PROJAKâ„¢ DX REFRIGERATION

The Illuminated Extractors’ ProJak DX Direct Refrigeration technology represents a major breakthrough in hydrocarbon extraction. Unlike traditional systems that rely on energy-intensive heaters and chillers, ProJak DX employs a direct refrigeration approach, drastically reducing energy consumption and operational costs. This innovative system achieves rapid temperature control, eliminating the need to wait for optimal temperatures and thereby increasing throughput by 28%.

ProJak DX’s ability to execute temperature swings of 100°C in under 9 minutes, and to reach -60°C from room temperature in under 5 minutes, underscores its efficiency. Traditional heaters and chillers not only slow down production but also incur significant expenses in terms of purchase, installation, and maintenance. By replacing these conventional systems with ProJak DX, extraction labs can experience a 93.37% reduction in electrical costs, making it a more sustainable and cost-effective solution. This technology is particularly suitable for any C1D1 processing lab, providing a seamless transition from outdated systems to advanced refrigeration, ultimately enhancing both productivity and profitability.

EFFICIENCY AND VERSATILTY

In addition to energy efficiency, ProJak DX offers unparalleled versatility. It provides on-demand heating and chilling without relying on excessive ancillary equipment. This flexibility allows labs to tailor their extraction processes to different materials and desired outcomes, whether producing isolates for precise dosing or crafting artisanal, boutique products. This adaptability is crucial in a market where both precision and creativity are highly valued.

FASTFLOWâ„¢ SOLVENT CYCLING

The Illuminated Extractors’ FAST FLOW solvent cycling technology represents a significant advancement in botanical oil extraction. This innovative system employs a continuous loop of solvent circulation, ensuring fresh solvent is constantly introduced to the plant material. This method significantly enhances the efficiency of the extraction process by maintaining a high gradient for solute transfer, thereby maximizing the yield of botanical oils. The continuous nature of the solvent cycling reduces downtime associated with traditional batch processing methods, allowing for a more streamlined and uninterrupted extraction process. By optimizing the solvent flow and ensuring consistent contact with the botanical material, this technology not only improves extraction efficiency but also enhances the quality and purity of the extracted oils.

In practical applications, the FAST FLOW solvent cycling technology is particularly advantageous for large-scale production environments where non-stop extraction is critical. This system’s ability to operate continuously without requiring frequent halts or manual intervention translates into higher throughput and productivity. The reduced solvent consumption and minimized waste generation make this technology an environmentally friendly option. The non-stop extraction capability ensures a consistent supply of high-quality botanical oils essential for pharmaceuticals, cosmetics, and nutraceuticals. By integrating this advanced technology, producers can achieve greater scalability and cost-effectiveness while maintaining the integrity and potency of the botanical extracts.

PROJAKâ„¢

  • Energy Efficiency: ProJak DX Direct Refrigeration eliminates the need for traditional, energy-intensive heaters and chillers, significantly reducing electrical costs.
  • Rapid Temperature Control: This advanced technology achieves temperature swings of 100°C in just 8 minutes and 42 seconds and can reach -60°C from room temperature in only 4 minutes 19 seconds.
  • Streamlined Operations: ProJak DX increases throughput by 28% by providing on-demand heating and chilling, allowing for a more efficient and continuous extraction process.
  • Cost-Effective Solution: ProJak DX reduces energy consumption and lowers initial purchase, installation, and operational costs, making it ideal for any C1D1 processing lab looking to optimize its extraction operations.

FASTFLOWâ„¢

  • Continuous Solvent Circulation: Solvent cycling allows a continuous loop of solvent circulation, ensuring fresh solvent is constantly introduced to the plant material, significantly enhancing extraction efficiency.
  • Reduced Downtime: Solvent cycling reduces downtime associated with traditional batch processing methods, allowing for a more streamlined and uninterrupted extraction process.
  • Environmental Benefits: The reduced solvent consumption and minimized waste generation make this technology a greener solution, promoting sustainability in large-scale production environments.
  • Increased Throughput and Productivity: The ability to operate continuously without requiring frequent halts or manual intervention translates into higher throughput and productivity, making it ideal for large-scale production environments.

ILLUMINATE YOUR LAB

View/Download Cutsheets

Cutsheet Download Form

Name
This field is for validation purposes and should be left unchanged.

Leave us your Email

Download Illuminated Cutsheets

Cutsheet Download Form

Name
This field is for validation purposes and should be left unchanged.

Leave us your Email

Download Illuminated Cutsheets

Cutsheet Download Form

Name
This field is for validation purposes and should be left unchanged.

ILLUMINATE YOUR LAB

View/Download Cutsheets

Cutsheet Download Form

Name
This field is for validation purposes and should be left unchanged.

ILLUMINATE YOUR LAB

View/Download Cutsheets

Cutsheet Download Form

Name
This field is for validation purposes and should be left unchanged.

Illuminate your lab

View/Download Cutsheets

Cutsheet Download Form

Name
This field is for validation purposes and should be left unchanged.

ILLUMINATE YOUR LAB

View/Download Cutsheets

Cutsheet Download Form

Name
This field is for validation purposes and should be left unchanged.

Illuminate your lab

View/Download Cutsheets

Cutsheet Download Form

Name
This field is for validation purposes and should be left unchanged.