap
  • Backing RVP 4 m3/hour
  • Oil Diffusion 50 l/sec

MISCELLANEOUS

  • No Electrical Control Cabinet
  • Available as a single stage system only
Mini-5

Mini-5

SUPPORT FRAME

  • 304SS Welded Frame

FEED SYSTEM

  • 2 Litre Hot Oil Heated Feed Tank
  • Gravity Feed Metering with Valve
  • Non-Heated Evaporator Support Plate
  • Optional 5-litre Feed Tank

EVAPORATOR

  • Borosilicated Glass
  • 0.060 Sq. Meter Surface Area
  • Estimated Process Rate 2.00 litre/hour*

CIRCULATORS

  • Evaporator Circulator; 25-300°C
  • Condenser Circulator; -30-200°C
  • Optional Cold Trap Circulator
  • Optional Residue Circulator
  • Feed Circulator; 0-250°C

SAMPLE COLLECTION

  • 1 litre flask
  • Optional 2-litre or 5-litre Receiving Flask

VACUUM SYSTEM

  • Cryowell Cold Trap
  • Backing RVP 8 m3/hour
  • Oil Diffusion 50 l/sec

MISCELLANEOUS

  • No Electrical Control Cabinet
  • Available as a single stage system only
KDL-6 Single Stage

KDL-6

SUPPORT FRAME

  • 304SS Welded Frame w/castors

FEED SYSTEM

  • 2 Litre Hot Oil Heated Feed Tank
  • Feed Metering with gear pump
  • Hot Oil Traced Support Plate
  • Optional 5-litre Feed Tank

EVAPORATOR

  • Borosilicated Glass
  • 0.060 Sq. Meter Surface Area
  • Estimated Process Rate 2.00 litre/hour*

CIRCULATORS

  • Evaporator Circulator; 25-300°C
  • Condenser Circulator; -40-200°C
  • Cold Trap Circulator; -40-200°C
  • Residue Circulator; 0-250°C
  • Feed Circulator; 0-250°C

SAMPLE COLLECTION

  • 6-Position Carousel
  • Optional 2-litre or 5-litre Receiving Flask

VACUUM SYSTEM

  • Enclosed w/brine Cold Trap insert
  • Backing RVP 8 m3/hour
  • Oil Diffusion 50 l/sec

MISCELLANEOUS

  • Optional Electrical Control Cabinet
  • Available as single and two stage systems
KDT-6 Single Stage

KDT-6

SUPPORT FRAME

  • 304SS Welded Frame w/castors

FEED SYSTEM

  • 2 Litre Hot Oil Heated Feed Tank
  • Feed Metering with gear pump
  • Hot Oil Traced Support Plate
  • Optional 5-litre Feed Tank

EVAPORATOR

  • 316 Stainless Steel
  • 0.060 Sq. Meter Surface Area
  • Estimated Process Rate 4.00 litre/hour*

CIRCULATORS

  • Evaporator Circulator; 25-300°C
  • Condenser Circulator; -40-200°C
  • Cold Trap Circulator; -40-200°C
  • Residue Circulator; 0-250°C
  • Feed Circulator; 0-250°C

SAMPLE COLLECTION

  • 6-Position Carousel
  • Optional 2-litre or 5-litre Receiving Flask

VACUUM SYSTEM

  • Enclosed w/brine Cold Trap insert
  • Backing RVP 8 m3/hour
  • Oil Diffusion 50 l/sec

MISCELLANEOUS

  • Optional Electrical Control Cabinet
  • Available as single and two stage systems

KD-10 Single Stage

KD-10

SUPPORT FRAME

  • 304SS Welded Frame w/castors

FEED SYSTEM

  • 25 Litre Hot Oil Heated Feed Tank
  • Feed Metering with gear pump
  • Hot Oil Traced Support Plate

EVAPORATOR

  • 316 Stainless Steel
  • 0.10 Sq. Meter Surface Area
  • Estimated Process Rate 6.00 litre/hour*

CIRCULATORS

  • Evaporator Circulator; 25-250°C
  • Condenser Circulator; -50-200°C
  • Cold Trap Circulator; -50-200°C
  • Residue Circulator; 25-250°C
  • Feed Circulator; 25-250°C

SAMPLE COLLECTION

  • Discharge Gear Pumps
  • Optional 2-litre or 5-litre Receiving Flask

VACUUM SYSTEM

  • Enclosed w/brine Cold Trap insert
  • Backing RVP 40 m3/hour
  • Turbo Molecular Pump 90 l/sec

MISCELLANEOUS

  • Electrical Control Cabinet
  • Available as single, two and three stage systems
KD-30 Single Stage

KD-30

SUPPORT FRAME

  • 304SS Welded Frame w/castors

FEED SYSTEM

  • 200 Litre Hot Oil Heated Feed Tank
  • Feed Metering with gear pump
  • Hot Oil Traced Feed Line

EVAPORATOR

  • 316 Stainless Steel
  • 0.30 Sq. Meter Surface Area
  • Estimated Process Rate 15.00 litre/hour*

CIRCULATORS

  • Evaporator Circulator; 25-250°C
  • Condenser Circulator; 4-121°C
  • Cold Trap Circulator; -50-200°C
  • Residue Circulator; 25-250°C
  • Feed Circulator; 25-250°C

SAMPLE COLLECTION

  • Discharge Gear Pumps

VACUUM SYSTEM

  • Enclosed w/brine Cold Trap insert
  • Backing RVP 65 m3/hour
  • Roots Blower Turbo Molecular Pump 350 l/sec

MISCELLANEOUS

  • Electrical Control Cabinet
  • Available as single, two and three stage systems

* Process flowrates are based on heat exchanger efficiency and may differ based on amount of low boiling molecules in process feed.